首页> 外文期刊>Sustainable Energy Technologies and Assessments >Feasibility of utilizing by-product biogas in breweries after being decarbonized for refrigeration chiller and related primary energy efficiency analysis
【24h】

Feasibility of utilizing by-product biogas in breweries after being decarbonized for refrigeration chiller and related primary energy efficiency analysis

机译:脱碳后在啤酒厂利用副产品沼气作为制冷机的可行性以及相关的一次能效分析

获取原文
获取原文并翻译 | 示例
       

摘要

This article analyzes the feasibility of utilizing biogas, by-product of wastewater treatment in breweries, as supplement for cooling during brewing process, considering the favourable condition that the output of beer, biogas, refrigeration load and power consumption are positively correlated. The CO2 and H2S in the biogas can be absorbed either by water physically or by chemical methods. Availability of wastewater in the brewery makes the physical method the first choice. Note that the calorific value of the decarbonised biogas is similar as natural gas, the latter is used instead to simulate primary energy efficiency. Among the three mostly used refrigeration equipment configurations, screw compression chiller driven by motor (CCDM), compression chiller driven by engine (CCDE) and direct-fired absorption chiller (DFAC) are put into comparison as they don't generate power. Take CCDM as reference, the calculated results shows that DFAC has an obvious advantage, with the highest PEEC that is 126.2%, and the lowest kce consumed per RT that is 0.312. As this article discusses both the use of decarbonised biogas for cooling and the selection of refrigeration equipment configuration, it provides an innovative design for biogas in the renewable energy.
机译:考虑到啤酒的产量,沼气,制冷负荷和能耗呈正相关的有利条件,本文分析了利用啤酒厂废水处理的副产品沼气作为酿造过程中冷却的补充的可行性。沼气中的CO2和H2S可以通过水物理或化学方法吸收。啤酒厂废水的可用性使物理方法成为首选。请注意,脱碳沼气的热值类似于天然气,后者被用来模拟一次能源效率。在三种最常用的制冷设备配置中,比较了电动机驱动的螺杆式压缩制冷机(CCDM),发动机驱动的压缩式制冷机(CCDE)和直燃式吸收式制冷机(DFAC),因为它们不发电。以CCDM为参考,计算结果表明DFAC具有明显的优势,PEEC最高为126.2%,每RT消耗的最低kce为0.312。当本文讨论使用脱碳沼气进行冷却以及选择制冷设备配置时,它为可再生能源中的沼气提供了创新的设计。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号