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Implications of municipal solid waste co-disposal experiments on biodegradation and biochemical compatibility

机译:市政固体废物共同处理实验对生物降解和生化相容性的影响

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The objective of this study was to evaluate waste biodegradation and biochemical compatibility for different waste co-disposed with municipal solid waste (MSW). Laboratory-scale reactors were operated with MSW co-disposed with special solid waste, liquid waste, or sludge waste. Early and aggressive addition of liquid wastes during reactor startup did not stimulate anaerobic decomposition of fresh MSW. The majority of the liquid waste reactors were acid stuck and had leachate pH < 6 and chemical oxygen demand in the range of 50,000 mg-O_2/L The majority of liquid wastes in this study were not observed to be effective anaerobic inoculums and would not be recommended as the sole moisture source for bioreactor landfills. Enhanced early methane production was observed in the MSW reactors co-disposed with sludge (anaerobic and industrial) relative to the landfill leachate control reactors and all other waste combinations evaluated. Methane generation was observed in reactors operated with foundry waste or gypsum board co-disposed with MSW. Despite biochemical methane potential (BMP) results that indicated methane generation would be inhibited with these two waste streams, co-disposing with MSW did not completely inhibit anaerobic degradation. The BMP assays provided methane yield under ideal conditions, but did not capture other benefits of co-disposal (e.g., impacts of moisture addition). A potential co-disposal waste source should not be ruled out by BMP results alone.
机译:本研究的目的是评估不同废物的废物生物降解和生物化学相容性,与城市固体废物(MSW)共同处理。使用特殊固体废物,液体废物或污泥浪费,用MSW运行实验室尺度反应器。在反应堆启动期间早期和侵略性加入液体废物并未刺激新鲜MSW的厌氧分解。大多数液体废物反应器被酸被卡住,并且渗滤液pH <6,化学需氧量在50,000mg-O_2 / L的范围内,本研究的大多数液体废物未观察到是有效的厌氧造影,并且不会是有效的推荐作为生物反应器垃圾填埋场的唯一水分源。在与垃圾填埋场渗滤液对照反应器的污泥(厌氧和工业)共同设置的MSW反应器中观察到增强的早期甲烷产量,并评估所有其他废物组合。在用铸造废物或石膏板配合使用MSW的反应器中观察到甲烷生成。尽管有生化的甲烷电位(BMP)结果,所示的甲烷生成将抑制这两个废物流,但用MSW共同处理并未完全抑制厌氧降解。 BMP测定在理想条件下提供甲烷产量,但没有捕获共同处理的其他益处(例如,添加水分的影响)。单独的BMP结果不应排除潜在的共同处理废物来源。

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