Ramanaiah S V, Chandrasekhar K, Cordas Cristina M, Potoroko Irina
Food and Biotechnology Research Lab, South Ural State University (National Research University), 454080, Chelyabinsk, Russian Federation.
School of Civil and Environmental Engineering, Yonsei University, 50 Yonsei-ro, Seoul, 03722, Republic of Korea.
Environ Pollut. 2023 May 15;325:121432. doi: 10.1016/j.envpol.2023.121432. Epub 2023 Mar 10.
Producing food by farming and subsequent food manufacturing are central to the world's food supply, accounting for more than half of all production. Production is, however, closely related to the creation of large amounts of organic wastes or byproducts (agro-food waste or wastewater) that negatively impact the environment and the climate. Global climate change mitigation is an urgent need that necessitates sustainable development. For that purpose, proper agro-food waste and wastewater management are essential, not only for waste reduction but also for resource optimization. To achieve sustainability in food production, biotechnology is considered as key factor since its continuous development and broad implementation will potentially benefit ecosystems by turning polluting waste into biodegradable materials; this will become more feasible and common as environmentally friendly industrial processes improve. Bioelectrochemical systems are a revitalized, promising biotechnology integrating microorganisms (or enzymes) with multifaceted applications. The technology can efficiently reduce waste and wastewater while recovering energy and chemicals, taking advantage of their biological elements' specific redox processes. In this review, a consolidated description of agro-food waste and wastewater and its remediation possibilities, using different bioelectrochemical-based systems is presented and discussed together with a critical view of the current and future potential applications.
通过农业生产粮食以及随后的食品制造是全球粮食供应的核心,占所有生产的一半以上。然而,生产与大量有机废物或副产品(农业食品废物或废水)的产生密切相关,这些废物或副产品对环境和气候产生负面影响。全球减缓气候变化是一项迫切需求,这需要可持续发展。为此,妥善管理农业食品废物和废水至关重要,这不仅有助于减少废物,还能实现资源优化。为了实现食品生产的可持续性,生物技术被视为关键因素,因为其不断发展和广泛应用有望通过将污染性废物转化为可生物降解材料而使生态系统受益;随着环境友好型工业流程的改进,这将变得更加可行和普遍。生物电化学系统是一种新兴的、有前景的生物技术,它将微生物(或酶)与多方面应用相结合。该技术能够有效减少废物和废水,同时回收能量和化学品,利用其生物成分的特定氧化还原过程。在本综述中,我们对农业食品废物和废水及其利用不同生物电化学系统进行修复的可能性进行了综合描述,并对当前和未来的潜在应用进行了批判性讨论。