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The effects of sludge particle size on oxygen transfer and dynamics in the composting of digested sludge

机译:污泥粒径对消化污泥堆肥过程中氧传递和动力学的影响

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Oxygen transfer limitation inside the sludge particles presents a significant technical challenge in the aerobic composting process. The objective of this study is to evaluate the effect of sludge particle size (SPS) on oxygen transfer, microbial activity and biological stabilization of organic matters in the composting of anaerobic digested sludge. Oxygen uptake rate (OUR), CO2 production rate and respiratory quotient (RQ) were measured and evaluated in the tests carried out with 0.25 g, 1 g and 4 g particles of dewatered sludge. The effect of SPS on the moisture, volatile solid (VS) and water extract organic carbon (WEOC) was investigated in a lab-scale composting system. The results showed that OUR, CO2 production rate, the biodegradation rate of WEOC and VS increased significantly with the decline of SPS within the early phase of composting. The moisture of smaller particles was considerably lower in the latter stage. There were also spatial and temporal differences in aerobic conditions inside of different size particles. Oxygen transfer inside solid particles was demonstrated to be the rate-limiting step in the early stage of composting.
机译:在好氧堆肥过程中,污泥颗粒内部的氧转移限制提出了重大的技术挑战。这项研究的目的是评估污泥颗粒大小(SPS)对厌氧消化污泥堆肥过程中的氧传递,微生物活性和有机物的生物稳定性的影响。在用0.25 g,1 g和4 g脱水污泥颗粒进行的测试中,测量并评估了摄氧率(OUR),CO 2 产生率和呼吸商(RQ)。在实验室规模的堆肥系统中研究了SPS对水分,挥发性固体(VS)和水提取有机碳(WEOC)的影响。结果表明,在堆肥初期,随着SPS的降低,OUR,CO 2 的产生率,WEOC和VS的生物降解率显着增加。在后期,较小颗粒的水分要低得多。不同大小颗粒内部的有氧条件也存在时空差异。固体颗粒内部的氧气转移被证明是堆肥早期的限速步骤。

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