Department of Microbiology & Bioinformatics, Atal Bihari Vajpayee University, Bilaspur 495001, India.
Department of Biotechnology, Guru Ghasidas University, Bilaspur 495009, India.
Int J Environ Res Public Health. 2023 Jan 28;20(3):2318. doi: 10.3390/ijerph20032318.
There is world-wide generation of food waste daily in significant amounts, leading to depletion of natural resources and deteriorating air quality. One-third of global food produced is wasted laterally with the food value chain. Carbon footprint is an efficient way of communicating the issues related to climate change and the necessity of changing behavior. Valorization or utilization of food wastes helps in resolving issues related to environment pollution. Reduction in the carbon footprint throughout the chain of food supply makes the whole process eco-friendly. Prevailing food waste disposal systems focus on their economic and environmental viability and are putting efforts into using food waste as a resource input to agriculture. Effective and advanced waste management systems are adopted to deal with massive waste production so as to fill the gap between the production and management of waste disposal. Food waste biorefineries are a sustainable, eco-friendly, and cost-effective approach for the production of platform chemicals, biofuels, and other bio-based materials. These materials not only provide sustainable resources for producing various chemicals and materials but have the potential to reduce this huge environmental burden significantly. In this regard, technological advancement has occurred in past few years that has proven suitable for tackling this problem.
每天全世界都会产生大量的食物浪费,导致自然资源枯竭和空气质量恶化。全球生产的三分之一的食物在横向的食品价值链中被浪费掉了。碳足迹是一种有效沟通与气候变化相关问题和改变行为必要性的方式。对食物废物进行增值或利用有助于解决环境污染问题。通过减少整个食品供应链中的碳足迹,使整个过程更加环保。目前流行的食物废物处理系统侧重于其经济和环境可行性,并正在努力将食物废物作为农业的资源投入来使用。为了应对大量的废物产生,采用了有效的先进的废物管理系统,以填补废物生产和管理之间的差距。食物废物生物精炼厂是生产平台化学品、生物燃料和其他基于生物的材料的可持续、环保和具有成本效益的方法。这些材料不仅为生产各种化学品和材料提供了可持续的资源,而且有可能显著减少这一巨大的环境负担。在这方面,过去几年已经取得了技术进步,证明适合解决这个问题。