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Low-grade heat recycling for system synergies between waste heat and food production, a case study at the European Spallation Source

机译:低级热回收,以实现废热与食品生产之间的系统协同作用,以欧洲散裂源为例

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摘要

At present food production depends almost exclusively on direct use of stored energy sources, may perhaps they be nuclear-, petroleum-, or biobased. Arable land, artificial fertilizers, and fresh water resources are the base for our present food systems, but are limited. At the same time, energy resources in the form of waste heat are available in ample quantities. The European Spallation Source (ESS) will require approximately 270 GWh of power per year to operate, power that ultimately is converted to heat. This multidisciplinary case study details an alternative food production cooling chain, using low-grade surplus heat, and involving fermentation, aquaculture, nutrient recapture, and greenhouse horticulture including both use of low-grade surplus heat and recycling of society's organic waste that is converted to animal feed and fertilizer. The study indicates that by combining the use of surplus energy with harvest of society's organic side flows, for example, food waste and aquatic-based cash crops, sustainable food systems are possible at a level of significance also for global food security. The effects of the proposed heat reuse model are discussed in a system perspective and in the context of the UNSCD indicator framework. The potential sustainability benefits of such an effort are shown to be substantial and multifaceted.
机译:目前,粮食生产几乎完全取决于直接使用储存的能源,也许它们是基于核,石油或生物的。耕地,人造肥料和淡水资源是我们目前粮食系统的基础,但数量有限。同时,以废热形式的能源资源也很丰富。欧洲散裂源(ESS)每年将需要大约270 GWh的电力才能运行,最终将电力转换为热能。这项多学科案例研究详细介绍了替代食品生产冷却链,利用低等级的余热,涉及发酵,水产养殖,养分回收和温室园艺,包括低等级的余热的利用和社会有机废物的循环利用。动物饲料和肥料。该研究表明,通过将剩余能源的利用与社会有机侧流(例如食物浪费和水生经济作物)的收获相结合,可持续的粮食系统可能在某种程度上对全球粮食安全也具有重要意义。拟议的热能再利用模型的影响是在系统角度和在UNSCD指标框架的背景下进行讨论的。这项工作潜在的可持续性利益被证明是巨大的和多方面的。

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