School of Ecology and Environment, Beijing Technology and Business University, Beijing 100048, China; State Environmental Protection Key Laboratory of Food Chain Pollution Control, Beijing Technology and Business University, Beijing 100048, China.
Department of Chemical Engineering, University of Utah, Salt Lake City, UT 84112, USA.
Sci Total Environ. 2022 Aug 25;836:155571. doi: 10.1016/j.scitotenv.2022.155571. Epub 2022 Apr 29.
As one of the largest carbon emitters, China promises to achieve carbon emissions neutrality by 2060. Various industries are developing businesses to reduce carbon emissions. As an important greenhouse gas emissions scenario, the reduction of carbon emissions in the food chain can be achieved by preparing the wastes into biochar. The food chain, as one of the sources of biochar, consists of production, processing and consumption, in which many wastes can be transferred into biochar. However, few studies use the food chain as the system to sort out the raw materials of biochar. A systematic review of the food chain application in serving as raw materials for biochar is helpful for further application of such technique, providing supportive information for the development of biochar preparation and wastes treating. In addition, there are many pollution sources in the food production process, such as agricultural contaminated soil and wastewater from livestock and aquatic, that can be treated on-site to achieve the goal of treating wastes with wastes within the food chain. This study focuses on waste resource utilization and pollution remediation in the food chain, summarizing the sources of biochar in the food chain and analyzing the feasibility of using waste in food chain to treat contaminated sites in the food chain and discussing the impacts of the greenhouse gas emissions. This review provides a reference for the resource utilization of waste and pollution reduction in the food chain.
作为最大的碳排放国之一,中国承诺到 2060 年实现碳中和。各个行业都在发展业务以减少碳排放。作为温室气体排放的重要情景之一,食物链中的碳减排可以通过将废物制备成生物炭来实现。食物链作为生物炭的来源之一,包括生产、加工和消费,其中许多废物可以转化为生物炭。然而,很少有研究将食物链作为生物炭原料的系统进行分类。对食物链在生物炭原料中的应用进行系统综述有助于该技术的进一步应用,为生物炭制备和废物处理的发展提供支持信息。此外,在食品生产过程中有许多污染源,如农业污染土壤和来自牲畜和水产养殖的废水,可以就地处理,以实现食物链内用废物处理废物的目标。本研究重点关注食物链中的废物资源利用和污染修复,总结了食物链中生物炭的来源,并分析了利用食物链中的废物处理食物链中污染场地的可行性,讨论了温室气体排放的影响。本综述为食物链中的废物资源利用和减排提供了参考。