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Anaerobic co-digestion process for biogas production: Progress, challenges and perspectives

机译:沼气厌氧共消化过程:进展,挑战和前景

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Globally, there is increasing awareness that renewable energy and energy efficiency are vital for both creating new economic opportunities and controlling the environmental pollution. AD technology is the biochemical process of biogas production which can change the complex organic materials into a clean and renewable source of energy. AcoD process is a reliable alternative option to resolve the disadvantages of single substrate digestion system related to substrate characteristics and system optimization. This paper reviewed the research progress and challenges of AcoD technology, and the contribution of different techniques in biogas production engineering. As the applicability and demand of the AcoD technology increases, the complexity of the system becomes increased, and the characterization of organic materials becomes volatile which requires advanced methods for investigation. Numerous publications have been noted that ADM1 model and its modified version becomes the most powerful tool to optimize the AcoD process of biogas production, and indicating that the disintegration and hydrolysis steps are the limiting factors of co-digestion process. Biochemical methane potential (BMP) test is promising method to determine the biodegradability and decomposition rate of organic materials. The addition of different environmentally friendly nanoparticles can improve the stability and performance of the AcoD system. The process optimization and improvement of biogas production still seek further investigations. Furthermore, using advanced simulation approaches and characterization methods of organic wastes can accelerate the transformation to industrializations, and realize the significant improvement of biogas production as a renewable source and economically feasible energy in developing countries, like China. Finally, the review reveals, designing and developing a framework, including various aspects to improve the biogas production is essential.
机译:在全球范围内,人们越来越意识到可再生能源和能源效率对于创造新的经济机会和控制环境污染至关重要。 AD技术是沼气生产的生化过程,可以将复杂的有机材料转变为清洁和可再生的能源。 AcoD工艺是解决单个底物消化系统与底物特性和系统优化有关的缺点的可靠替代选择。本文综述了AcoD技术的研究进展和挑战,以及不同技术在沼气生产工程中的贡献。随着AcoD技术的适用性和需求的增加,系统的复杂性增加,有机材料的表征变得易变,这需要先进的研究方法。已经注意到许多出版物,ADM1模型及其修改版本成为优化沼气生产AcoD过程的最强大工具,并且表明分解和水解步骤是共消化过程的限制因素。生化甲烷潜力(BMP)测试是确定有机材料的生物降解性和分解速率的有前途的方法。添加不同的环保纳米颗粒可以改善AcoD系统的稳定性和性能。工艺优化和沼气生产的改进仍在寻求进一步的研究。此外,使用先进的模拟方法和有机废物的表征方法可以加快向工业化的转化,并在像中国这样的发展中国家中实现沼气作为可再生能源和经济上可行的能源的生产的显着改善。最后,审查揭示,设计和开发了一个框架,包括改善沼气生产的各个方面都是必不可少的。

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