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Simulation of Anaerobic Co-Digestion Process for the Biogas Production using ASPEN PLUS

机译:使用Aspen Plus对沼气生产的厌氧共消化过程模拟

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The modern energy trends call for the transfer of energy requirements for sustainable industrial growth from conventional fuels to renewable energy sources. The rapid depletion of the fossil fuels and their hazards to the environment are of great concern for maintaining modern lifestyles and ensuring the safer environment. There lies a great interest for scientists for exploiting the potential for renewable and carbon-neutral sources of energy. Biomass in its different forms like agricultural waste residue, animal manure, and wastewater has a great perspective for utilization as a source for thermal heat or power generation. Anaerobic digestion (AD) which is a biochemical route of converting biomass into a biogas has high possibility to contribute in this context. Biogas is methane (CH4) dominant fuel which can perhaps replace the natural gas. However, to increase the calorific value of biogas its CO2 content needs to be decreased. There are several processes to upgrade the biogas by increasing the CH4 content. This is sometimes not possible with a single substrate. Hence an evolving technology known as anaerobic co-digestion (AcoD) is adopted for increasing the CH4 percentage composition in biogas. This study presents the simulated AcoD reactor for three substrates for producing the biogas. The various substrates modeled were date seed waste, date palm leaf waste, coffee waste, wastewater, and animal manure. A simulation of the whole system will be conducted using ASPEN PLUS software by simulating the Anaerobic Digester using different biomass and feedstock ratios to find the optimum ratio that maximizes the methane in biogas produced. The best biomass for maximum methane production is a dates tree leaf, but its CO2 emission is higher than the rest. The biomass date seed waste using as feedstock provided the highest CH4/CO2 ratio of 2.3.
机译:现代能源趋势要求从常规燃料到可再生能源的可持续工业增长转移能源需求。化石燃料的快速消耗及其对环境的危害对于维护现代生活方式并确保更安全的环境非常关注。对于利用可再生和碳中性能源来源的科学家来说,这是一个很兴趣。以农业废物残留物,动物粪和废水等不同形式的生物质具有很好的利用视角,作为热量或发电的源。作为将生物质转化为沼气的生物化学途径的厌氧消化(Ad)具有很高的可能性在这种情况下有助于贡献。沼气是甲烷(CH 4 )可能取代天然气的主导燃料。但是,增加沼气的热值 2 内容需要减少。通过增加CH,有几个过程升级沼气 4 内容。对于单个基板有时不可能。因此,采用了一种不断发展的技术,以增加CH的厌氧共消化(ACOD) 4 沼气中的百分比组成。该研究介绍了用于制备沼气的三个基板的模拟Acod反应器。建模的各种基材是日期种子废物,枣椰子叶废物,咖啡废物,废水和动物粪便。通过模拟使用不同生物量和原料比模拟厌氧蒸煮器来使用ASPEN PLUS软件进行整个系统的模拟,以找到最佳比率,最大化沼气中产生的沼气中的甲烷。最大甲烷生产的最佳生物质是树叶,但其有限公司 2 排放高于其余部分。使用作为原料的生物质日期种子废物提供了最高的CH 4 / co. 2 比例为2.3。

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