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Integrated treatment of municipal sewage sludge by deep dewatering and anaerobic fermentation for biohydrogen production

机译:深层脱水和厌氧发酵综合处理城市污水污泥生产生物氢

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摘要

The increasing sludge generated in wastewater treatment plants poses a threat to the environment. Based on the traditional processes, sludge dewatered by usual methods was further dewatered by hydraulic compression and the filtrate released was treated by anaerobic fermentation. The difficulties in sludge dewatering were associated with the existence of sludge flocs or colloidal materials. A suitable CaO dosage of 125 mg/g dry sludge (DS) could further decrease the moisture content of sludge from 82.4 to 50.9 %. The filtrate from the dewatering procedure was a potential substrate for biohydrogen production. Adding zero-valent iron (ZVI) into the anaerobic system improved the biohydrogen yield by 20 %, and the COD removal rate was lifted by 10 % as well. Meanwhile, the sludge morphology and microbial community were altered. The novel method could greatly reduce the sludge volume and successfully treated filtrate along with the conversion of organics into biohydrogen.
机译:废水处理厂中产生的污泥增加,对环境构成威胁。在传统工艺的基础上,将常规方法脱水的污泥通过水力压缩进一步脱水,并通过厌氧发酵处理释放的滤液。污泥脱水的困难与污泥絮凝物或胶体物质的存在有关。合适的CaO用量为125 mg / g干污泥(DS)可使污泥的水分含量从82.4%进一步降低至50.9%。脱水过程中产生的滤液是生产生物氢的潜在底物。在厌氧系统中添加零价铁(ZVI)可将生物氢产率提高20%,同时将COD去除率提高10%。同时,污泥形态和微生物群落发生了变化。该新方法可大大减少污泥体积,并成功处理滤液,同时将有机物转化为生物氢。

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