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Comparison of aerobic and anaerobic stability indices through a MSW biological treatment process

机译:通过MSW生物处理工艺比较有氧和厌氧稳定性指数

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摘要

A complex mechanical–biological waste treatment plant designed for the processing of mixed municipal solid wastes (MSW) and source-selected organic fraction of municipal solid wastes (OFMSW) has been studied by using stability indices related to aerobic (respiration index, RI) and anaerobic conditions (biochemical methane potential, BMP). Several selected stages of the plant have been characterized: waste inputs, mechanically treated wastes, anaerobically digested materials and composted wastes, according to the treatment sequence used in the plant. Results obtained showed that the main stages responsible for waste stabilization were the two first stages: mechanical separation and anaerobic digestion with a diminution of both RI and BMP around 40% and 60%, respectively, whereas the third stage, composting of digested materials, produced lesser biological degradation (20–30%). The results related to waste stabilization were similar in both lines (MSW and OFMSW), although the indices obtained for MSW were significantly lower than those obtained for OFMSW, which demonstrated a high biodegradability of OFMSW. The methodology proposed can be used for the characterization of organic wastes and the determination of the efficiency of operation units used in mechanical–biological waste treatment plants.
机译:通过使用与好氧有关的稳定性指标(呼吸指数,RI)和有机物(呼吸指数,RI),研究了一个复杂的机械-生物废物处理厂,该厂设计用于处理混合的城市固体废物(MSW)和源选择的城市固体废物有机物(OFMSW)。厌氧条件(生化甲烷势,BMP)。根据工厂中使用的处理顺序,对工厂的几个选定阶段进行了表征:废物输入,机械处理的废物,厌氧消化的物料和堆肥废物。获得的结果表明,负责废物稳定化的主要阶段是两个第一阶段:机械分离和厌氧消化,其中RI和BMP分别减少了40%和60%,而第三阶段产生了消化物料的堆肥较少的生物降解(20–30%)。尽管MSW获得的指数明显低于OFMSW获得的指数,这表明OFMSW具有高生物降解性,但与废物稳定化相关的结果在两条生产线(MSW和OFMSW)中都相似。所提出的方法可用于表征有机废物并确定机械-生物废物处理厂中使用的操作单元的效率。

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    Ponsá Salas Sergio;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 eng
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