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The influence of moisture enhancement on solid waste biodegradation

机译:水分增强对固体废物生物降解的影响

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摘要

The objective of this study was to assess the influence of moisture enhancement strategies on biodegradation of municipal solid waste (MSW) in laboratory-scale reactors. Moisture enhancement strategies were varied with respect to dose volume (40, 80,160, and 320 L/Mg-MSW) and dose frequency (dosing every 1/2, 1,2, and 4 weeks). Biodegradation was evaluated based on methane generation to assess (ⅰ) the lag-time between the start of liquid dosing and onset of methane generation and (ⅱ) the first-order decay rate for methane generation. In general, the decay rate increased with an increase in dose volume for a given dose frequency. In addition, trends of increasing decay rate and decreasing lag-time were observed for an increase in dose frequency for reactors operated with dose volumes of 40,80, and 160 L/Mg-MSW. A key conclusion from this study was that reactors with more aggressive moisture enhancement attained more rapid methane generation that initiated at shorter elapsed times following the onset of dosing. An assessment of liquid dosing per month indicated that there were more pronounced impacts of increasing decay rate and decreasing lag-time as moisture enhancement increased from 40 L/Mg-MSW/month to 320 L/Mg-MSW/month as compared to the impact on both variables for an increase in liquid dosing above 320 L/Mg-MSW/month.
机译:本研究的目的是评估水分增强策略对实验室级反应器中城市固体废物(MSW)生物降解的影响。湿度增强策略相对于剂量体积(40,80,160和320L / mg-MSW)和剂量频率(每1/2,1,2和4周给药时变化。基于甲烷生成评估生物降解,以评估(Ⅰ)液体计量开始和甲烷生成发作之间的滞后时间和(Ⅱ)甲烷生成的一阶衰减速率。通常,衰减率随着给定剂量频率的增加而增加。此外,观察到增加衰减率和降低滞后时间的趋势,用于剂量频率为40,80,160L / mg-MSW操作的反应器的剂量频率增加。本研究的一个关键结论是具有更具侵蚀性湿度增强的反应器达到了更快速的甲烷生成,其在给药后缩短的时间较短。每月液体给药评估表明,随着水分增强从40 L / MG-MSW /月增加到320 L / MG-MSW /月份,增加衰减率和滞后时间的增加的影响更加明显和滞后时间更加明显。在两种变量上,液体给药以上320 L / mg-MSW /月的增加。

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