首页> 外文期刊>Journal of water reuse and desalination >A novel concept to integrate energy recovery into potable water reuse treatment schemes
【24h】

A novel concept to integrate energy recovery into potable water reuse treatment schemes

机译:将能量回收整合到饮用水回用处理方案中的新概念

获取原文
获取外文期刊封面目录资料

摘要

Potable water reuse applications can provide a safe and sustainable water supply where conventional freshwater resources are limited. The objectives of this study were fourfold: (i) to analyse existing potable water reuse applications regarding operational characteristics and energy demands, (ii) to determine the theoretical energy potential of wastewater and identify opportunities for energy recovery, (iii) to define design requirements for potable water reuse schemes that integrate energy recovery and (iv) to propose strategies for more energy efficient potable water reuse schemes. Existing potable water reuse schemes commonly utilize conventional wastewater treatment processes including biological nutrient removal followed by advanced water treatment processes. While meeting high product water quality, these treatment schemes are characterized by relatively high specific energy demands (1.18 kWh/m3). Given that the theoretical energy potential of municipal wastewater is approximately two times higher (2.52 kWh/m3), opportunities exist to integrate energy recovery strategies. We propose three alternative potable water reuse schemes that integrate energy recovery from carbon via methane and nitrogen via either the coupled aerobic–anoxic nitrous decomposition operation process or partial nitritation/anammox. Compared to conventional potable water reuse schemes, the energy requirements of these schemes can be reduced by 7–29% and the overall energy balance by 38–80%.
机译:在常规淡水资源有限的情况下,饮用水回用应用可以提供安全,可持续的供水。这项研究的目标有四个方面:(i)分析有关运营特征和能源需求的现有饮用水回用应用;(ii)确定废水的理论能源潜力,并确定能量回收的机会;(iii)定义设计要求结合了能量回收的饮用水回用方案;(iv)提出提高能源效率的饮用水回用方案的策略。现有的饮用水回用方案通常利用传统的废水处理工艺,包括去除生物营养物,然后进行高级水处理工艺。这些处理方案在满足高产品水质的同时,还具有较高的比能量需求(1.18 kWh / m3)。考虑到市政废水的理论能源潜力大约是其两倍(2.52 kWh / m3),因此存在整合能源回收策略的机会。我们提出了三种可供选择的饮用水回用方案,这些方案通过好氧-缺氧的亚硝酸盐分解操作过程或部分硝化/厌氧氨结合了甲烷和氮气中碳的能量回收。与传统的饮用水回用方案相比,这些方案的能源需求可以减少7–29%,总能量平衡可以减少38–80%。

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