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Effects of residence time on characteristics of biochars prepared via co-pyrolysis of sewage sludge and cotton stalks

机译:停留时间对污水污泥与棉秆共热解制备生物炭特性的影响

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摘要

Conversion of sewage sludge and agriculture straws into biochars via co-pyrolysis is a promising strategy for the safe disposal and reuse of sewage sludge. In this study, biochars were prepared via the co-pyrolysis of sewage sludge and cotton stalks (1:1, w/w) with different residence times (30-150 min). The influence of residence time on the physicochemical properties and surface characteristics of the biochars were studied. Meanwhile, the chemical forms of six heavy metals (Pb, Cu, Zn, Cr, Ni, and Cd) in the biochars were investigated with BCR (Community Bureau of Reference)-recommended extraction procedures and the potential environmental risks of heavy metals were assessed. It was found that prolonged residence times increased the pH and ash contents of the biochars, but these conditions decreased the C, N, and H contents. The surface areas of the biochars increased in the range of 30 min to 90 min, while values decreased in the range of 90 min to 150 min. Although more heavy metals were volatilized or transferred into biogas with the increasing residence time, a considerable amount was retained in the biochars, and this resulted in an increase in the total concentrations of heavy metals. The BCR extraction experiments confirmed that the heavy metals became immobilized in the biochars following the transformation of heavy metals from active chemical forms to stable ones. The results of risk evaluation indicated that prolonged residence times decreased the potential environmental risks of heavy metals in the biochars.
机译:通过共热解将污泥和农作物秸秆转化为生物炭是一种安全处置和再利用污泥的有前途的策略。在这项研究中,生物炭是通过将污水污泥和棉秆(1:1,w / w)以不同的停留时间(30-150分钟)共热解制备的。研究了停留时间对生物炭理化性质和表面特性的影响。同时,通过BCR(社区参考局)建议的提取程序研究了生物炭中六种重金属(Pb,Cu,Zn,Cr,Ni和Cd)的化学形式,并评估了重金属的潜在环境风险。 。发现延长的停留时间增加了生物炭的pH和灰分含量,但是这些条件降低了C,N和H含量。生物炭的表面积在30分钟至90分钟的范围内增加,而值在90分钟至150分钟的范围内降低。尽管随着停留时间的增加,更多的重金属会挥发或转移到沼气中,但相当数量的残留物仍保留在生物炭中,这导致重金属总浓度的增加。 BCR提取实验证实,在重金属从活性化学形式转变为稳定形式后,重金属已固定在生物炭中。风险评估结果表明,延长停留时间降低了生物炭中重金属的潜在环境风险。

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