| Literature DB >> 30050921 |
Meng Liu1,2, Yufeng Duan1, Kagiso Bikane2, Liang Zhao3.
Abstract
The migration and transformation behaviors of heavy metals (HMs), including Cr, Mn, Ni, Cu, Zn, As, Cd, and Pb, during the hydrothermal carbonization (HTC) of sewage sludge (SS) were investigated. The immobilization of HMs during the combustion of solid residual (SR) produced from HTC of SS was also analyzed. With increasing HTC temperature and residence time, the majority of HMs (except As) accumulated in the SR. The residual rate of As in the SR decreased from 73.95% to 56.74% when the residence time was increased from 1h to 3h and reduced significantly from 73.95% to 37.48% when the temperature increased from 220°C to 280°C, implying that numerous arsenic compounds dissolved into liquid phase products. Although the HTC process has a positive influence on the transformation of HMs from weakly bound fractions to the more stable fractions, the exchangeable and reducible fractions of Mn, Zn, As, and Cd in the SR were still high. In addition, the leached amounts of Zn and As were high (14.61 and 6.16 mg/kg, respectively) and showed a high leaching risk to the environment. An increase in HTC temperature and residence time led to an increase of the residual rate of HMs in the combustion residual of SR, implying that the HTC process promotes the stabilization of HMs in the combustion process.Entities:
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Year: 2018 PMID: 30050921 PMCID: PMC6040255 DOI: 10.1155/2018/1913848
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
Physicochemical characteristic of SS before and after HTC.
| Samples | Ultimate analysis/wt.% | Proximate analysis/wt.% | HHV2) | Moisture content of SR3) (wt.%) | pH (WL) | NH4+-N | |||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Cad | Had | Nad | Sad | Oad1) | Mad | Vad | FCad | Aad | (kJ/kg) | ||||
| SS | 20.13 | 4.61 | 4.68 | 1.73 | 12.41 | 9.54 | 39.66 | 3.90 | 46.90 | 10.11 | - | ND | ND |
| SS-220-1h | 23.87 | 3.45 | 3.49 | 1.12 | 7.71 | 1.95 | 32.74 | 6.90 | 58.41 | 10.31 | 64.90 | 8.70 | 1734 |
| SS-220-2h | 23.21 | 3.06 | 2.95 | 1.44 | 5.57 | 1.86 | 28.86 | 7.37 | 61.91 | 9.78 | 62.50 | 8.90 | 1773 |
| SS-220-3h | 23.65 | 3.14 | 2.82 | 1.82 | 5.28 | 1.59 | 29.37 | 7.34 | 61.70 | 10.06 | 59.35 | 9.00 | 1825 |
| SS-250-1h | 25.26 | 2.93 | 2.32 | 1.36 | 1.85 | 1.54 | 26.61 | 7.11 | 64.74 | 10.67 | 52.30 | 9.20 | 2005 |
| SS-280-1h | 26.69 | 2.64 | 2.16 | 0.87 | 0.28 | 1.34 | 25.07 | 7.47 | 66.02 | 11.28 | 48.50 | 9.50 | 2245 |
1)O(%)=100%-(C%+N%+H%+S+%M%+A%); ad-air dry basis.
2)HHV, higher heating value. Calculated was according to Channiwala and Parikh [25].
3)Moisture content of SR after filtration and before drying.
Figure 1Schematic figure of hydrothermal batch-type reactor.
Figure 2Concentrations of HMs in SS and SR.
Residual rates of HMs in the SR and WL after HTC process.
| Samples | Percentage (%) | |||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Cr | Mn | Ni | Cu | Zn | As | Cd | Pb | |||||||||
| SR | WL | SR | WL | SR | WL | SR | WL | SR | WL | SR | WL | SR | WL | SR | WL | |
| SR-220-1h | 87.12 | 12.88 | 86.10 | 13.90 | 99.70 | 0.30 | 90.10 | 9.90 | 95.53 | 4.47 | 73.95 | 26.05 | 80.88 | 19.12 | 97.46 | 2.54 |
| SR-220-2h | 81.71 | 18.29 | 80.08 | 19.92 | 91.48 | 8.52 | 94.16 | 5.84 | 90.27 | 9.73 | 63.78 | 36.22 | 86.68 | 13.32 | 97.62 | 2.38 |
| SR-220-3h | 83.42 | 16.58 | 81.83 | 18.17 | 93.79 | 6.21 | 94.89 | 5.11 | 90.30 | 9.70 | 56.74 | 43.26 | 84.51 | 15.49 | 97.94 | 2.06 |
| SR-250-1h | 91.29 | 8.71 | 79.26 | 20.74 | 95.19 | 4.81 | 92.00 | 8.00 | 80.17 | 19.83 | 46.83 | 53.17 | 77.79 | 22.21 | 99.06 | 0.94 |
| SR-280-1h | 94.51 | 5.49 | 71.93 | 28.07 | 93.44 | 6.56 | 99.62 | 0.38 | 85.29 | 14.71 | 37.48 | 62.52 | 66.40 | 33.60 | 99.19 | 0.81 |
Figure 3Minerals compositions of SS and SR. 1: K2Cu3+2O(SO4)3; 2: SiO2; 3: KAl2Si3AlO10(OH)2; 4: AlSO4(OH)·5H2O.
Figure 4Speciation transformation behaviors of HMs in the SS before and after HTC.
Concentrations of leachable HMs in the TCLP tests (mg/kg).
| HMs | Raw SS | SS-220-1h | SS-220-2h | SS-220-3h | SS-250-1h | SS-280-1h | Permissible limitsa |
|---|---|---|---|---|---|---|---|
| Cr | 0.11±0.00 | 0.61±0.01 | 0.44±0.01 | 0.39±0.01 | 0.09±0.00 | 0.09±0.00 | 5.0 |
| Mn | 231.06±10.67 | 289.22±10.56 | 293.71±12.45 | 446.73±16.56 | 536.53±16.78 | 449.39±14.34 | ---b |
| Ni | 5.41±0.23 | 6.73±0.25 | 1.53±0.07 | 1.10±0.05 | 0.68±0.01 | 0.72±0.01 | 5.0 |
| Cu | 1.42±0.06 | 0.41±0.01 | 0.18±0.01 | 0.09±0.00 | 0.12±0.01 | 0.04±0.00 | ---b |
| Zn | 30.32±1.67 | 38.62±2.12 | 32.18±1.68 | 30.97±1.56 | 13.77±0.53 | 14.62±0.68 | 5.0 |
| As | 25.57±0.48 | 20.42±0.59 | 12.01±0.43 | 7.97±0.25 | 10.34±0.38 | 6.16±0.21 | 5.0 |
| Cd | 0.05±0.00 | 0.03±0.00 | 0.04±0.00 | 0.03±0.00 | 0.03±0.00 | 0.01±0.00 | 1.0 |
| Pb | 0.03±0.00 | 0.02±0.00 | 0.03±0.00 | 0.02±0.00 | 0.08±0.00 | 0.01±0.00 | 5.0 |
(1) a: USEPA, test methods for evaluating solid waste: physical/chemical methods (SW-846).
(2) b: Not titled.
Figure 5Leaching rates of HMs in the TCLP tests.
Concentrations of HMs in the combustion residual (mg/kg).
| Samples | Cr | Mn | Ni | Cu | Zn | As | Cd | Pb |
|---|---|---|---|---|---|---|---|---|
| SS | 156.50±5.56 | 1160.75±65.87 | 88.61±4.89 | 382.20±15.67 | 1448.33±70.45 | 62.36±2.56 | 3.35±0.08 | 111.87±3.32 |
| SS-220-1h | 200.90±6.78 | 1338.55±77.34 | 126.63±7.45 | 580.82±18.56 | 2026.21±68.62 | 62.58±2.03 | 4.62±0.10 | 168.50±5.25 |
| SS-220-2h | 182.66±6.68 | 1345.87±72.56 | 118.05±6.45 | 505.83±12.05 | 1950.73±55.24 | 44.65±1.89 | 4.66±0.11 | 147.99±3.98 |
| SS-220-3h | 187.80±8.56 | 1425.18±65.45 | 125.41±5.23 | 531.88±10.78 | 2010.28±69.46 | 41.61±1.01 | 4.63±0.09 | 152.88±4.23 |
| SS-250-1h | 184.07±10.56 | 1350.55±75.78 | 118.88±6.54 | 531.64±11.34 | 1964.51±51.67 | 41.36±1.56 | 4.55±0.13 | 152.55±4.01 |
| SS-280-1h | 219.89±11.45 | 1356.32±68.67 | 124.50±5.45 | 580.29±15.67 | 1972.96±75.34 | 38.39±1.12 | 4.69±0.08 | 153.34±4.23 |
Residual rates of HMs in the combustion residual (%).
| Samples | Cr | Mn | Ni | Cu | Zn | As | Cd | Pb |
|---|---|---|---|---|---|---|---|---|
| Raw SS | 87.36 | 74.97 | 90.69 | 72.16 | 88.47 | 85.09 | 91.72 | 75.31 |
| SS-220-1h | 90.15 | 84.84 | 91.70 | 79.13 | 86.65 | 87.57 | 91.87 | 79.59 |
| SS-220-2h | 91.12 | 92.29 | 92.39 | 80.07 | 88.60 | 85.02 | 92.23 | 80.96 |
| SS-220-3h | 90.09 | 92.78 | 92.95 | 79.26 | 90.12 | 88.22 | 91.13 | 81.13 |
| SS-250-1h | 92.53 | 84.80 | 95.95 | 75.14 | 90.31 | 91.50 | 92.08 | 76.81 |
| SS-280-1h | 93.88 | 88.46 | 93.28 | 78.51 | 92.03 | 92.86 | 92.61 | 72.23 |