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Simulation of accumulated matter from human feces in the sawdust matrix of the composting toilet

机译:模拟堆肥马桶中木屑基质中人粪便中的累积物质

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摘要

A bio-kinetic model for aerobic biodegradation of human feces was applied to the practical operation of the composting toilet. The first aim of this study was to describe nitrogen transformation in the toilet as well as organic carbon. Second aim was to obtain the kinetic parameters for better prediction of accumulated matter for a long time of the practical operation. Six simple fractions of fecal carbon (slowly hydrolyzable matter, easily hydrolyzable matter, readily biodegradable matter, biologically inert type of matter etc.) were prepared in the model. Nitrogen factors were incorporated to each factor of fecal carbon. Modification of only one kinetic parameter for hydrolysis of slowly hydrolyzable carbon was required to obtain the best fitting curve of accumulation in the toilet. Model prediction for one-year operation of the toilet showed that temporal accumulation of biodegradable organic matter was significant in the first stage whereas main accumulation would be biologically inert type of organic matter at the end of the operation.
机译:将人类粪便有氧生物降解的生物动力学模型应用于堆肥厕所的实际操作中。这项研究的第一个目的是描述马桶中的氮转化以及有机碳。第二个目的是获得动力学参数,以便在长时间的实际操作中更好地预测累积的物质。在模型中制备了粪便碳的六个简单部分(缓慢水解的物质,易于水解的物质,易于生物降解的物质,生物惰性的物质等)。将氮因子结合到粪便碳的每个因子中。仅需修改一个动力学参数即可水解可缓慢水解的碳,即可获得马桶中积累的最佳拟合曲线。对马桶进行一年运行的模型预测表明,在第一阶段,可生物降解有机物的时间积累显着,而在运行结束时,主要的积累是生物学惰性的有机物。

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