A Comprehensive Review of the Strategies to Improve Anaerobic Digestion: Their Mechanism and Digestion Performance

Methane Pub Date : 2024-04-15 DOI:10.3390/methane3020014
Xiaoyong Li, Zhi Wang, Yun He, Yuzhong Wang, Shilei Wang, Zehui Zheng, Songtao Wang, Jingliang Xu, Yafan Cai, Hanjie Ying
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Abstract

Low and unstable digestion performance is a challenging issue for anaerobic digestion, which prompts researchers to develop new strategies. In addition to traditional approaches such as co-digestion, pre-treatment, and recirculation, some emerging strategies, namely additive processes and microaeration, have also been recognized and developed in recent years. Many studies have evaluated the effect of these strategies on digestion performance. However, their comprehensive analysis is lacking, especially regarding the mechanisms of the different strategies. This review presents a comprehensive overview of research progress on these strategies based on the latest research, considering the five main strategies listed above. Through critical thinking, a summary of their mechanism, reactor performance, and availability of these strategies is presented. The results demonstrate that the contribution of microaeration is mainly to balance the composition and activity of hydrolysis, acidogenesis, and methanogenic archaea. Recirculation and co-digestion mainly balance mass and reaction environments. Pre-treatment, such as removing lignin, reducing cellulose crystallinity, and increasing the substrate-specific surface area, makes the characteristics of the substrate more conducive to the digestion of microorganisms. The mechanism of additive strategies varies greatly depending on the type of additive, such as enhancing interspecies electron transfer through conductive materials, resisting adverse digestion conditions through functional microbial additives, and accelerating nutrient absorption by regulating the bioavailability of trace elements. Although these strategies have different mechanisms for promoting digestion performance, their ultimate effect is to allow the parameters of the reactor to reach an ideal status and then achieve a balance among the substance, microorganisms, and water in an anaerobic reactor.
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全面回顾改进厌氧消化的策略:其机理和消化性能
消化性能低且不稳定是厌氧消化面临的一个挑战性问题,这促使研究人员开发新的策略。除了共消化、预处理和再循环等传统方法外,一些新兴策略,即添加剂工艺和微曝气,近年来也得到了认可和发展。许多研究评估了这些策略对消化性能的影响。然而,这些研究还缺乏全面的分析,尤其是对不同策略的作用机制的分析。本综述以最新研究为基础,考虑到上述五种主要策略,对这些策略的研究进展进行了全面概述。通过批判性思考,总结了这些策略的机理、反应器性能和可用性。结果表明,微曝气的作用主要是平衡水解、产酸和产甲烷古细菌的组成和活性。再循环和协同消化主要是平衡质量和反应环境。预处理,如去除木质素、降低纤维素结晶度和增加基质比表面积,可使基质的特性更有利于微生物的消化。根据添加剂类型的不同,添加剂策略的机理也大相径庭,如通过导电材料增强种间电子传递、通过功能性微生物添加剂抵御不利的消化条件、通过调节微量元素的生物利用率加速营养吸收等。虽然这些策略促进消化性能的机制不同,但其最终效果都是让反应器的参数达到理想状态,然后实现厌氧反应器中物质、微生物和水之间的平衡。
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