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首页> 外文期刊>Food and Bioproducts Processing. Transactions of the Institution of Chemical Engineers, Part C >One-dimensional spatial model for self-heating in compost piles: Investigating effects of moisture and air flow
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One-dimensional spatial model for self-heating in compost piles: Investigating effects of moisture and air flow

机译:堆肥桩自加热的一维空间模型:水分和空气流动的研究

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This paper considers the self-heating process which occurs within a compost pile using a one-dimensional spatially-dependent model incorporating terms that account for self heating due to both biological and oxidation mechanisms. As the moisture content within a compost pile and the air flow through it are the two crucial factors in the degradation process, we use a model which incorporates four mass-balance equations, namely, energy, oxygen, vapour and liquid water concentrations, to investigate the behaviour of a compost pile when these two factors interact. Analyses of different initial water contents and air-flow velocities within a compost pile show that they can determine the efficiency of the biodegradation process. For an intermediate water content range and air-flow rate, the biological reaction is shown to be at its optimal value but there is also a possibility of spontaneous ignition within the compost pile. (C) 2017 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:本文考虑了使用符合生物和氧化机制由于两种生物和氧化机制而占自加热的术语的一维空间依赖模型在堆肥桩中发生的自加热过程。随着堆肥桩内的水分含量和空气流过下降过程中的两个关键因素,我们使用包含四个质量平衡方程,即能量,氧气,蒸气和液态水浓度的模型来研究这两个因素互动时堆肥桩的行为。堆肥桩中不同初始水含量和气流速度的分析表明,它们可以确定生物降解过程的效率。对于中间水含量范围和流量流速,将生物反应显示在其最佳值处,但也存在堆肥桩内的自发点火可能性。 (c)2017年化学工程师机构。 elsevier b.v出版。保留所有权利。

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