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首页> 外文期刊>Journal of Cleaner Production >Life cycle assessment of cleaning-in-place operations in egg yolk powder production
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Life cycle assessment of cleaning-in-place operations in egg yolk powder production

机译:蛋黄粉生产清洗运作的生命周期评估

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摘要

The manufacture of egg yolk powder by spray drying requires regular cleaning in order to remove fouling deposits and prevent microbiological growth on the pasteurisation heat exchanger and the spray dryer. A life cycle assessment (LCA) study on a typical powder manufacturing plant, using literature data, indicated that the egg breaking, storage and pasteurisation steps were the major contributors to the plant's environmental impacts rather than the cleaning-in-place (CIP) operations owing to their high water and electricity consumption (for refrigerated storage). CIP impacts on thermal energy and wastewater emissions were nevertheless significant, and the benefits of using intermittent flows of aqueous NaOH solution in the dryer CIP stage, reported by Yang et al. (2019), were assessed. The latter gave a 21% improvement in terrestrial ecotoxicity impact. Optimising the NaOH/temperature conditions based on experimental data gave more efficient cleaning with lower water, chemicals and energy consumption. Over-cleaning had significant impacts on terrestrial and marine ecotoxicity as well as reducing productivity. Three changes in cleaning technology were considered briefly: electrical heating, solar heating and pumping, and membrane treatment of wastewater. These gave little overall global improvement, partly due to the polluting nature of the available electricity supply (coal-fired) and local benefits to the factory being offset by impacts associated with equipment manufacture. (C) 2020 Elsevier Ltd. All rights reserved.
机译:喷雾干燥制造蛋黄粉末需要定期清洁,以除去污垢沉积物并防止在巴斯特辐射热交换器和喷雾干燥器上进行微生物生长。使用文献数据的典型粉末制造工厂的生命周期评估(LCA)研究表明,蛋破碎,储存和巴氏杀菌步骤是植物环境影响而不是清理(CIP)操作的主要贡献者由于它们的高水和电力消耗(用于冷藏储存)。然而,CIP对热能和废水排放的影响显着,以及在杨等人报道的干燥器CIP阶段中使用NaOH水溶液中的间歇水溶液的益处。 (2019),被评估。后者在陆地生态毒性的影响下提高了21%。优化基于实验数据的NaOH /温度条件给出了较低的水,化学品和能耗的更有效清洁。过度清洁对陆地和海洋生态毒性的影响显着,以及降低生产率。简要考虑了清洁技术的三种变化:电加热,太阳能加热和泵送,以及废水的膜处理。这些整体全球改善略有全球改善,部分原因是由于可用电力供应(燃煤)和本地福利对工厂的污染性质抵消了与设备制造相关的影响。 (c)2020 elestvier有限公司保留所有权利。

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