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Composting of vegetable waste

机译:蔬菜废物堆肥

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The effects of the aeration, seeding, and agitation on the composting of vegetable waste were studied in a laboratory-scale reactor. Experimental results showed that the final product at the end of a 4-day composting period met multiple maturity indices suggested by many researchers. The evolution of carbon dioxide during the composting process could be modelled with a modified Gompertz equation that described the bacteria growth successfully. Multivariate regression analysis was used to study the effects of operating parameters on the carbon conversion. The response surface contour plots were constructed using the regression equation for the examination of the dependence of carbon conversion on operating parameters. The maximum carbon conversion of 14.54 percent was obtained when the percentage of seeding was set at 14-5 percent, the air suction rate was set at 2.6 L kg~(-1) dry-solid min~(-1), and the agitator operated half of the time, alternating on and off for every 5 min. Future work will focus on the application of the data and the experience gained in this work to compost-ers of pilot and semi-commercial scales.
机译:在实验室规模的反应器中研究了曝气,播种和搅拌对蔬菜废物堆肥的影响。实验结果表明,在4天堆肥期结束时,最终产品符合许多研究人员建议的多个成熟度指标。堆肥过程中二氧化碳的释放可以用修正的Gompertz方程建模,该方程成功地描述了细菌的生长。使用多元回归分析来研究操作参数对碳转化的影响。使用回归方程构建响应表面轮廓图,以检查碳转化率对运行参数的依赖性。设定播种比例为14-5%,吸气率设定为2.6 L kg〜(-1)干固分min〜(-1),搅拌器时,最大碳转化率为14.54%。一半时间运行,每5分钟打开和关闭一次。未来的工作将集中于数据的应用以及在这项工作中获得的经验,以用于中试规模和半商业规模的堆肥机。

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