利用车前草和山药皮生产沼气:利用响应面方法建模

Koffi Kan Raymond Kouame, Abollé Abollé, A. Kouakou, K. Gbangbo, A. Ehouman, Benjamin Yao
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引用次数: 0

摘要

世界对能源日益增长的需求和我们对保护环境的关注促使了对替代能源的研究。来自生物质的可再生能源就是这样一个机会。本研究的目的是模拟大车前草、山药皮和牛粪厌氧消化产生沼气的过程。表征表明,这些残留物具有良好的甲烷化适宜性,水分含量高(70%),挥发性固体含量高(75%),碳氮比在20 ~ 30之间。此外,根据混合计划,在中温条件下的甲烷化试验产生的沼气量在128至565 mL之间,CH4含量在54.03至72.98%之间。1/6车前草皮+ 2/3山药皮+ 1/6牛粪组成的沼气池沼气产量最佳,CH4浓度为67.52%,产气量为565 mL。根据这些结果建立的模型具有高度显著性,F值(1268.01)的概率显著小于0.05。除了调整后的系数R2(0.9994)和R2(0.9986)非常接近于1外,实验结果与预测结果有很好的相关性。因此,该预测模型对于解释沼气生产是可靠的。然而,进一步研究厌氧消化和沼气处理的动力学仍然很重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biogas Production from Plantain and Yam Peels: Modelling using Response Surface Methodology
The world’s growing demand for energy and our concern to preserve the environment have prompted research into alternative sources of energy. Renewable energy from biomass is one such opportunity. The aim of this study is to model the production of biogas from the anaerobic digestion of plantain and yam peelings and cattle dung. A characterisation of these residues showed their good suitability for methanisation with good moisture contents (˃70%), high volatile solids contents (˃75%) and C/N ratios of between 20 and 30. In addition, methanisation trials under mesophilic conditions following a mixing plan generated quantities of biogas ranging from 128 to 565 mL with CH4 contents of between 54.03 and 72.98%. The digester made up of 1/6 plantain peels + 2/3 yam peels + 1/6 cattle dung gave the best biogas yield with 565 mL for 67.52% CH4. The model established from these results is highly significant with an F value (1268.01) having a probability significantly lower than 0.05. In addition to the coefficients R2 (0.9994) and R2 (0.9986) which adjust are very close to unity, there is a good correlation between the experimental results and those predicted. This prediction model is therefore reliable for explaining biogas production. However, further study of the kinetics of anaerobic digestion and biogas treatment remains important.
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