| Literature DB >> 23812025 |
Ruth Angerville1, Yves Perrodin, Christine Bazin, Evens Emmanuel.
Abstract
Discharges of Combined Sewer Overflows (CSOs) into periurban rivers present risks for the concerned aquatic ecosystems. In this work, a specific ecotoxicological risk assessment methodology has been developed as management tool to municipalities equipped with CSOs. This methodology comprises a detailed description of the spatio-temporal system involved, the choice of ecological targets to be preserved, and carrying out bioassays adapted to each compartment of the river receiving CSOs. Once formulated, this methodology was applied to a river flowing through the outskirts of the city of Lyon in France. The results obtained for the scenario studied showed a moderate risk for organisms of the water column and a major risk for organisms of the benthic and hyporheic zones of the river. The methodology enabled identifying the critical points of the spatio-temporal systems studied, and then making proposals for improving the management of CSOs.Entities:
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Year: 2013 PMID: 23812025 PMCID: PMC3734449 DOI: 10.3390/ijerph10072670
Source DB: PubMed Journal: Int J Environ Res Public Health ISSN: 1660-4601 Impact factor: 3.390
Figure 2Conceptual model of the scenario studied.
Standards of the physicochemical analyses performed.
| Parameters | Standards |
|---|---|
| pH | ISO 10523:2008 |
| Conductivity | EN 27888 |
| COD | NF EN ISO 10 304-1 |
| Ammonium (NH4+) | NF EN ISO 11732 |
| Phosphates (PO43−) | NF EN 1189 |
| Sulphates (SO42−) | ISO 22743:2006 |
| Chlorines (Cl−) | NF EN ISO 10 304-1 |
| Heavy metals (Cd, Cr, Cu, Ni, Pb, Zn) | NF EN ISO 11885 |
| PAH | NF EN ISO 17993 |
Standards and parameters of the bioassays performed.
| Organism | Standard/Protocol | Effect criterion (time of exposure) |
|---|---|---|
| NF EN ISO 6341 (T 90-301) | Mobility (24 h and 48 h) | |
| ISO 11348-3 | Luminescence (30 mn) | |
| Microtox® Basic Solid Phase Test | Luminescence (20 mn) | |
| NF T 90-375 | Population growth (72 h) | |
| Protocol RoToxkit℘ F | Reproduction (48 h) | |
| NF T 90-376 | Reproduction (7 j) | |
| ISO/FDIS 10706 | Reproduction (21 j) | |
| Protocol OstracodToxkit™ F | Organism growth (6 j) |
Note: Grey background boxes refer to solid phase tests.
Physicochemical analyses of CSOs.
| Parameters | Units | Concentration * |
|---|---|---|
| pH | - | 8.8 |
| Conductivity | µS/cm | 967 |
| DCO | mg/L | 54 |
| NH4+ | mg/L | |
| PO43− | mg/L | 8.9 |
| SO42− | mg/L | 27 |
| Cl− | mg/L | 95 |
| Cd | mg/L | <0.0001 |
| Cr | mg/L | 0.0018 |
| Cu | mg/L | 0.0037 |
| Ni | mg/L | 0.0011 |
| Pb | mg/L | 0.0004 |
| Zn | mg/L | 0.0100 |
| Total hydrocarbons | mg/l | <0.1 |
| Naphthalene | µg/L | <0.06 |
| Acenaphthylene | µg/L | <0.02 |
| Acenaphthene | µg/L | <0.02 |
| Fluorine | µg/L | <0.02 |
| Phenanthrene | µg/L | |
| Anthracene | µg/L | <0.02 |
| Benzo(a)anthracene | µg/L | <0.02 |
| Dibenzo(ah)anthracene | µg/L | <0.02 |
| Fluoranthene | µg/L | <0.02 |
| Benzo(b)fluoranthene | µg/L | <0.02 |
| Benzo(k)fluoranthene | µg/L | <0.02 |
| Pyrene | µg/L | <0.02 |
| Benzo(a)pyrene | µg/L | <0.02 |
| Indeno(123-cd)pyrene | µg/L | <0.02 |
| Chrysene | µg/L | <0.02 |
| Benzo(ghi)perylene | µg/L | <0.02 |
* Single measurement
Physicochemical analyses CSO particles.
| Parameters | Units | Concentration * |
|---|---|---|
| Cd | mg/kg | 0.7 |
| Cr | mg/kg | 24 |
| Cu | mg/kg | 420 |
| Ni | mg/kg | 34 |
| Pb | mg/kg | 92 |
| Zn | mg/kg | 1,190 |
| g/kg | 321 | |
| mg/kg | 2,600 | |
| Naphthalene | µg/kg | <50 |
| Acenaphthylene | µg/kg | <50 |
| Acenaphthene | µg/kg | <50 |
| Fluorine | µg/kg | 58.8 |
| Phénanthrène | µg/kg | 382.3 |
| Anthracene | µg/kg | 117.6 |
| Benzo(a)anthracene | µg/kg | <50 |
| Dibenzo(ah)anthracene | µg/kg | <50 |
| Fluoranthene | µg/kg | 235.3 |
| Benzo(b)fluoranthene | µg/kg | <50 |
| Benzo(k)fluoranthene | µg/kg | <50 |
| Pyrene | µg/kg | 205.9 |
| Benzo(a)pyrene | µg/kg | <50 |
| Indeno(123-cd)pyrene | µg/kg | <50 |
| Chrysene | µg/kg | 88.2 |
| Benzo(ghi)perylene | µg/kg | <50 |
* Single measurement
Results of bioassays on the organisms of the water column.
| Organisms | Measured parameters | Results (% of CSOs) |
|---|---|---|
|
| EC 20 (Luminescence) | >80 |
|
| EC 20 (Mobility) | >80 |
| EC 20 (Growth) | >80 | |
|
| EC 20 Reproduction | >80 |
|
| EC 20 Reproduction | >80 |
|
| EC 20 Reproduction | 19.6 |
|
| Test not performed due to the lack of fish in the studied little river | |
Results of bioassays on sedimentary organisms.
| Organisms | Measured parameters | Results |
|---|---|---|
| EC 20 (Luminescence) | 0.2% of particles | |
|
| Mortality of organisms with undiluted particles | 100% mortality with undiluted particles |
Comparison of concentrations of pollutants with PNECs.
| Pollutants | Concentration in particles | Sediment PNEC (INERIS, 2012) | Concentration in the filtered CSOs | Aquatic PNEC (INERIS, 2012) | ||
|---|---|---|---|---|---|---|
| Cu | mg/kg | 420 | 0.8 | µg/L | 3.7 | 1.6 |
| Cr | mg/kg | 24 | - | µg/L | 1.8 | 4.1 |
| Pb | mg/kg | 92 | 6.8 | µg/L | 0.4 | 5 |
| Zn | mg/kg | 1,190 | 26 | µg/L | 10 | 8.6 |
| Phenanthrene | µg/kg | 382.3 | 2.3 | µg/L | 0.03 | 1.34 |
| Anthracene | µg/kg | 117.6 | 31.2 | µg/L | <0.02 | 0.063 |
| Fluoranthène | µg/kg | 235.3 | 2.3 | µg/L | <0.02 | 0.1 |
| Pyrene | µg/kg | 205.9 | 23 | µg/L | <0.02 | 0.012 |