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IMPACT OF AEROBIC BIOSTABILISATION AND BIODRYING PROCESS OF MUNICIPAL SOLID WASTE ON MINIMISATION OF WASTE DEPOSITED IN LANDFILLS

机译:有氧生物稳定化和城市固体废物的生物干燥过程对垃圾填埋场中废物减少的影响

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摘要

The article discusses an innovative system used for aerobic biostabilisation and biological drying of solid municipal waste. A mechanical-biological process (MBT) of municipal solid waste (MSW) treatment were carried out and monitored in 5 bioreactors. A two-stage biological treatment process has been used in the investigation. In the first step an undersize fraction was subjected to the biological stabilisation for a period of 14 days as a result of which there was a decrease of loss on ignition, but not sufficient to fulfill the requirements of MBT technology. In the second stage of a biological treatment has been applied 7-days intensive bio-drying of MSW using sustained high temperatures in bioreactor. The article presents the results of the chemical composition analysis of the undersize fraction and waste after biological drying, and also the results of temperature changes, pH ratio, loss on ignition, moisture content, combustible and volatile matter content, heat of combustion and calorific value of wastes. The mass balance of the MBT of MSW with using the innovative aeration system showed that only 14.5% of waste need to be landfilled, 61.5% could be used for thermal treatment, and nearly 19% being lost in the process as CO2 and H2O.
机译:本文讨论了用于固体城市垃圾的有氧生物稳定和生物干燥的创新系统。进行了城市固体废物(MSW)处理的机械生物过程(MBT),并在5个生物反应器中进行了监测。在研究中使用了两阶段的生物处理过程。在第一步中,将尺寸过小的部分进行了14天的生物稳定化处理,结果减少了灼烧损失,但不足以满足MBT技术的要求。在生物处理的第二阶段,已经在生物反应器中使用持续高温对MSW进行了7天的强化生物干燥。本文介绍了生物干燥后筛分不足的部分和废物的化学成分分析结果,以及温度变化,pH值比,着火损失,水分,可燃和挥发性物质含量,燃烧热和热值的结果。废物。使用创新的曝气系统的城市固体垃圾MBT的质量平衡表明,仅需要填埋14.5%的废物,可以将61.5%的废物用于热处理,在此过程中将近19%的二氧化碳和H2O损失掉了。

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