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首页> 外文期刊>Environmental Science and Pollution Research >Dewaterability enhancement and heavy metals immobilization by pig manure biochar addition during hydrothermal treatment of sewage sludge
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Dewaterability enhancement and heavy metals immobilization by pig manure biochar addition during hydrothermal treatment of sewage sludge

机译:猪粪生物炭加入污水处理过程中的脱水增强和重金属固定

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摘要

Hydrothermal treatment (HTT) of sewage sludge (SS) with pig manure biochar (PMB) addition at 160-200 degrees C was conducted in this study. The effects of PMB addition on the dewaterability of SS and the speciation evolution, leaching toxicity, and potential ecological risk of heavy metals were investigated. The results showed that the solid contents of the filter cakes after adding PMB increased from 20.24%, 24.03%, and 28.69% to 21.57%, 27.69%, and 32.91% at 160, 180, and 200 degrees C, respectively, compared with traditional HTT of SS. Furthermore, PMB could reduce the bioavailable fractions of Cr, Ni, As, and Cd in the filter cakes obtained at 160 and 180 degrees C compared with the theoretical value. The leaching toxicity of heavy metals in the filter cakes after adding PMB decreased significantly at 160 and 180 degrees C and the potential ecological risk index (RI) declined from 62.13 and 44.83 to 55.93 and 42.11, respectively. The obtained filter cake had low potential ecological risk when used in the environment. The mechanisms on the improvement of the dewaterability and heavy metals immobilization were related that PMB acted as the skeleton builder providing the outflow path for free water and implanting heavy metals into SS structure. And the optimal results were obtained at 180 degrees C during HTT of SS with PMB addition. This work provides a novel and effective method for the treatment of SS.
机译:在本研究中,在160-200摄氏度下,用猪粪生物炭(PMB)加入水热处理(HTT)加入。研究了PMB对SS和物质演化的脱水性,浸出毒性和重金属的潜在生态风险的影响。结果表明,与传统相比,加入PMB加入PMB后的固体含量从20.24%,24.03%,21.57%,21.57%,21.57%,27.69%和32.91%增加到160,180%,21.57%。 ss的htt。此外,与理论值相比,PMB可以在160和180摄氏度的滤饼中降低Cr,Ni,和Cd的生物可利用部分。在加入PMB后,在滤饼中浸出毒性在160和180摄氏度下显着降低,潜在的生态风险指数(RI)分别从62.13和44.83升至55.93和42.11。当在环境中使用时,所获得的滤饼具有较低的潜在生态风险。改善脱水性和重金属固定的机制有相关的是PMB作为提供游离水的流出路径并将重金属植入SS结构中的骨架助洗剂。并且在具有PMB的SS的HTT期间在180℃下获得最佳结果。这项工作为治疗SS提供了一种新颖有效的方法。

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