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The performance evaluation and kinetics response of advanced anaerobic digestion for sewage sludge under different SRT during semi-continuous operation

机译:半连续运行过程中不同SRT下污水污泥的绩效评价和动力学响应

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摘要

Sludge retention time (SRT) is vital for advanced anaerobic digestion (AD) to realize energy self-sufficient. However, the criteria on reasonable SRT has not been fully understood. This study investigated the performance and kinetics response of AD under different SRT in semi-continuous AD with microwave (MW) pretreatment, according to the long-term operation and methane production during one feeding interval. Results showed that modified Gompertz model better described the kinetics than first-order model. At short SRT (15 d), pretreatment coupled with two-stage AD preserved methane production with the high attainable methane potential (B-0) of 257.98 mL/g VS and hydrolysis rate constant (k(hyd)) of 0.075 h(-1). But the acceptable decrease of methane production rate seems to be unavoidable, which was possibly derived from the evolution of methanogenesis pathway. This study emphasized the importance of improved methane production rate in semi-continuous AD under short SRT rather than methane production potential obtained from batch experiment.
机译:污泥保留时间(SRT)对于先进的Anaerobic消化(AD)来实现能量自给自足至关重要。但是,合理SRT的标准尚未完全理解。本研究调查了在半连续AD中不同SRT下的AD的性能和动力学响应,其具有微波(MW)预处理,根据在一次喂养间隔期间的长期操作和甲烷产生。结果表明,改进的Gompertz模型更好地描述了动力学而不是一阶模型。在短的SRT(15d)中,用高可达到的甲烷电位(B-0)为257.98ml / g和水解速率常数(k(水))0.075h( - 1)。但甲烷产量的可接受降低似乎是不可避免的,这可能来自甲烷化途径的演变。本研究强调了在短的SRT短SRT中的半连续AD中提高甲烷生产率的重要性,而不是从批量实验获得的甲烷生产潜力。

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