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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Vermiremediation of Water Treatment Plant Sludge employing Metaphire posthuma: A soil quality and metal solubility prediction approach
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Vermiremediation of Water Treatment Plant Sludge employing Metaphire posthuma: A soil quality and metal solubility prediction approach

机译:采用梅索桩泥土污泥的苦难化修复:土壤质量和金属溶解度预测方法

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Water Treatment Plant Sludge (WTPS) is formed during sewage treatment and is extremely rich in nutrients (N, P and K) and toxic heavy metals. In this work, efficiency of vermicomposting technology was evaluated using an endogeic earthworm Metaphire posthuma, against aerobic composting in regard to stabilization of WTPS. Different combinations of WTPS and cow dung were utilized as feed stock. Low pH of WTPS changed towards neutrality under both the biocomposting systems. The contents of N (45-61%), P (50-80%) and K (83-88%) increased significantly under Metaphire vermicomposting system accompanied by substantial reduction in total organic C. Interestingly, improvement in soil quality and low accumulation of heavy metal (Cr and Cu) in soil under vermistabilized WTPS treatments was noteworthy. Moreover, the solubility pattern of non metal and metal ions in vermistabilized and crude WTPS was studied to understand their impacts on moist soil environment with the help of MINTEQ geochemical model. The model predicted decrement of metal solubility (Cr, Zn, Cu, and Mn) in WTPS+CD (1:1) and WTPS+CD (2:1) vermicompost as compared to untreated WTPS. The overall results suggest that Metaphire posthuma could be utilized as a successful candidate for bioprocessing toxic WTPS materials. (C) 2015 Elsevier B.V. All rights reserved.
机译:水处理植物污泥(WTPS)在污水处理期间形成,营养成分(N,P和K)非常丰富,毒性重金属。在这项工作中,使用内根蚯蚓偏见性Posthuma评估蠕动分化技术的效率,反对WTP的稳定化的有氧堆肥。 WTP和牛粪的不同组合用作饲料库存。在生物组分系统下,WTP的低pH改变为中立性。在纤维蠕动系统下,N(45-61%),P(50-80%)和K(83-88%)的含量显着增加,伴随着总有机C.有趣的,改善土壤质量和低积累在伪造的WTP治疗下的土壤中重金属(Cr和Cu)是值得注意的。此外,研究了伪造的非金属和金属离子的溶解度模式,并研究了在Minteq地球化学模型的帮助下了解它们对湿土环境对湿土环境的影响。与未处理的WTP相比,WTPS + Cd(1:1)和WTPS + CD(2:1)蛭体的金属溶解度(Cr,Zn,Cu和Mn)的模型预测。总体结果表明,奇异性Posthuma可以用作生物处理有毒WTP材料的成功候选者。 (c)2015 Elsevier B.v.保留所有权利。

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