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储存环境对食物垃圾含水量和微生物生长的影响。

Effects of storage environment on the moisture content and microbial growth of food waste.

机构信息

Associate Professor, Institute of Natural Resources Management, National Taipei University, New Taipei City, 237, Taiwan.

Master's Student, Institute of Environmental Engineering and Management, National Taipei University of Technology, Taipei City, 106, Taiwan.

出版信息

J Environ Manage. 2018 May 15;214:192-196. doi: 10.1016/j.jenvman.2018.03.009. Epub 2018 Mar 8.

Abstract

Food waste (FW) has become a critical issue in sustainable development as the world's population has increased. Direct incineration of FW remains the primary treatment option. The moisture content of FW may affect the energy efficiency of incineration. In Taiwan, FW, which includes raw (r-FW) and post-consumer (p-FW) waste, is often stored in freezers before pretreatment. This study evaluated the effects of storage environment on the moisture content and microbial growth of FW. Storage at 263 K was associated with the largest reduction in moisture content in both r-FW and p-FW. At 263 K, the moisture content of r-FW and p-FW was lowest at 96 and 72 h, respectively. The E.coli and total bacteria counts were steady over 120 h when stored at 263 K. Storage at 253 K required the greatest electricity consumption, followed by 263 K and 258 K. Based on the reduction of moisture content and increase in energy efficiency, it is suggested that FW is placed in temporary storage at 263 K before (pre)treatment. The results of this study will help waste-to-energy plants, incinerators, and waste management enterprises to implement proper (pre)treatment of FW for sustainable waste management.

摘要

食物垃圾(FW)随着世界人口的增加,已成为可持续发展的一个关键问题。直接焚烧仍然是 FW 的主要处理选择。FW 的含水量可能会影响焚烧的能源效率。在台湾,FW 包括生(r-FW)和消费后(p-FW)废物,通常在预处理前储存在冰箱中。本研究评估了储存环境对 FW 含水量和微生物生长的影响。在 263 K 下储存与 r-FW 和 p-FW 含水量最大减少有关。在 263 K 下,r-FW 和 p-FW 的含水量在 96 和 72 h 时分别最低。当在 263 K 下储存时,大肠杆菌和总细菌计数在 120 h 内保持稳定。在 253 K 下储存需要最大的电力消耗,其次是 263 K 和 258 K。基于含水量的减少和能源效率的提高,建议在(预)处理之前将 FW 在 263 K 下临时储存。本研究的结果将有助于废物能源厂、焚烧炉和废物管理企业实施 FW 的适当(预)处理,以实现可持续的废物管理。

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