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Influence of oxygen flow rate and compost addition on reduction of organic matter in aerated waste layer containing mainly incineration residue

机译:氧气流量和堆肥添加量对含焚烧残渣的曝气废弃层有机质还原的影响

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摘要

Landfilling municipal solid waste incineration (MSWI) residue alkalizes the waste layer, causing a subsequent decrease in microbial activity and a delay in the decomposition of organic matter. In this study, efficiencies of neutralization of the leachate and organic matter decomposition in the waste layer in a column filled with MSWI residue using aeration and compost addition were evaluated. Total organic carbon (TOC) reduction in the waste layer is large at high oxygen flow rate (OFR). To effectively accelerate TOC reduction in the waste layer to which compost was added, a high OFR exceeding that by natural ventilation was required. At day 65, the pH of the leachate when OFR was above 102 mol-O2/(day·m3) was lower than that when OFR was below 101 mol-O2/(day·m3). At the same OFR, the pH of waste sample was lower than that of waste sample with compost. Although leachate neutralization could be affected by compost addition, TOC reduction in the waste layer became rather small. It is possible that humic substances in compost prevent the decomposition of TOC in MSWI residue.
机译:填埋市政固体废物焚化(MSWI)残留物会使废物层碱化,从而导致微生物活性随后下降以及有机物分解延迟。在这项研究中,使用充气和堆肥的方法,评估了填充有MSWI残留物的塔中废物层中渗滤液的中和效率和有机物分解的效率。在高氧气流量(OFR)下,废物层中的总有机碳(TOC)减少量很大。为了有效地加速添加了堆肥的废物层中的TOC降低,需要高于自然通风的高OFR。在第65天,OFR高于102 mol-O2 /(day·m3)时渗滤液的pH值低于OFR低于101 mol-O2 /(day·m3)时的渗滤液的pH。在相同的OFR下,废物样品的pH值低于带有堆肥的废物样品的pH。尽管渗滤液的中和可能会受到堆肥添加的影响,但废物层中TOC的减少量却很小。堆肥中的腐殖质有可能阻止MSWI残留物中TOC的分解。

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