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通过控制参数优化,实现城市固体废物——豆类修剪残余物混合物在堆肥中的最大降解。

Maximising municipal solid waste--legume trimming residue mixture degradation in composting by control parameters optimization.

机构信息

Instituto de Recursos Naturales y Agrobiología de Sevilla, IRNAS-CSIC, Avda. Reina Mercedes 10, 41012 Sevilla, Spain.

出版信息

J Environ Manage. 2013 Oct 15;128:266-73. doi: 10.1016/j.jenvman.2013.05.030. Epub 2013 Jun 10.

Abstract

Composting is one of the most successful biological processes for the treatment of the residues enriched in putrescible materials. The optimization of parameters which have an influence on the stability of the products is necessary in order to maximize recycling and recovery of waste components. The influence of the composting process parameters (aeration, moisture, C/N ratio, and time) on the stability parameters (organic matter, N-losses, chemical oxygen demand, nitrate, biodegradability coefficient) of the compost was studied. The composting experiment was carried out using Municipal Solid Waste (MSW) and Legume Trimming Residues (LTR) in 200 L isolated acrylic barrels following a Box-Behnken central composite experimental design. Second-order polynomial models were found for each of the studied compost stability parameter, which accurately described the relationship between the parameters. The differences among the experimental values and those estimated by using the equations never exceeded 10% of the former. Results of the modelling showed that excluding the time, the C/N ratio is the strongest variable influencing almost all the stability parameters studied in this case, with the exception of N-losses which is strongly dependent on moisture. Moreover, an optimized ratio MSW/LTR of 1/1 (w/w), moisture content in the range of 40-55% and moderate to low aeration rate (0.05-0.175 Lair kg(-)(1) min(-1)) is recommended to maximise degradation and to obtain a stable product during co-composting of MSW and LTR.

摘要

堆肥是处理富含可腐物质的废物的最成功的生物处理方法之一。为了最大限度地回收和再利用废物成分,有必要优化对产品稳定性有影响的参数。研究了堆肥过程参数(曝气、水分、C/N 比和时间)对堆肥稳定性参数(有机物、氮损失、化学需氧量、硝酸盐、生物降解系数)的影响。采用 Box-Behnken 中心组合实验设计,在 200 L 独立亚克力桶中使用城市固体废物(MSW)和豆科修剪残余物(LTR)进行堆肥实验。对于每个研究的堆肥稳定性参数,都发现了二次多项式模型,这些模型准确地描述了参数之间的关系。使用方程估计的实验值和实际值之间的差异从未超过前者的 10%。建模结果表明,除时间外,C/N 比是影响几乎所有在此情况下研究的稳定性参数的最强变量,除水分强烈依赖于水分的氮损失外。此外,推荐使用 MSW/LTR 比例为 1/1(w/w)、水分含量在 40-55%之间以及适度至低的曝气率(0.05-0.175 Lair kg(-)(1) min(-1)),以在 MSW 和 LTR 的共堆肥过程中最大限度地降解并获得稳定的产品。

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