Kumar Vinod, Brancoli Pedro, Narisetty Vivek, Wallace Stephen, Charalampopoulos Dimitris, Kumar Dubey Brajesh, Kumar Gopalakrishnan, Bhatnagar Amit, Kant Bhatia Shashi, J Taherzadeh Mohammad
School of Water, Energy, and Environment, Cranfield University, Cranfield MK43 0AL, United Kingdom.
Swedish Centre for Resource Recovery, University of Borås, Borås 501 90, Sweden.
Bioresour Technol. 2023 Feb;369:128449. doi: 10.1016/j.biortech.2022.128449. Epub 2022 Dec 7.
The management of staggering volume of food waste generated (∼1.3 billion tons) is a serious challenge. The readily available untapped food waste can be promising feedstock for setting up biorefineries and one good example is bread waste (BW). The current review emphasis on capability of BW as feedstock for sustainable production of platform and commercially important chemicals. It describes the availability of BW (>100 million tons) to serve as a feedstock for sustainable biorefineries followed by examples of platform chemicals which have been produced using BW including ethanol, lactic acid, succinic acid and 2,3-butanediol through biological route. The BW-based production of these metabolites is compared against 1G and 2G (lignocellulosic biomass) feedstocks. The review also discusses logistic and supply chain challenges associated with use of BW as feedstock. Towards the end, it is concluded with a discussion on life cycle analysis of BW-based production and comparison with other feedstocks.
管理产生的数量惊人的食物垃圾(约13亿吨)是一项严峻挑战。现成的未开发食物垃圾有望成为建立生物精炼厂的原料,面包废弃物(BW)就是一个很好的例子。当前的综述重点关注面包废弃物作为可持续生产平台化学品和商业上重要化学品的原料的能力。它描述了面包废弃物(超过1亿吨)作为可持续生物精炼厂原料的可用性,随后列举了使用面包废弃物通过生物途径生产的平台化学品实例,包括乙醇、乳酸、琥珀酸和2,3-丁二醇。将这些基于面包废弃物生产的代谢物与第一代和第二代(木质纤维素生物质)原料进行了比较。该综述还讨论了将面包废弃物用作原料所涉及的物流和供应链挑战。最后,通过对基于面包废弃物生产的生命周期分析以及与其他原料的比较进行了总结。