1 Department of Mechanics of Biosystem Engineering,Faculty of Agriculture, Shahid Bahonar University of Kerman, Kerman, Iran.
2 Young Researchers' Society, Shahid Bahonar University of Kerman,Kerman, Iran.
Waste Manag Res. 2017 Dec;35(12):1226-1236. doi: 10.1177/0734242X17733538. Epub 2017 Nov 7.
Biomass degradation kinetics of the composting process for kitchen waste, pruned elm tree branches and sheep manure were studied to model changes in volatile solids (VS) over time. Three experimental reactors containing raw mixtures with a carbon to nitrogen (C/N) ratio of 27:1 and a moisture content of 65% were prepared. During the composting process two of the reactors used forced air and the third used natural aeration. The composting stabilization phases in all reactors were completed in 30 days. During this period, composting indexes such as temperature, moisture content and VS changes were recorded. Elementary reactions were used for kinetics modeling of the degradation process. Results showed that the numerical values of rate constant ( k) for zero-order ranged from 0.86 to 1.03 VS×day, for first-order models it ranged from 0.01 to 0.02 day, for second-order the range was from 1.36×10 to 1.78×10 VS×day and for n-order the rate constant ranged from 0.031 to 0.095 VS×day. The resulting models were validated by comparing statistical parameters. Evaluation of the models showed that, in the aerated reactors, the n-order models (less than 1) successfully estimated the VS changes. In the non-aeration reactor, for the second-order model good agreement was achieved between the simulated and actual quantities of VS. Also, half-life time provided a useful criterion for the estimation of expected time for completion of different phases of composting.
研究了厨余垃圾、修剪榆树枝和羊粪堆肥过程中的生物质降解动力学,以建立挥发性固体(VS)随时间变化的模型。制备了三个含有初始混合物的实验反应器,其碳氮比(C/N)为 27:1,含水量为 65%。在堆肥过程中,两个反应器使用强制通风,第三个反应器使用自然曝气。所有反应器的堆肥稳定阶段均在 30 天内完成。在此期间,记录了堆肥过程中的温度、水分含量和 VS 变化等堆肥指标。使用基元反应对降解过程的动力学模型进行了建模。结果表明,零级反应的速率常数(k)值范围为 0.86-1.03 VS×天,一级模型的 k 值范围为 0.01-0.02 天,二级模型的 k 值范围为 1.36×10-1.78×10 VS×天,n 级模型的 k 值范围为 0.031-0.095 VS×天。通过比较统计参数对所得模型进行了验证。模型评价表明,在曝气反应器中,n 级模型(小于 1)成功估计了 VS 的变化。在非曝气反应器中,对于二级模型,VS 的模拟量与实际量之间具有良好的一致性。半衰期也为估计不同堆肥阶段完成所需的时间提供了有用的标准。