| Literature DB >> 30871243 |
Husam Sameer1,2, Viktoria Weber3,4, Clemens Mostert5, Stefan Bringezu6, Ekkehard Fehling7, Alexander Wetzel8.
Abstract
There is a common understanding that the environmental impacts of construction materials should be significantly reduced. This article provides a comprehensive environmental assessment within Life Cycle Assessment (LCA) boundaries for Ultra-High-Performance Concrete (UHPC) in comparison with Conventional Concrete (CC), in terms of carbon, material, and water footprint. Environmental impacts are determined for the cradle-to-grave life cycle of the UHPC, considering precast and ready-mix concrete. The LCA shows that UHPC has higher environmental impacts per m³. When the functionality of UHPC is considered, at case study level, two design options of a bridge are tested, which use either totally CC (CC design) or CC enhanced with UHPC (UHPC design). The results show that the UHPC design could provide a reduction of 14%, 27%, and 43% of carbon, material, and water footprint, respectively.Entities:
Keywords: concrete; construction materials; durability; life cycle assessment; sustainable buildings
Year: 2019 PMID: 30871243 PMCID: PMC6470619 DOI: 10.3390/ma12060851
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623
Reference mixtures of Conventional Concrete (CC) and Ultra-High-Performance Concrete (UHPC) [14,40].
| Material | Unit | UHPC | CC | ||
|---|---|---|---|---|---|
| Ready-mix | Precast | Ready-mix | Precast | ||
| M3Q | M2Q | C35/45 | C50/60 | ||
| Cement/CEM I 52.5 R-HS/NA (SR 3) | kg/m3 | 775 | 832 | - | - |
| Cement/CEM II/A | kg/m3 | - | - | 356 | 405 |
| Quartz sand | kg/m3 | 946 | 975 | - | - |
| Sand | kg/m3 | - | - | 640 | 654 |
| Gravel | kg/m3 | - | - | 806 | 827 |
| Grit | kg/m3 | - | - | 362 | 371 |
| Water | kg/m3 | 183 | 166 | 165 | 141 |
| Quartz powder | kg/m3 | 193 | 207 | - | - |
| Silica fume | kg/m3 | 164 | 135 | - | - |
| Fly ash | kg/m3 | - | - | 47 | 25 |
| Superplasticizer | kg/m3 | 23.50 | 29.40 | - | - |
| Plasticizer | kg/m3 | - | - | 1.80 | 4.60 |
| Micro steel fibers | kg/m3 | 192 | 192 | - | - |
| Total | kg/m3 | 2476.50 | 2536.40 | 2377.80 | 2427.60 |
Figure 1Diagram of life cycle assessment processes of cradle-to-grave of Ultra-High-Performance Concrete (UHPC) and Conventional Concrete (CC). Note: T = Transport.
Transportation types and distances of concrete ingredients.
| Material | Transport Distance (km) | Type of Transport | Reference | ||
|---|---|---|---|---|---|
| Truck % | Train % | Ship % | |||
| Sand; Gravel; Grit | 39 | 88 | 1.90 | 10.10 | [ |
| Cement | 106 | 79.90 | 8.90 | 11.20 | [ |
| Fly ash | 100 | 100 | - | - | [ |
| Plasticizers | 100 | 100 | - | - | [ |
| Quartz sand; Quartz powder | 150 | 100 | - | - | Interviews |
| Silica fume | 700 | 100 | - | - | Interviews |
| Steel fibers | 230 | 100 | - | - | Interviews |
Inventories of the required energy regarding A3 life cycle stage of the production of 1 m3 concrete.
| Energy Carrier | UHPC | CC | ||
|---|---|---|---|---|
| Ready-mix | Precast | Ready-mix | Precast | |
| M3Q | M2Q | C35/45 | C50/60 | |
| mixing and plant operation | ||||
| Electricity (kWh/m3) | 7.09 | 4.43 | ||
| Fuel oil (L/m3) | 0.26 | |||
| Diesel | 0.09 | |||
| Compacting of precast concrete | ||||
| Electricity (kWh/m3) | - | 0.90 | - | 0.90 |
| Heat treatment of precast concrete | ||||
| Fuel oil (L/m3) | - | 3.00 | - | |
Construction materials of the two design options of the bridge.
| Bridge Structure Element | UHPC Design | Quantity | CC-Design | Quantity |
|---|---|---|---|---|
| Abutments and middle support with 5 single piers | C35/45 | 25.00 m3 | C35/45 | 40.00 m3 |
| Reinforcing steel | 6.50 t | Reinforcing steel | 27.00 t | |
| Support over the 5 middle single piers | Concrete hinges with UHPC cast on site (M2Q) | 1.10 m3 | - | - |
| Main girders (longitudinal) | Precast concrete C50/60 | 180.00 m3 | Precast concrete C50/60 | 142.00 m3 |
| Reinforcing + Prestressing steel | 54.80 t | Reinforcing + Prestressing steel | 33.00 t | |
| Polyurethane putty | 0.12 t | C35/45 | 119.00 m3 | |
| M3Q | 7.00 m3 | - | - | |
| Sealing | M3Q | 20.50 m3 | Epoxy resin | 0.56 t |
| - | - | Quartz sand | 0.84 t | |
| - | - | Bitumen sheets | 3.09 t | |
| Road surface | Poured asphalt | 1.73 t | Poured asphalt | 56.45 t |
| Stone mastic asphalt (SMA) | 28.80 t | - | - | |
| Jointing material | 0.09 t | Jointing material | 0.16 t | |
| High-grade chippings (0/5) | 0.90 t | Aggregates (2/5), (5/8) | 1.95 t | |
| Kerb elements | Epoxy resin | 1.24 t | - | - |
| M2Q | 33.00 m3 | Ready-mix concrete C25/30 | 59.00 m3 |
Frequency of replacements required for the maintenance work during use phase of the bridge.
| Element | Renewal | |
|---|---|---|
| UHPC Design (Number) | CC-Design (Number) | |
| Road surface | 4 | 4 |
| Sealing | - | 4 |
| Kerb elements | - | 2 |
| Concrete surface | - | 2 |
Figure 2(a) Carbon Footprint of Ultra-High-Performance Concrete (M3Q and M2Q) in comparison with conventional concrete (C35/45 and C50/60) per m3; (b) Share of materials of the carbon footprint for the A1–A3 life cycle stages.
Figure 3(a) Material Footprint of Ultra-High-Performance Concrete (M3Q and M2Q) in comparison with CC (C35/45 and C50/60) per m3; (b) Share of materials of the Raw Material Input (RMI) for the A1–A3 life cycle stages; (c) Share of materials of the Total Material Requirement (TMR) for the A1–A3 life cycle stages.
Figure 4(a) Water footprint of Ultra-High-Performance Concrete (M3Q and M2Q) in comparison with conventional concrete (C35/45 and C50/60) per m3; (b) Share of materials of the water footprint for the A1–A3 life cycle stages.
Types of cement of the considered mixtures of concrete in terms of results of the sensitivity analysis.
| Type of Concrete | Quantity (kg/m3) | Ex-Ante Type of Cement | Replaced by | |
|---|---|---|---|---|
| Ready-mix concrete | UHPC M3Q | 775 | CEM I 52.5 | CEM III/A |
| C35/45 | 356 | CEM II/A | ||
| Precast concrete | UHPC M2Q | 832 | CEM I 52.5 | |
| C50/60 | 405 | CEM II/A | ||
Figure 5(a) Carbon Footprint of the Ultra-High-Performance Concrete (M3Q and M2Q) in comparison with conventional concrete (C35/45 and C50/60) regarding sensitivity analysis per m3; (b) Potential savings of carbon footprint in kg CO2 equivalents regarding sensitivity analysis.
Figure 6(a) Material Footprint in terms of TMR of the Ultra-High-Performance Concrete (M3Q and M2Q) in comparison with conventional concrete (C35/45 and C50/60) regarding sensitivity analysis; (b) Potential savings of TMR in ton regarding sensitivity analysis; (c) Material Footprint in terms of RMI of the Ultra-High-Performance Concrete (M3Q and M2Q) in comparison with conventional concrete (C35/45 and C50/60) regarding sensitivity analysis; (d) Potential savings of RMI in ton regarding sensitivity analysis.
Figure 7(a) Water Footprint of the Ultra-High-Performance Concrete (M3Q and M2Q) in comparison with conventional concrete (C35/45 and C50/60) regarding sensitivity analysis; (b) Potential savings of water footprint in m3 water use eq. per m3 regarding sensitivity analysis.
Figure 8(a) Carbon footprint of the two designs of the bridge, Conventional Concrete Design (CC-Design) and Conventional Concrete enhanced with Ultra-High-Performance Concrete (UHPC- Design); (b) Share of materials of the carbon footprint for the A1–A3 life cycle stages.
Figure 9(a) Material footprint of the two designs of the bridge, Conventional Concrete Design (CC-Design) and Conventional Concrete enhanced with Ultra-High-Performance Concrete (UHPC-Design); (b) Share of materials of the RMI for the A1–A3 life cycle stages; (c) Share of materials of the TMR for the A1–A3 life cycle stages.
Figure 10(a) Water footprint of the two designs of the bridge, Conventional Concrete Design (CC-Design) and Conventional Concrete enhanced with Ultra-High-Performance Concrete (UHPC-Design); (b) Share of materials of the water footprint for the A1–A3 life cycle stages.
Life cycle inventory of 1 m3 of ready-mix (M3Q) UHPC using GaBi construction materials database for A1–A3 life cycle stages.
| Flow | Quantity | Unit | Process |
|---|---|---|---|
| Cement (CEM I) | 775.00 | kg | Cement (CEM I 52.5) (EN15804 A1-A3), production mix, at plant, technology mix, CEM I 52.5, DE |
| Quartz sand (0/2) | 946.00 | kg | Silica sand (Excavation and processing), production mix, at plant, technology mix, sand, diameter < 2 mm, DE |
| Very fine milled silica sand d50 = 20 micrometer | 193.00 | kg | Very fine milled silica sand d50 = 20 micrometer, at plant, Production, median diameter of silica sand grains is 20 micrometers, EU-27 |
| Plasticizer | 23.50 | kg | Concrete admixtures Plasticizer and superplasticizer—Deutsche Bauchemie e.V. (DBC) (A1–A3), production mix, association/model EPD, valid for Germany, technology mix, 1 kg; density: 1–1.6 kg/l, DE |
| Water, ground | 183.00 | kg | - |
| Transporting capacity | 7.31 * | tkm | Transportation by rail (EN15804 A4), production mix, at plant, technology mix, DE |
| Transporting capacity | 9.20 ** | tkm | Container ship (EN15804 A4), production mix, at plant, technology mix, heavy fuel oil driven, cargo, Average, DE |
| Transporting capacity | 398.58 *** | tkm | Truck (EN15804 A4), production mix, at plant, technology mix, DE |
| Electricity | 7.09 | kWh | Electricity grid mix 1 kV–60 kV, consumption mix, to consumer, AC, technology mix, 1 kV–60 kV, DE |
| Light fuel oil | 0.21 | kg | Light fuel oil at refinery (EN15804 B6), production mix, at refinery, from crude oil, 0.1 wt.% sulphur, DE |
| Diesel | 0.07 | kg | Diesel mix at filling station, consumption mix, at filling station, from crude oil and bio components, 8.37 wt.% bio components, DE |
| Micro steel fibers | 192 | kg | See production of 1 kg micro steel fibers |
Calculations of the transport: * Rail: 8.9 % of the cement ** Ship: 11.2% of the cement *** Truck: rest percentage of cement and other materials:
Life cycle inventory of 1 m3 of precast (M2Q) UHPC using GaBi construction materials database for A1–A3 life cycle stages.
| Flow | Quantity | Unit | Process |
|---|---|---|---|
| Cement (CEM I) | 832.00 | kg | Cement (CEM I 52.5) (EN15804 A1–A3), production mix, at plant, technology mix, CEM I 52.5, DE |
| Quartz sand (0/2) | 975.00 | kg | Silica sand (Excavation and processing), production mix, at plant, technology mix, sand, diameter < 2 mm, DE |
| Very fine milled silica sand d50 = 20 micrometer | 207.00 | kg | Very fine milled silica sand d50 = 20 micrometer, at plant, Production, median diameter of silica sand grains is 20 micrometers, EU-27 |
| Plasticizer | 29.40 | kg | Concrete admixtures Plasticizer and superplasticizer—Deutsche Bauchemie e.V. (DBC) (A1–A3), production mix, association / model EPD, valid for Germany, technology mix, 1 kg; density: 1–1.6 kg/l, DE |
| Water, ground | 166.00 | kg | - |
| Transporting capacity | 7.85 * | tkm | Transportation by rail (EN15804 A4), production mix, at plant, technology mix, DE |
| Transporting capacity | 9.88 ** | tkm | Container ship (EN15804 A4), production mix, at plant, technology mix, heavy fuel oil driven, cargo, Average, DE |
| Transporting capacity | 389.37 *** | tkm | Truck (EN15804 A4), production mix, at plant, technology mix, DE |
| Electricity | 26.42 | MJ | Electricity grid mix 1 kV–60 kV, consumption mix, to consumer, AC, technology mix, 1 kV–60 kV, DE |
| Light fuel oil | 2.73 | kg | Light fuel oil at refinery (EN15804 B6), production mix, at refinery, from crude oil, 0.1 wt.% sulphur, DE |
| Diesel | 0.07 | kg | Diesel mix at filling station, consumption mix, at filling station, from crude oil and bio components, 8.37 wt.% bio components, DE |
| Micro steel fibers | 192 | kg | See production of 1 kg micro steel fibers |
Calculations of the transport: * Rail: 8.9% of the cement ** Ship: 11.2% of the cement ; *** Truck: Rest percentage of cement and rest materials .
Life cycle inventory of 1 kg micro steel fibers using ecoinvent 3.1 cut-off database.
| Description | Flow | Quantity | Unit | Process |
|---|---|---|---|---|
| crude steel production | steel, low-alloyed, RER | 1.005362 | kg | steel production, converter, low-alloyed, cut-off, U, RER |
| Hot rolling to wire | Hot rolling, steel, RER | 1.005362 | kg | hot rolling, steel, cut-off, U, RER |
| Descaling | Electricity, low voltage, DE | 0.0357 | kWh | BKV: electricity voltage transformation from medium to low voltage, grid 2030 |
| Industrial machine, heavy, unspecified, RER | 1.42 × 10−5 | kg | industrial machine production, heavy, unspecified, cut-off, U, RER | |
| Dry drawing | Electricity, low voltage, DE | 0.114 | kWh | BKV: electricity voltage transformation from medium to low voltage, grid 2030 |
| Industrial machine, heavy, unspecified, RER | 1.38 × 10−4 | kg | industrial machine production, heavy, unspecified, cut-off, U, RER | |
| Soap, RER | 0.012 | kg | soap production, cut-off, U, RER | |
| wet drawing | Electricity, low voltage, DE | 2.452 | kWh | BKV: electricity voltage transformation from medium to low voltage, grid 2030 |
| Industrial machine, heavy, unspecified, RER | 9.74 × 10−4 | kg | industrial machine production, heavy, unspecified, cut-off, U, RER | |
| Lubricating oil, RER | 0.002 | kg | lubricating oil production, cut-off, U, RER | |
| Tap water, Europe without Switzerland | 0.02 | kg | market for tap water, cut-off, U, Europe without Switzerland | |
| Annealing | Electricity, low voltage, DE | 0.126 | kWh | BKV: electricity voltage transformation from medium to low voltage, grid 2030 |
| Industrial machine, heavy, unspecified, RER | 2.28 × 10−4 | kg | industrial machine production, heavy, unspecified, cut-off, U, RER | |
| stranding | Electricity, low voltage, DE | 0.937 | kWh | BKV: electricity voltage transformation from medium to low voltage, grid 2030 |
| Industrial machine, heavy, unspecified, RER | 2.60·10−3 | kg | industrial machine production, heavy, unspecified, cut-off, U, RER | |
| Cutting | Electricity, low voltage, DE | 0.033 | kWh | BKV: electricity voltage transformation from medium to low voltage, grid 2030 |
| Industrial machine, heavy, unspecified, RER | 1.56 × 10−4 | kg | industrial machine production, heavy, unspecified, cut-off, U, RER |
Life cycle inventory of 1 m3 of ready-mix concrete C35/45 using GaBi construction materials database for A1–A3 life cycle stages.
| Flow | Quantity | Unit | Process |
|---|---|---|---|
| Cement (CEM II/A) | 356.00 | kg | Cement (CEM II/A) (EN15804 A1–A3), production mix, at plant, technology mix, CEM II/A, DE |
| Gravel (2/32) | 1168.00 | kg | Gravel grain 2–32 mm, production mix, at plant, technology mix, dried, DE |
| Plasticizer | 1.80 | kg | Concrete admixtures plasticizer and superplasticizer - Deutsche Bauchemie e.V. (DBC) (A1–A3), production mix, association/model EPD, valid for Germany, technology mix, 1 kg; density: 1–1.6 kg/l DE |
| Sand (0/2) | 640.00 | kg | Sand grain 0–2 mm (dried) (EN15804 A1–A3), production mix, at plant, technology mix, grain size 0–2 mm, DE |
| Water | 165.00 | kg | - |
| Transporting capacity | 4.70 * | tkm | Transportation by rail (EN15804 A4), production mix, at plant, technology mix, DE |
| Transporting capacity | 11.35 ** | tkm | Container ship (EN15804 A4), production mix, at plant, technology mix, heavy fuel oil driven, cargo, Average, DE |
| Transporting capacity | 97.08 *** | tkm | Truck (EN15804 A4), production mix, at plant, technology mix, DE |
| Electricity | 4.43 | kWh | Electricity grid mix 1 kV–60 kV, consumption mix, to consumer, AC, technology mix, 1 kV–60 kV, DE |
| Light fuel oil | 0.21 | kg | Light fuel oil at refinery (EN15804 B6), production mix, at refinery, from crude oil, 0.1 wt.% sulphur, DE |
| Diesel | 0.07 | kg | Diesel mix at filling station, consumption mix, at filling station, from crude oil and bio components, 8.37 wt.% bio components, DE |
Calculations of the transport: * Rail: 1.9% of the aggregate, 8.9% of the cement ** Ship: 10.1% of the aggregate, 11.2% of the cement *** ruck: Rest
Life cycle inventory of 1 m3 of precast concrete C50/60 using GaBi construction materials database for A1–A3 life cycle stages.
| Flow | Quantity | Unit | Process |
|---|---|---|---|
| Cement (CEM II/A) | 405.00 | kg | Cement (CEM II/A) (EN15804 A1–A3), production mix, at plant, technology mix, CEM II/A, DE |
| Gravel (2/32) | 1198.00 | kg | Gravel grain 2–32 mm, production mix, at plant, technology mix, dried, DE |
| Plasticizer | 4.60 | kg | Concrete admixtures Plasticizer and superplasticizer, Deutsche Bauchemie e.V. (DBC) (A1–A3), production mix, association/model EPD, valid for Germany, technology mix, 1 kg; density: 1–1.6 kg/l DE |
| Sand (0/2) | 654.00 | kg | Sand grain 0–2 mm (dried) (EN15804 A1–A3), production mix, at plant, technology mix, grain size 0–2 mm, DE |
| Water | 141.00 | kg | - |
| Transporting capacity | 5.19 * | tkm | Transportation by rail (EN15804 A4), production mix, at plant, technology mix, DE |
| Transporting capacity | 12.10 ** | tkm | Container ship (EN15804 A4), production mix, at plant, technology mix, heavy fuel oil driven, cargo, Average, DE |
| Transporting capacity | 100.82 *** | tkm | Truck (EN15804 A4), production mix, at plant, technology mix, DE |
| Electricity | 16.85 | MJ | Electricity grid mix 1 kV–60 kV, consumption mix, to consumer, AC, technology mix, 1 kV–60 kV, DE |
| Light fuel oil | 2.73 | kg | Light fuel oil at refinery (EN15804 B6), production mix, at refinery, from crude oil, 0.1 wt.% sulphur, DE |
| Diesel | 0.07 | kg | Diesel mix at filling station, consumption mix, at filling station, from crude oil and bio components, 8.37 wt.% bio components, DE |
Calculations of the transport: * Rail: 1.9% of the Aggregate, 8.9% of the cement ** Ship: 10.1% of the aggregate, 11.2% of the cement *** Truck: Rest .
Life cycle inventory of the transportation (A4 life cycle stage) of C35/45 and M3Q using GaBi construction materials database.
| Flow | Quantity | Unit | Process |
|---|---|---|---|
| Transporting capacity | 281.99 * | tkm | Truck (EN15804 A4), production mix, at plant, technology mix, DE |
| Diesel | 1.79 ** | kg | Diesel mix at filling station, consumption mix, at filling station, from crude oil and bio components, 8.37 wt.% bio components, DE |
*: 2 way * 0.5 utilization * 16.3 km * 17.3 t = 281.99 tkm. Transport quantity: ; **: (0.48–0.35) L/km∙0.845 kg/L∙16.3 km = 1.79 kg.
Life cycle inventory of the transportation processes (A4 life cycle stage) of C50/60 and M2Q using GaBi construction materials database.
| Flow | Quantity | Unit | Process |
|---|---|---|---|
| Transporting capacity | 4860.00 * | tkm | Road train (EN15804 A4), production mix, at plant, technology mix, DE |
; Transport quantity: .
Life cycle inventory of the construction processes (A5 life cycle stage) using GaBi construction materials database.
| Type of Concrete | Flow | Quantity | Unit | Process |
|---|---|---|---|---|
| C35/45 | Electricity | 0.90 | MJ | Electricity grid mix 1 kV–60 kV, consumption mix, to consumer, AC, technology mix, 1 kV–60 kV, DE |
| M3Q | Diesel | 0.33 | kg | Diesel mix at filling station, consumption mix, at filling station, from crude oil and bio components, 8.37 wt.% bio components, DE |
| C50/60 M2Q | Electricity | 19.20 | MJ | Electricity grid mix 1 kV–60 kV, consumption mix, to consumer, AC, technology mix, 1 kV–60 kV, DE |
Life cycle inventory of the demolishing processes (C1 life cycle stage) using GaBi construction materials database.
| Type of Concrete | Flow | Quantity | Unit | Process |
|---|---|---|---|---|
| CC | Diesel | 0.51 | kg | Diesel mix at filling station, consumption mix, at filling station, from crude oil and bio components, 8.37 wt.% bio components, DE |
| UHPC | 5.92 |
Life cycle inventory of the construction waste transport (C2 life cycle stage) using GaBi construction materials database.
| Flow | Quantity | Unit | Process |
|---|---|---|---|
| Transporting capacity | 810.00 * | tkm | Road train (EN15804 A4), production mix, at plant, technology mix, DE |
*: 2 way∙0.5 utilization∙30 km∙27 t = 810.00 tkm; Transport quantity: (27 t)/(2.2 t/m3) = 12 m3.
Life cycle inventory of the construction waste treatment (C3 life cycle stage) using GaBi construction materials database.
| Type of Concrete | Flow | Quantity | Unit | Process |
|---|---|---|---|---|
| CC | Electricity | 18.26 | MJ | Electricity grid mix 1 kV-60 kV, consumption mix, to consumer, AC, technology mix, 1 kV–60 kV, DE |
| UHPC | 21.21 | |||
| CC | Diesel | 0.76 | kg | Diesel mix at filling station, consumption mix, at filling station, from crude oil and bio components, 8.37 wt.% bio components, DE |
| UHPC | 0.87 |
Processes descriptions of the cement type CEM III/A and steel electric production.
| Material | Process | Database |
|---|---|---|
| CEM III/A | Cement (CEM III A) (EN15804 A1–A3), production mix, at plant, technology mix, CEM III A | GaBi construction material database |
| steel (electric production) | steel production, electric, low-alloyed, cut-off, U | Ecoinvent 3.1 database |
Life cycle inventory of A1–A3 of the CC bridge design, using GaBi construction material database.
| Material | Quantity | Unit | Process |
|---|---|---|---|
| Bitumen | 169.54 | kg | Bitumen at refinery, production mix, at refinery, from crude oil, DE |
| Bitumen sheets | 3064.36 | kg | Bitumen sheets PYE-PV 200 S5 (not slated) (EN15804 A1–A3), production mix, at plant, technology mix, 5,2 kg/m2, DE |
| Bitumen sheets | 30.42 | kg | Bitumen sheet v 60 (EN15804 A1–A3), production mix, at plant, technology mix, 5 kg/m2, DE |
| Quartz sand (0/2) | 843.00 | kg | Silica sand (Excavation and processing), production mix, at plant, technology mix, sand, diameter < 2 mm, DE |
| C25/30, A1–A3 | 59.00 | m3 | C25/30, A1–A3 |
| C35/45, A1–A3 | 159.00 | m3 | C35/45, A1–A3 |
| C50/60, A1–A3 | 142.00 | m3 | C50/60, A1–A3 |
| Epoxy resin | 562.00 | kg | Epoxy Resin (EP) Mix, consumption mix, to consumer, from Bisphenol A and epichlorohydrin, approx. 1.15 g/cm3, DE |
| Melted asphalt, integrated | 56.45 | t | Mastic asphalt (EN15804 A1–A3), production mix, at plant, technology mix, 2400 kg/m3, DE |
| Split (2/15) | 1950.00 | kg | Crushed stone grain 2–15 mm (EN15804 A1–A3), production mix, at plant, technology mix, dried, DE |
| Steel wire | 68.00 | t | Reinforced steel (wire) (EN15804 A1–A3), production mix, at plant, EAF route, wire, DE |
Life cycle inventory of A1–A3 of the UHPC bridge design using GaBi construction material database.
| Material | Quantity | Unit | Process |
|---|---|---|---|
| Bitumen | 96.58 | kg | Bitumen at refinery, production mix, at refinery, from crude oil, DE |
| C35/45, A1–A3 | 25.00 | m3 | C35/45, A1–A3 |
| C50/60, A1–A3 | 180.00 | m3 | C50/60, A1–A3 |
| Crushed sand (0/2) | 900.00 | kg | Limestone, crushed stone fines (Grain size 0/4) (EN15804 A1–A3), production mix, at plant, technology mix, grain size 0/4, DE |
| Epoxy resin | 1.24 | t | Epoxy Resin (EP) Mix, consumption mix, to consumer, from Bisphenol A and epichlorohydrin, approx. 1.15 g/cm3, DE |
| Melted asphalt, integrated | 1.73 | t | Mastic asphalt (EN15804 A1–A3), production mix, at plant, technology mix, 2400 kg/m3, DE |
| Sikaflex-651 S LVP | 122.85 | kg | PUR sealing compound (EN15804 A1–A3), production mix, at plant, technology mix, PUR, DE |
| Steel wire | 61.90 | t | Reinforced steel (wire) (EN15804 A1–A3), production mix, at plant, EAF route, wire, DE |
| Stone mastic asphalt | 28.80 | t | Stone mastic asphalt SMA (EN15804 A1–A3), production mix, at plant, technology mix, SMA, DE |
| UHPC M2Q, A1–A3, ready-mix concrete | 1.10 | m3 | UHPC M2Q, A1–A3, Transport |
| UHPC M2Q, A1–A3 | 33.00 | m3 | UHPC M2Q, A1–A3 |
| UHPC M3Q+, A1–A3 | 27.50 | m3 | UHPC M3Q+, A1–A3 |
| Micro steel fibers | 11.83 * | t | See input data for production of 1 kg steel fibers |
Process of steel fibers calculated separately with ecoinvent database and results added afterwards. *
Transport details of CC bridge design.
| Material | Quantity | Means of Transport | Trips | Utilization | Distance | Payload | Transport Capacity |
|---|---|---|---|---|---|---|---|
| (Quantity) | (%) | (km) | (t) | ||||
| C35/45 | 159.00 m3 | Truck | 42 | 50 | 16.3 | 17.3 | 5978.19 tkm + 39.38 kg Diesel |
| 2 | 10 | 16.3 | 17.3 | ||||
| C50/60 | 142.00 m3 | Road Train | 20 | 50 | 180 | 34.08 * | 61,344.00 tkm |
| C25/30 | 59.00 m3 | Truck | 16 | 50 | 16.3 | 17.3 | 2255.92 tkm + 14.32 kg Diesel |
| Epoxy resin | 0.56 t | Van | 2 | 6 | 30 | 5 | 18.00 tkm |
| Quartz sand | 0.84 t | Small Truck | 2 | 5 | 30 | 9.3 | 27.90 tkm |
| Bituminous sheeting | 3.09 t | Van | 2 | 30 | 30 | 5 | 90.00 tkm |
| Mastic asphalt | 56.45 t | Road Train | 4 | 50 | 30 | 27 | 1620.00 tkm + 6.10 kg Diesel + 2.65 kg heating oil |
| Joint sealant | 0.17 t | Van | 2 | 2 | 30 | 5 | 5.10 tkm |
| Spreading material | 1.95 t | Small Truck | 2 | 10 | 30 | 9.3 | 55.80 tkm |
| Steel | 68.00 t | Road Train | 4 | 50 | 150 | 27 | 10125 tkm |
| 2 | 25 | 150 | 27 |
* .
Life cycle inventory of the transport of CC bridge design, using GaBi database.
| Medium | Quantity | Unit | Delivery Process |
|---|---|---|---|
| Diesel | 59.80 | kg | Diesel mix at filling station, consumption mix, at filling station, from crude oil and bio components, 8.37 wt.% bio components, DE |
| Light fuel oil | 2.65 | kg | Light fuel oil at refinery (EN15804 B6), production mix, at refinery, from crude oil, 0.1 wt.% sulphur, DE |
| Transporting capacity | 113.10 | tkm | Delivery van (EN15804 A4), production mix, at plant, technology mix, diesel driven, cargo, DE |
| Transporting capacity | 83.70 | tkm | Small truck (EN15804 A4), production mix, at plant, technology mix, DE |
| Transporting capacity | 8234.11 | tkm | Truck (EN15804 A4), production mix, at plant, technology mix, DE |
| Transporting capacity | 73,089.00 | tkm | Road train (EN15804 A4), production mix, at plant, technology mix, DE |
Transport details of UHPC bridge design.
| Material | Quantity | Transport Medium | Rides | Workload | Distance | Payload | Transport Capacity |
|---|---|---|---|---|---|---|---|
| (Quantity) | (%) | (km) | (t) | ||||
| C35/45 | 25.00 m3 | Truck | 6 | 50 | 16.3 | 17.3 | 930.57 tkm + 7.16 kg Diesel |
| 2 | 15 | 16.3 | 17.3 | ||||
| C50/60 | 180.00 m3 | Road Train | 20 | 50 | 180 | 43.2 * | 77,760.00 tkm |
| M3Q+ | 27.50 m3 | Truck | 6 | 50 | 16.3 | 17.3 | 1015.16 tkm + 7.16 kg Diesel |
| 2 | 30 | 16.3 | 17.3 | ||||
| M2Q | 1.1 m3 | Truck | 2 | 10 | 16.3 | 17.3 | 56.40 tkm + 1.79 kg diesel |
| 33.00 m3 | Road Train | 6 | 50 | 180 | 27 | 14,580.00 tkm | |
| Polyurethane cement | 0.12 t | Van | 2 | 1 | 30 | 5 | 3.00 tkm |
| Mastic asphalt | 1.73 t | Small Truck | 2 | 10 | 30 | 9.3 | 55.80 tkm + 3.04 kg diesel + 1.33 kg heating oil |
| Sma | 28.80 | Road Train | 2 | 50 | 30 | 27 | 810.00 tkm |
| Joint sealant | 0.10 t | Van | 2 | 1 | 30 | 5 | 3.00 tkm |
| Spreading material | 0.90 t | Small Truck | 2 | 5 | 30 | 9.3 | 27.90 tkm |
| Epoxy resin | 1.86 t | Van | 2 | 19 | 30 | 5 | 57.00 tkm |
| Steel | 61.90 t | Road Train | 4 | 50 | 150 | 27 | 9315 tkm |
| 2 | 15 | 150 | 27 |
* .
Life cycle inventory of the transport of UHPC bridge design using GaBi constructin material database.
| Medium | Quantity | Unit | Delivery Process |
|---|---|---|---|
| Diesel | 19.15 | kg | Diesel mix at filling station, consumption mix, at filling station, from crude oil and bio components, 8.37 wt.% bio components, DE |
| Light fuel oil | 1.33 | kg | Light fuel oil at refinery (EN15804 B6), production mix, at refinery, from crude oil, 0.1 wt.% sulphur, DE |
| Transporting capacity | 63.00 | tkm | Delivery van (EN15804 A4), production mix, at plant, technology mix, diesel driven, cargo, DE |
| Transporting capacity | 83.70 | tkm | Small truck (EN15804 A4), production mix, at plant, technology mix, DE |
| Transporting capacity | 2002.13 | tkm | Truck (EN15804 A4), production mix, at plant, technology mix, DE |
| Transporting capacity | 102,465.00 | tkm | Road train (EN15804 A4), production mix, at plant, technology mix, DE |
Calculation of the required fuels for the installation of the components, CC bridge design.
| Component | Construction Machine | Specific Consumption | Quantity | Needs | Energy Carriers |
|---|---|---|---|---|---|
| Sealing layer | Surface welding installation device | 0.33 kg/m2 | 612.70 m2 | 202.19 kg | Propane |
| Cross member | Truck concrete pump | 0.39 L/m3 | 159.00 m3 | 61.85 L | Diesel |
| Internal vibrator | 0.9 MJ/m3 | 143.10 MJ | Electricity | ||
| Side member | Crane | 19.2 MJ/m3 | 142.00 m3 | 2726.40 MJ | Electricity |
| Topping | Cooker | 8.00 L/h | 0.40 h | 3.20 L | Diesel |
| 3.50 L/h | 1.40 L | Fuel oil | |||
| Plank | 5.00 L/h | 2.00 L | Diesel | ||
| Potting stove | 0.60 kg/h | 7.70 h | 4.62 kg | Propane | |
| Rubber wheeled roller | 8.00 L/h | 0.09 h | 0.72 L | Diesel | |
| Smooth roller | 8.00 L/h | 0.11 h | 0.88 L | Diesel | |
| Road caps | Truck concrete pump | 0.39 L/m3 | 59.00 m3 | 22.95 L | Diesel |
| Internal vibrator | 0.9 MJ/m3 | 53.10 MJ | Electricity | ||
| Steel | Crane | 8 MJ/t | 68.00 t | 544.00 MJ | Electricity |
Life cycle inventory of A5 life cycle stage of the CC bridge design, using GaBi construction materials database.
| Medium | Quantity | Unit | Delivery Process |
|---|---|---|---|
| Diesel | 77.40 | kg | Diesel mix at filling station, consumption mix, at filling station, from crude oil and bio components, 8.37 wt.% bio components, DE |
| Electricity | 3466.60 | MJ | Electricity grid mix 1 kV–60 kV, consumption mix, to consumer, AC, technology mix, 1 kV–60 kV, DE |
| Light fuel oil | 1.18 | kg | Light fuel oil at refinery (EN15804 B6), production mix, at refinery, from crude oil, 0.1 wt.% sulphur, DE |
| Liquefied petroleum gas | 206.81 | kg | Liquefied Petroleum Gas (LPG) (EN15804 B6), production mix, at refinery, Mix of 70% propane and 30% butane, DE |
Calculation of the required fuels for the installation of the components, UHPC bridge design.
| Component | Construction Machine | Specific Consumption | Quantity | Need | Energy Carriers |
|---|---|---|---|---|---|
| Cross member | Truck concrete pump | 0.39 L/m3 | 25.00 m3 | 9.73 L | Diesel |
| Internal vibrator | 0.9 MJ/m3 | 22.50 MJ | Electricity | ||
| Side member | Crane | 19.2 MJ/m3 | 180.00 m3 | 3456.00 MJ | Electricity |
| Truck concrete pump | 0.39 L/m3 | 27.50 m3 | 10.70 L | Diesel | |
| Internal vibrator | 0.9 MJ/m3 | 24.75 MJ | Electricity | ||
| Concrete Joints | Truck concrete pump | 0.39 L/m3 | 1.1 m3 | 0.43 L | Diesel |
| Internal vibrator | 0.9 MJ/m3 | 0.99 MJ | Electricity | ||
| Topping | Cooker | 8.00 L/h | 0.33 h | 2.64 L | Diesel |
| 3.50 L/h | 1.16 L | Heating oil | |||
| Finisher | 8.5 L/h | 0.18 h | 1.53 L | Diesel | |
| Potting stove | 0.6 kg/h | 4.40 h | 2.64 kg | Propane | |
| Roller | 6.00 L/h | 0.18 h | 1.08 L | Diesel | |
| Steel | Crane | 8 MJ/t | 61.90 t | 495.20 MJ | Electricity |
Life cycle inventory of A5 life cycle stage of the UHPC bridge design, using GaBi construction materials database.
| Medium | Quantity | Unit | Delivery Process |
|---|---|---|---|
| Diesel | 22.05 | kg | Diesel mix at filling station, consumption mix, at filling station, from crude oil and bio components, 8.37 wt.% bio components, DE |
| Electricity | 4633.04 | MJ | Electricity grid mix 1 kV–60 kV, consumption mix, to consumer, AC, technology mix, 1 kV–60 kV, DE |
| Light fuel oil | 0.97 | kg | Light fuel oil at refinery (EN15804 B6), production mix, at refinery, from crude oil, 0.1 wt.% sulphur, DE |
| Liquefied petroleum gas | 2.64 | kg | Liquefied Petroleum Gas (LPG) (EN15804 B6), production mix, at refinery, Mix of 70% propane and 30% butane, DE |
Calculation of the required fuels for the replacement of the lining and sealing, B4 life cycle stage, CC bridge design.
| Task | Construction Machine | Specific Consumption | Quantity | Need | Energy Carriers |
|---|---|---|---|---|---|
| Removal | Milling machine | 2.54 L/m3 | 23.67 m3 | 60.12 L | Diesel |
| Excavator with peeling device | 0.2 L/m2 | 612.70 m2 | 122.54 L | Diesel | |
| 0.13 L/m2 | 79.65 L | Propane | |||
| Editing | Treatment facility | 13.00 MJ/t | 63.06 t | 819.78 MJ | Diesel |
| 10.00 MJ/t | 630.60 MJ | Electricity | |||
| Renewal | Surface welding installation device | 0.33 | 612.70 | 202.19 kg | Propane |
| Cooker + plank | 13.00 | 0.40 | 5.20 L | Diesel | |
| Cooker | 3.50 | 0.40 | 1.40 L | Heating oil | |
| Potting stove | 0.60 | 7.70 | 4.62 kg | Propane | |
| Rubber wheeled roller | 8.00 | 0.09 | 0.72 L | Diesel | |
| Smooth roller | 8.00 | 0.11 | 0.88 L | Diesel |
Calculation of the required transports when replacing the pavement and sealing, B4 life cycle stage, CC bridge design.
| Material | Quantity | Means of Transport | Rides | Workload | Distance | Payload | Transport Capacity |
|---|---|---|---|---|---|---|---|
| (Quantity) | (%) | (km) | (t) | ||||
| Outward transport | |||||||
| Covering + sealing | 63.06 t | Road Train | 4 | 50 | 30 | 27 | 1863.00 t km |
| 2 | 15 | 30 | 27 | ||||
| Delivery transport | |||||||
| Epoxy resin | 0.56 t | Van | 2 | 6 | 30 | 5 | 18.00 t km |
| Quartz sand | 0.84 t | Small Truck | 2 | 5 | 30 | 9.3 | 27.90 t km |
| Bituminous sheeting | 3.09 t | Van | 2 | 30 | 30 | 5 | 90.00 t km |
| Mastic asphalt | 56.45 t | Road Train | 4 | 50 | 30 | 27 | 1620.00 t km + 6.10 kg Diesel + 2.65 kg heating oil |
| Joint sealant | 0.17 t | Van | 2 | 2 | 30 | 5 | 5.10 t km |
| Spreading material | 1.95 t | Small Truck | 2 | 10 | 30 | 9.3 | 55.80 t km |
Life cycle inventory of B4 life cycle stage of the CC bridge design using GaBi construction materials database.
| Material | Quantity | Unit | Delivery Process |
|---|---|---|---|
| Bitumen | 169.54 | kg | Bitumen at refinery, production mix, at refinery, from crude oil, DE |
| Bitumen sheets | 3064.36 | kg | Bitumen sheets PYE-PV 200 S5 (not slated) (EN15804 A1–A3), production mix, at plant, technology mix, 5.2 kg/m2, DE |
| Bitumen sheets | 30.42 | kg | Bitumen sheet v 60 (EN15804 A1–A3), production mix, at plant, technology mix, 5 kg/m2, DE |
| Epoxy resin | 562.00 | kg | Epoxy Resin (EP) Mix, consumption mix, to consumer, from Bisphenol A and epichlorohydrin, approx. 1.15 g/cm3, DE |
| Quartz sand (0/2) | 843.00 | kg | Silica sand (Excavation and processing), production mix, at plant, technology mix, sand, diameter < 2 mm, DE |
| Diesel | 188.52 | kg | Diesel mix at filling station, consumption mix, at filling station, from crude oil and bio components, 8.37 wt.% bio components, DE |
| Electricity | 630.60 | MJ | Electricity grid mix 1 kV–60 kV, consumption mix, to consumer, AC, technology mix, 1 kV–60 kV, DE |
| Light fuel oil | 5.16 | kg | Light fuel oil at refinery (EN15804 B6), production mix, at refinery, from crude oil, 0.1 wt.% sulphur, DE |
| Liquefied petroleum gas | 206.97 | kg | Liquefied Petroleum Gas (LPG) (EN15804 B6), production mix, at refinery, Mix of 70% propane and 30% butane, DE |
| Melted asphalt | 56.45 | t | Mastic asphalt (EN15804 A1–A3), production mix, at plant, technology mix, 2400 kg/m3, DE |
| Split (2/15) | 1950.00 | kg | Crushed stone grain 2–15 mm (EN15804 A1–A3), production mix, at plant, technology mix, dried, DE |
| Transporting capacity | 113.10 | tkm | Delivery van (EN15804 A4), production mix, at plant, technology mix, diesel driven, cargo, DE |
| Transporting capacity | 83.70 | tkm | Small truck (EN15804 A4), production mix, at plant, technology mix, DE |
| Transporting capacity | 3483.00 | tkm | Road train (EN15804 A4), production mix, at plant, technology mix, DE |
Calculation of the required fuels when replacing the caps and parts of the concrete surface, module B4, CC bridge design.
| Task | Construction Machine | Specific Consumption | Quantity | Needs | Energy Carriers |
|---|---|---|---|---|---|
| Removal | Hydraulic hammer, steel cutting + loading | 17.60 L/m3 | 59.00 m3 | 1038.40 L | Diesel |
| Pneumatic hammer | 0.43 L/m2 | 108.18 m2 | 46.52 L | Diesel | |
| Sandblasting | 0.48 L/m2 | 51.93 L | Diesel | ||
| Editing | Dredgers | 0.30 L/m3 | 63.33 m3 | 19.00 L | Diesel |
| Wheel loader | 0.60 L/m3 | 38.00 L | Diesel | ||
| Treatment facility | 18.26 MJ/m3 | 1156.35 MJ | Electricity | ||
| Treatment facility | 13.00 MJ/t | 8.00 t | 104.00 MJ | Diesel | |
| 10.00 MJ/t | 80.00 MJ | Electricity | |||
| Renew | Truck concrete pump | 0.39 L/m3 | 59.00 m3 | 22.95 L | Diesel |
| Internal vibrator | 0.90 MJ/m3 | 53.10 MJ | Electricity | ||
| Shotcrete | 0.40 L/m2 | 43.27 L | Diesel | ||
| Crane | 8.00 MJ/t | 8.00 t | 64.00 MJ | Electricity |
Calculation of the required transports when replacing the caps and parts of the concrete surface, module B4, CC bridge design.
| Material | Quantity | Means of Transport | Rides | Workload | Distance | Payload | Transport Capacity |
|---|---|---|---|---|---|---|---|
| (Quantity) | (%) | (km) | (t) | ||||
| Outward transport | |||||||
| Concrete fracture | 152 t | Road Train | 10 | 50 | 30 | 27 | 4536.00 tkm |
| 2 | 30 | 30 | 27 | ||||
| Steel | 8.00 t | Small Truck | 2 | 43 | 150.00 | 9.30 | 1199.70 tkm |
| Delivery transport | |||||||
| C25/30 | 59.00 m3 | Truck | 16 | 50 | 16.30 | 17.30 | 2255.92 tkm + 14.32 kg Diesel |
| Steel | 8.00 t | Small Truck | 2 | 43 | 150.00 | 9.30 | 1199.70 tkm |
| Shotcrete | 4.33 m3 | Truck | 2 | 30 | 16.30 | 17.30 | 169.19 + 1.79 kg Diesel |
Life cycle inventory for B4 life cycle stage of the CC bridge design using GaBi construction materials database.
| Material | Quantity | Unit | Delivery Process |
|---|---|---|---|
| C25/30, A1–A3 | 59.00 | m3 | C25/30. A1-A3 |
| C35/45, A1–A3 | 4.33 | m3 | C35/45, A1-A3 |
| Steel wire | 8.00 | t | Reinforced steel (wire) (EN15804 A1–A3), production mix, at plant, EAF route, wire, DE |
| Diesel | 1083.31 | kg | Diesel mix at filling station, consumption mix, at filling station, from crude oil and bio components, 8.37 wt.% bio components, DE |
| Electricity | 1353.45 | MJ | Electricity grid mix 1 kV–60 kV, consumption mix, to consumer, AC, technology mix, 1 kV–60 kV, DE |
| Transporting capacity | 2425.11 | tkm | Truck (EN15804 A4), production mix, at plant, technology mix, DE |
| Transporting capacity | 4536.00 | tkm | Road train (EN15804 A4), production mix, at plant, technology mix, DE |
| Transporting capacity | 2399.40 | tkm | Small truck (EN15804 A4), production mix, at plant, technology mix, DE |
Calculation of the required fuels when replacing the pavement, module B4, UHPC bridge design.
| Task | Construction Machine | Specific Consumption | Quantity | Needs | Energy Carrier |
|---|---|---|---|---|---|
| Removal | Milling machine | 2.54 L/m3 | 12.81 m3 | 32.54 L | Diesel |
| Editing | Treatment facility | 13.00 MJ/t | 31.52 t | 409.76 MJ | Diesel |
| 10.00 MJ/t | 315.20 MJ | Electricity | |||
| Renew | Cooker | 8.00 L/h | 0.33 h | 2.64 L | Diesel |
| 3.50 L/h | 1.16 L | Heating oil | |||
| Finisher | 8.50 L/h | 0.18 h | 1.53 L | Diesel | |
| Potting stove | 0.60 kg/h | 4.40 h | 2.64 kg | Propane | |
| Roller | 6.00 L/h | 0.18 h | 1.08 l | Diesel |
Calculation of the required transports when replacing the surface, module B4, UHPC bridge design.
| Material | Quantity | Mean of Transportation | Rides | Workload | Distance | Payload | Transport Capacity |
|---|---|---|---|---|---|---|---|
| (Quantity) | (%) | (km) | (t) | ||||
| Outward transport | |||||||
| Topping | 31.52 t | Road Train | 2 | 50 | 30 | 27 | 972.00 tkm |
| 2 | 10 | 30 | 27 | ||||
| Delivery transport | |||||||
| Mastic asphalt | 1.73 t | Small Truck | 2 | 10 | 30 | 9,3 | 55.80 tkm + 3.04 kg Diesel + 1.33 kg heating oil |
| SMA | 28.80 t | Road Train | 2 | 50 | 30 | 27 | 810.00 tkm |
| Joint sealant | 0.10 t | Van | 2 | 1 | 30 | 5 | 3.00 tkm |
| Spreading material | 0.90 t | Small Truck | 2 | 5 | 30 | 27.90 | 27.90 tkm |
Life cycle inventory of B4 life cycle stage of the UHPC bridge design using GaBi construction materials database.
| Material | Quantity | Unit | Delivery Proces |
|---|---|---|---|
| Bitumen | 96.58 | kg | Bitumen at refinery, production mix, at refinery, from crude oil, DE |
| Crushed sand (0/2) | 900.00 | kg | Limestone, crushed stone fines (Grain size 0/4) (EN15804 A1–A3), production mix, at plant, technology mix, grain size 0/4, DE |
| Diesel | 44.61 | kg | Diesel mix at filling station, consumption mix, at filling station, from crude oil and bio components, 8.37 wt.% bio components, DE |
| Electricity | 315.20 | MJ | Electricity grid mix 1 kV–60 kV, consumption mix, to consumer, AC, technology mix, 1 kV–60 kV, DE |
| Light fuel oil | 2.3 | kg | Light fuel oil at refinery (EN15804 B6), production mix, at refinery, from crude oil, 0.1 wt.% sulphur, DE |
| Liquefied petroleum gas | 2.64 | kg | Liquefied Petroleum Gas (LPG) (EN15804 B6), production mix, at refinery, Mix of 70% propane and 30% butane, DE |
| Melted asphalt, integrated | 1728.00 | kg | Mastic asphalt (EN15804 A1–A3), production mix, at plant, technology mix, 2400 kg/m3,DE |
| Stone mastic asphalt | 28.80 | t | Stone mastic asphalt SMA (EN15804 A1–A3), production mix, at plant, technology mix, SMA, DE |
| Transporting capacity | 3.00 | tkm | Delivery van (EN15804 A4), production mix, at plant, technology mix, diesel driven, cargo, DE |
| Transporting capacity | 83.70 | tkm | Small truck (EN15804 A4), production mix, at plant, technology mix, DE |
| Transporting capacity | 1782.00 | tkm | Road train (EN15804 A4), production mix, at plant, technology mix, DE |
Calculation of the required fuels for the demolition of the structure, module C1–C3, CC bridge design.
| Measure | Construction Machine | Spec. Consumption | Quantity | Needs | Energy Carrier |
|---|---|---|---|---|---|
| Discontinuance | Milling machine | 2.54 L/m3 | 23.67 m3 | 60.12 L | Diesel |
| Excavator with peeling device | 0.2 L/m2 | 612.70 m2 | 122.54 L | Diesel | |
| 0.13 L/m2 | 79.65 L | Propane | |||
| Demolition machines | 17.60 L/m3 | 360.00 m3 | 6336.00 L | Diesel | |
| Editing | Treatment facility | 13.00 MJ/t | 131.06 t | 1703.78 MJ | Diesel |
| 10.00 MJ/t | 1310.60 MJ | Electricity | |||
| Dredgers | 0.30 L/m3 | 360.00 m3 | 108.00 L | Diesel | |
| Wheel loader | 0.60 L/m3 | 216.00 L | Diesel | ||
| Concrete preparation plant | 18.26 MJ/m3 | 6573.60 MJ | Electricity |
Calculation of the required transports when demolishing the structure, module C2, CC bridge design.
| Material | Quantity | Mean of Transportation | Rides | Workload | Distance | Payload | Transport Capacity |
|---|---|---|---|---|---|---|---|
| (Quantity) | (%) | (km) | (t) | ||||
| Covering + sealing | 63.06 t | Road Train | 4 | 50 | 30 | 27 | 1863.00 tkm |
| 2 | 15 | 30 | 27 | ||||
| Concrete fracture | 864.00 t | Road Train | 64 | 50 | 30 | 27 | 25,920.00 tkm |
| Steel | 68.00 t | Road Train | 4 | 50 | 30 | 27 | 2025.00 tkm |
| 2 | 25 | 30 | 27 |
Life cycle processes for modules C1–C3 of the CC bridge design using GaBi construction materials database.
| Medium | Quantity | Einheit | Delivery Process |
|---|---|---|---|
| Diesel | 5822.14 | kg | Diesel mix at filling station, consumption mix, at filling station, from crude oil and bio components, 8.37 wt.% bio components, DE |
| Electricity | 7884.20 | MJ | Electricity grid mix 1 kV–60 kV, consumption mix, to consumer, AC, technology mix, 1 kV–60 kV, DE |
| Liquefied petroleum gas | 0.16 | kg | Liquefied Petroleum Gas (LPG) (EN15804 B6), production mix, at refinery, Mix of 70% propane and 30% butane, DE |
| Transporting capacity | 29,808.00 | tkm | Road train (EN15804 A4), production mix, at plant, technology mix, DE |
Calculation of the required fuels when demolishing the structure, module C1-C3, UHPC bridge design.
| Construction Machine | Specific Consumption | Quantity | Need | Energy Carrier |
|---|---|---|---|---|
| Milling machine | 2.54 L/m3 | 12.81 m3 | 32.54 L | Diesel |
| Demolition machines | 17.60 L/m3 | 205.00 m3 | 3608.00 L | Diesel |
| 35.20 L/m3 | 61.60 m3 | 2168.32 L | Diesel | |
| Treatment facility | 13.00 MJ/t | 93.42 t | 1214.46 MJ | Diesel |
| 10.00 MJ/t | 934.20 MJ | Electricity | ||
| Excavator, NC | 0.30 L/m3 | 205.00 m3 | 61.50 L | Diesel |
| Wheel loader, NC | 0.60 L/m3 | 123.00 L | Diesel | |
| Concrete preparation plant NC | 18.26 MJ/m3 | 3743.30 MJ | Electricity | |
| Excavator, UHPC | 0.43 L/m3 | 61.60 m3 | 26.49 L | Diesel |
| Wheel loader, UHPC | 0.60 L/m3 | 36.96 L | Diesel | |
| Concrete preparation plant UHPC | 21.21 MJ/m3 | 1306.54 MJ | Electricity |
Calculation of the required transports when demolishing the structure, module C2, UHPC bridge design.
| Material | Quantity | Mean of Transportation | Rides | Workload | Distance | Payload | Transport Capacity |
|---|---|---|---|---|---|---|---|
| (Quantity) | (%) | (km) | (t) | ||||
| Surface | 31.52 t | Road Train | 2 | 50 | 30 | 27 | 972.00 tkm |
| 2 | 10 | 30 | 27 | ||||
| CC Concrete demolishing | 492.00 t | Road Train | 36 | 50 | 30 | 27 | 14,742.00 tkm |
| 2 | 10 | 30 | 27 | ||||
| UHPC | 148.00 t | Road Train | 10 | 50 | 30 | 27 | 4455.00 tkm |
| 2 | 25 | 30 | 27 | ||||
| Concrete demolishing | 61.90 t | Road Train | 4 | 50 | 30 | 27 | 1863.00 tkm |
| 2 | 15 | 30 | 27 |
Life cycle inventory of C1–C3 life cycle stage of the UHPC bridge design using GaBi construction materials database.
| Flow | Quantity | Unit | Delivery Process |
|---|---|---|---|
| Diesel | 5146.58 | kg | Diesel mix at filling station, consumption mix, at filling station, from crude oil and bio components, 8.37 wt.% bio components, DE |
| Electricity | 5984.04 | MJ | Electricity grid mix 1 kV–60 kV, consumption mix, to consumer, AC, technology mix, 1 kV–60 kV, DE |