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Toward bioenergy recovery from waste activated sludge: improving bio-hydrogen production and sludge reduction by pretreatment coupled with anaerobic digestion-microbial electrolysis cells

机译:致力于从废活性污泥中回收生物能:通过预处理与厌氧消化-微生物电解池相结合,提高生物氢的产生和污泥的减少

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In this study, a novel technology named pretreatment coupled with anaerobic digestion-microbial electrolysis cells (AD-MECs) for waste activated sludge (WAS) reduction and renewable bioenergy recovery has been investigated. The results showed that, compared with the control pretreatment, the three pretreatment methods used greatly enhanced the performance of the AD-MECs process, and efficient sludge reduction was achieved, especially in heat-alkaline pretreatment, 36.9% and 46.7% for total suspended solid (TSS) and volatile suspended solid (VSS) removal in 6 days. MECs fed with fermented WAS, displayed positive potential for bioenergy recovery, and the highest bio-hydrogen yield was 20.30 mg H-2/g VSS. Kinetic models indicated that with initial concentrations of soluble organic matter increasing, the bio-hydrogen yields of MECs increased linearly (R-2 = 0.8903-0.9742). The results above suggested that the novel technology proposed in this work showed attractive potential for renewable bioenergy recovery and sludge reduction.
机译:在这项研究中,已经研究了一种称为预处理与厌氧消化-微生物电解池(AD-MEC)结合的新技术,用于减少废物活性污泥(WAS)和可再生生物能的回收。结果表明,与对照预处理相比,所使用的三种预处理方法大大提高了AD-MECs工艺的性能,并实现了有效的污泥减少,尤其是在热碱预处理中,总悬浮固体的含量分别为36.9%和46.7%。 (TSS)和挥发性悬浮固体(VSS)在6天之内去除。用发酵的WAS饲喂的MEC具有潜在的生物能回收潜力,最高的生物氢产量为20.30 mg H-2 / g VSS。动力学模型表明,随着可溶性有机物初始浓度的增加,MEC的生物氢产率线性增加(R-2 = 0.8903-0.9742)。以上结果表明,这项工作中提出的新技术在可再生生物能源回收和污泥减少方面显示出诱人的潜力。

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