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Energy consumption in the UK food chill chain – primary chilling

机译:英国食品冷链中的能源消耗 - 初级冷却

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摘要

There is increasing pressure on governments and industries to make significant reductions in carbon emissions. In the UK, 11% of electricity is consumed by the food industry and in some sectors a substantial portion of site energy, up to 90%, is consumed by refrigeration systems. The aim of this work was to: identify the major primary chilling energy requirements in the UK; calculate or make a best estimate of their efficiency; and determine which chilling processes have the highest energy saving potential. In terms of the heat energy to be extracted during the primary chilling process, the six most important categories in rank order were milk (532 GWh/year), meat (114 GWh/year), potatoes (59 GWh/year), other vegetables (36 GWh/year), fish (6.5 GWh/ year) and fruit (5.9 GWh/year). There is little published data on the measured energy consumption of commercial primary chilling processes in the UK or that is directly applicable to the UK. From the data that is available, the energy efficiency (useful heat extracted from material/measured electrical energy used) varies from 0.138 to 5.337, with cooling of milk being far more efficient than that of the next two most important categories, meat and potatoes. Using the best of existing technologies it is estimated that 154 GWh could be saved per year in potato cooling, 128 GWh in milk and between 51 and 80 GWh in the cooling of carcass meat. Savings in other commodity areas are likely to be more than an order of magnitude less.
机译:政府和行业越来越要求大幅减少碳排放量。在英国,食品工业消耗了11%的电力,在某些行业中,制冷系统消耗了很大一部分现场能源(高达90%)。这项工作的目的是:确定英国主要的主要冷能需求;计算或对其效率进行最佳估计;并确定哪些冷却工艺具有最高的节能潜力。就初级冷却过程中要提取的热能而言,排名最重要的六个类别是牛奶(532 GWh /年),肉类(114 GWh /年),土豆(59 GWh /年),其他蔬菜(36 GWh /年),鱼类(6.5 GWh /年)和水果(5.9 GWh /年)。在英国,很少有公开数据或可直接应用于英国的商业一次冷却过程的能耗测量数据。根据可用数据,能源效率(从材料中提取的有用热量/所使用的电能)在0.138到5.337之间变化,牛奶的冷却效率远高于接下来的两个最重要类别的肉和土豆。使用现有最好的技术,估计每年在土豆冷却方面可以节省154 GWh,在牛奶中可以节省128 GWh,在car体肉冷却方面可以节省51至80 GWh。其他商品领域的储蓄可能要少一个数量级。

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  • 作者

    Evans J; Swain M; James S;

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  • 年度 100
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  • 正文语种 en
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