Water and Environment Division, Department of Civil Engineering, National Institute of Technology, Warangal, Telangana, India.
Water and Environment Division, Department of Civil Engineering, National Institute of Technology, Warangal, Telangana, India.
J Environ Manage. 2023 Oct 15;344:118743. doi: 10.1016/j.jenvman.2023.118743. Epub 2023 Aug 10.
In recent years, anaerobic digestion (AD) has gained popularity as a practical method for generating clean energy and efficiently managing organic waste. However, the effectiveness of the reactor is compromised by the accumulation of ammonia, acids, and nutrients, leading to inhibition and instability. Because of its adaptability, biochar (BC) has sparked a substantial interest in biogas production and can be created by charring biomass and waste materials. Adding BC to the AD process could yield the following benefits: mitigating toxic inhibition, reducing the duration of the methanogenic lag phase, immobilising functional bacteria, and enhancing the rate of electron transfer between methanogenic and acetogenic microorganisms. Nonetheless, there remains to be more comprehensive knowledge regarding the multifaceted function of BC and its intricate mechanisms in the generation of biogas in AD. The research summarises scattered information from the literature on BC production from various feedstocks and factors affecting its characteristics. Additionally, a comprehensive analysis of the utilisation of BC as an additive within AD is presented here, emphasising how BC characteristics impact AD processes and how they effectively engage key challenges.
近年来,厌氧消化(AD)作为一种生成清洁能源和有效管理有机废物的实用方法变得越来越受欢迎。然而,由于氨、酸和养分的积累,反应器的效率受到了影响,导致抑制和不稳定。由于其适应性,生物炭(BC)在沼气生产中引起了极大的关注,可以通过碳化生物质和废物材料来制造。将 BC 添加到 AD 过程中可能会带来以下好处:减轻毒性抑制,缩短产甲烷迟滞期,固定功能细菌,并增强产甲烷菌和产乙酸菌之间的电子转移速率。尽管如此,对于 BC 的多方面功能及其在 AD 中产沼气的复杂机制,我们仍需要更全面的知识。本研究总结了来自不同原料的 BC 生产以及影响其特性的因素的文献中的分散信息。此外,本文还全面分析了 BC 作为 AD 添加剂的利用,强调了 BC 特性如何影响 AD 过程以及它们如何有效地应对关键挑战。