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Evolution of organic matter in a full-scale composting plant for the treatment of sewage sludge and biowaste by respiration techniques and pyrolysis-GC/MS

机译:大型堆肥厂中通过呼吸技术和热解-GC / MS处理污水污泥和生物废物的有机物的演变

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摘要

A full-scale composting plant treating in two parallel lines sewage sludge and the source-selected organic fraction of municipal solid waste (OFMSW or biowaste) has been completely monitored. Chemical routine analysis proved not to be suitable for an adequate plant monitoring in terms of stabilization and characterization of the process and final compost properties. However, the dynamic respiration index demonstrated to be the most feasible tool to determine the progression of the degradation and stabilization of organic matter for both sewage sludge and OFMSW lines. Both lines exhibited an important degree of stabilization of organic matter using rapid and cumulative respiration indices. Pyrolysis-GC/MS was applied to the most important inputs, outputs, and intermediate points of the plant. It proved to be a powerful tool for the qualitative characterization of molecular composition of organic matter present in solid samples. A full characterization of the samples considered is also presented.
机译:一个完整的堆肥厂已在两条平行的污水污泥和城市固体废物(有机废物或生物废物)的源选择有机部分中进行了处理。从过程的稳定性和表征以及最终的堆肥性质来看,化学常规分析证明不适合进行足够的工厂监控。但是,动态呼吸指数被证明是确定污水污泥和OFMSW管线中有机物降解和稳定进程的最可行工具。使用快速和累积呼吸指数,这两条线均显示出重要的有机物稳定度。热解-GC / MS用于工厂最重要的输入,输出和中间点。它被证明是定性表征固体样品中有机物分子组成的有力工具。还介绍了所考虑样品的完整特性。

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    Font i Segura Xavier;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 eng
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