首页> 外文期刊>Journal of Environmental Management >Performances and mechanisms of sludge dewatering by a biopolymer from piggery wastewater and application of the dewatered sludge in remediation of Cr(VI)-contaminated soil
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Performances and mechanisms of sludge dewatering by a biopolymer from piggery wastewater and application of the dewatered sludge in remediation of Cr(VI)-contaminated soil

机译:猪粪废水中生物聚合物脱水污泥的性能,机理及脱水污泥在Cr(VI)污染土壤修复中的应用

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In this study, a biopolymer was harvested from piggery wastewater to treat biological sludge. Effectiveness of the combination of polyaluminum chloride (PAC) and this biopolymer in sludge dewatering was investigated and the dewatering mechanism was discussed. Results showed that as high as 3.11 g of biopolymer can be harvested from 1 L of piggery wastewater by cultivating Bacillus megaterium. After treated by PAC with a dosage of 1.5 g/L at pH point of 7.5, specific resistance to filtration (SRF), moisture content (MC), settled volume after 30 min (SV_(30)) and capillary suction time (CST) of the sludge were decreased to 3.4 × 10~(12)m/kg, 84.5%, 79.8% and 65 s, respectively, and dry solid (DS) was increased to 21.4%, indicated that sludge dewatering was obviously enhanced by PAC. After further treated by 2 g/L of the biopolymer, SRF, MC, SV_(30) and CST were further decreased to 2.1 × 10~(12) m/kg, 59.8%, 55.6% and 39 s, respectively, and DS was increased to 28.6%, indicated that sludge dewatering was further enhanced by the biopolymer. For the enhancing mechanism, on the one hand, the extracellular polymeric substances (EPS) was significantly disintegrated to release binding bound water, which was facilitating sludge dewatering; on the other hand, the synergistic effect of PAC coagulation and biopolymer flocculation, including charge neutralization and bridge-aggregation, were favorable to sludge dewatering. Additionally, we found that the dewatered sludge was helpful for remediation of chromium (Cr)(VI)-contami-nated soil by raising soil pH and decreasing bioavailability of Cr(VI) in the soil, after remediated by 75 gAg of the dewatered sludge for 60 days, the soil pH was increased from its initial value of 4.32-8.52, and the residue Cr (VI) in the soil extract was appeared as 2.2mg/L.
机译:在这项研究中,从猪场废水中收集了一种生物聚合物来处理生物污泥。研究了聚氯化铝(PAC)和这种生物聚合物的组合在污泥脱水中的有效性,并探讨了脱水机理。结果表明,通过培养巨大芽孢杆菌,可从1 L的养猪废水中收获高达3.11 g的生物聚合物。在PAC上以1.5 g / L的剂量在7.5的pH点处理后,具有比过滤抗性(SRF),水分含量(MC),30分钟后的沉降体积(SV_(30))和毛细管抽吸时间(CST)污泥中的污泥分别降至3.4×10〜(12)m / kg,84.5%,79.8%和65 s,干固体(DS)增加至21.4%,表明PAC明显提高了污泥的脱水率。经过2 g / L的生物聚合物进一步处理后,SRF,MC,SV_(30)和CST分别降至2.1×10〜(12)m / kg,59.8%,55.6%和39 s和DS污泥脱水率增加到28.6%,表明生物聚合物进一步提高了污泥脱水能力。对于增强机理,一方面,细胞外聚合物(EPS)显着分解以释放结合的结合水,这有助于污泥脱水。另一方面,PAC凝结和生物聚合物絮凝的协同作用,包括电荷中和和桥式聚集,有利于污泥脱水。此外,我们发现,经75 gAg脱水污泥修复后,脱水污泥通过提高土壤pH值和降低土壤中Cr(VI)的生物利用度,有助于修复含铬(Cr)(VI)的土壤。在60天的时间里,土壤的pH值从其初始值4.32-8.52升高,土壤提取物中的Cr(VI)残留为2.2mg / L。

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