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The role of thermo-catalytic reforming for energy recovery from food and drink supply chain wastes

机译:热催化重整对食品和饮料供应链废物中能量回收的作用

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摘要

Disposal of food and drink wastes, including packaging wastes, has a significant cost and environmental impact. All carbon containing wastes have an energy potential and the food industry should focus on recovering that energy to offset their reliance on fossil-fuel derived energy sources. This paper focuses on the novel use of intermediate pyrolysis for decarbonizing the food chain, through the treatment of food and packaging waste, to recover energy. The TCR is a versatile technology which overcomes many of the traditional problems associated with fast pyrolysis and can thermo-chemically convert a range of different feedstocks, including inaccessible lignin and some inorganic, recalcitrant materials. The feedstocks are converted into new fuel sources; char, bio-oil (thermally stable) and permanent gases, for further electrical and heat generation. Ultimately with the use of the TCR technology, the food production industry could look to using decentralized power generation located on-site of large food processing facilities to optimize their energy efficiencies.
机译:处置食品和饮料废物,包括包装废物,会对成本和环境造成重大影响。所有含碳废物均具有能源潜力,食品工业应集中精力回收该能源,以抵消其对化石燃料衍生能源的依赖。本文着重介绍了中间热解技术通过处理食品和包装废料以回收能量来使食物链脱碳的新用途。 TCR是一项通用技术,它克服了许多与快速热解相关的传统问题,并且可以热化学转化各种不同的原料,包括难以获得的木质素和一些无机难降解材料。原料转化为新的燃料来源;炭,生物油(热稳定)和永久性气体,用于进一步产生电和热。最终,通过使用TCR技术,食品生产行业可以考虑使用大型食品加工设施现场的分散发电来优化其能源效率。

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