Development of a Novel Bioreactor for Efficient Conversion of Agricultural Waste to Renewable Energy

Francesca Pouros
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Abstract

This article describes the creation of an innovative bioreactor for the effective generation of sustainable energy from agricultural refuse. In this research, the design and operation principles of the bioreactor, the selection and preparation of agricultural refuse materials, and the performance of the bioreactor in terms of its effectiveness, energy production, and the quality of the resulting methane are analyzed and evaluated. The performance of the bioreactor was evaluated by employing a variety of feedstocks, inoculum concentrations, and operating temperatures. Based on the research and comparison of the collected data, it was discovered that certain feedstocks, greater inoculum concentrations, and higher operating temperatures led to improved methane production and quality. The results of this research offer important new perspectives on the possibility of an innovative bioreactor for the environmentally responsible management of agricultural refuse and the generation of renewable energy. Additional study is required to perfect the bioreactor's architecture, as well as to determine whether or not it can be scaled up and whether or not it is economically viable.
农业废弃物高效转化为可再生能源的新型生物反应器的研制
这篇文章描述了一种创新的生物反应器的创建,用于有效地从农业垃圾中产生可持续能源。在本研究中,对生物反应器的设计和运行原理、农业垃圾材料的选择和制备、生物反应器的有效性、能源产量和甲烷质量等方面的性能进行了分析和评价。通过采用各种原料、接种浓度和操作温度来评估生物反应器的性能。通过对收集数据的研究和比较,发现一定的原料、较高的接种浓度和较高的操作温度可以提高甲烷的产量和质量。这项研究的结果为创新生物反应器的可能性提供了重要的新视角,用于对环境负责的农业废弃物管理和可再生能源的产生。需要进一步的研究来完善生物反应器的结构,以及确定它是否可以扩大规模,以及它是否在经济上可行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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