利用锯末和处理过的人类粪便生产沼气的参数评估:最佳定制设计方法

A. O. Emu, S. C. Iweka, K. E. Madu, N. E. Nwanze
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摘要

由于能源需求呈天文数字增长,化石燃料变得稀缺和昂贵,二氧化碳的排放水平变得更加令人担忧。因此,有必要将锯末和经过处理的人类粪便共同消化转化为沼气,这是一种碳中和气体,可以替代化石燃料。从结果来看,Logistic 函数模型在模拟实验过程中的表现令人满意。采用最佳(定制)混合物设计方法,锯末和人粪各 2.5 千克的共同消化产生的沼气产量最高,为 5.43 升,但单独使用人粪产生的沼气质量更好。此外,温度-沼气产量的决定系数 (R2) 在 0.9959 - 0.9879 之间,标准偏差在 0.023 - 0.321 之间,均在理想范围内。因此,该模型被证明是预测厌氧消化和沼气生产过程的有用工具。此外,对锯末和人类粪便的傅立叶变换红外分析表明,如果在厌氧环境下,它们具有产生沼气的潜力。此外,经气相色谱分析,甲烷含量为 58.40%,在可接受范围内。 用当地制造的气体燃烧器对沼气的可燃性进行了测试,结果显示沼气点燃后发出蓝色火焰。因此,该实验可转化为工业规模的沼气生产,用于烹饪和发电,以促进当地经济发展和减贫。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parametric Evaluation of Biogas Production from Sawdust and Treated Human Faeces: Optimal Custom Design Approach
As energy demand is increasing astronomically, fossil-based fuels became scarce and more expensive, and carbon dioxide emission levels became of greater concern. Thus, the need to convert the co-digestion of sawdust and treated human faeces to produce biogas, a carbon-neutral gas to replace fossil fuels. From the outcome, the logistic function model performance was satisfactory in the simulation of the experimental process. The codigestion of sawdust and human faeces at 2.5 kg each produced the highest biogas output of 5.43 L using Optimal (Custom) Design of Mixture approach but the human faeces alone gave a better biogas quality. Additionally, the high coefficient of determination (R2) ranging between 0.9959 - 0.9879 and standard deviation of 0.023 - 0.321 for temperature - biogas yield respectively, fall within an ideal range. Thus, the model proved to be a useful tool in predicting anaerobic digestion and biogas production processes. Furthermore, the FTIR analysis of sawdust and human faeces indicates their potential to produce biogas if subjected to anaerobic environment. In addition, the GCMS analyzed the % of methane to be 58.40% which is within  accepted   range.  The biogas   was tested with a locally fabricated gas burner for flammability and it ignited with a blue flame. Thus, this experiment can be translated to an industrial scale biogas production for cooking and electricity to boost local economy and alleviate poverty.
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