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Optimization of waste combinations during in-vessel composting of agricultural waste

机译:在农业废弃物的堆肥化过程中优化废弃物组合

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摘要

In-vessel composting of agricultural waste is a well-described approach for stabilization of compost within a short time period. Although composting studies have shown the different combinations of waste materials for producing good quality compost, studies of the particular ratio of the waste materials in the mix are still limited. In the present study, composting was conducted with a combination of vegetable waste, cow dung, sawdust and dry leaves using a 550 L rotary drum composter. Application of a radial basis functional neural network was used to simulate the composting process. The model utilizes physico-chemical parameters with different waste materials as input variables and three output variables: volatile solids, soluble biochemical oxygen demand and carbon dioxide evolution. For the selected model, the coefficient of determination reached the high value of 0.997. The complicated interaction of agricultural waste components during composting makes it a nonlinear problem so it is difficult to find the optimal waste combinations for producing quality compost. Optimization of a trained radial basis functional model has yielded the optimal proportion as 62 kg, 17 kg and 9 kg for vegetable waste, cow dung and sawdust, respectively. The results showed that the predictive radial basis functional model described for drum composting of agricultural waste was well suited for organic matter degradation and can be successfully applied.
机译:对农业废弃物进行船内堆肥是一种在很短的时间内稳定堆肥的方法。尽管堆肥研究已经显示了用于生产优质堆肥的不同废物组合,但对混合物中废物特定比例的研究仍然有限。在本研究中,使用550升旋转鼓式堆肥机对蔬菜废物,牛粪,锯末和干叶进行堆肥。径向基函数神经网络的应用被用来模拟堆肥过程。该模型利用具有不同废料的物理化学参数作为输入变量和三个输出变量:挥发性固体,可溶性生化需氧量和二氧化碳释放量。对于选定的模型,确定系数达到了0.997的高值。农业废弃物成分在堆肥过程中的复杂相互作用使其成为一个非线性问题,因此很难找到生产优质堆肥的最佳废弃物组合。训练有素的径向基函数模型的优化得出最佳比例,分别为蔬菜垃圾,牛粪和锯末分别为62 kg,17 kg和9 kg。结果表明,所描述的用于农业废弃物鼓式堆肥的预测径向基函数模型非常适合有机物降解,并且可以成功应用。

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