首页> 外文期刊>Water Research >An integral approach to sludge handling in a WWTP operated for EBPR aiming phosphorus recovery: Simulation of alternatives, LCA and LCC analyses
【24h】

An integral approach to sludge handling in a WWTP operated for EBPR aiming phosphorus recovery: Simulation of alternatives, LCA and LCC analyses

机译:废水处理厂针对EBPR进行磷回收的一种综合方法:模拟替代品,LCA和LCC分析

获取原文
获取原文并翻译 | 示例

摘要

As phosphorus is a non-renewable resource mainly used to produce fertilizers and helps to provide food all over the world, the proper management of its reserves is a global concern since it is expected to become scarcer in the near future.In this work we assessed two different sludge line configurations aiming for P extraction and recovery before anaerobic digestion and compared them with the classical configuration. This study has been performed by simulation with the model BNRM2 integrated in the software package DESASS 7.1. Configuration 1 was based on the production of a PO4-enriched stream from sludge via elutriation in the primary thickeners, while Configuration 2 was based on the WASSTRIP (R) process and its PO4-enriched stream was mechanically obtained with dynamic thickeners. In both alternatives recovery was enhanced by promoting poly-phosphate (poly-P) extraction under anaerobic conditions, for which both configurations were fully evaluated in a full-scale WWTP. Both were also optimized to maximize phosphorus extraction. Their costs and life cycles were also analysed.The novelty of this research lies in the lack of literature about the integral evaluation of pre-anaerobic digestion P recovery from wastewaters. This study included a holistic approach and an optimization study of both alternatives plus their economic and environmental aspects.In Configuration 1, the PO4-P load in the recovery stream reached 43.1% of the total influent P load and reduced uncontrolled P-precipitation in the sludge line up to 52.9%. In Configuration 2, extraction was 48.2% of the influent P load and it reduced precipitation by up to 60.0%. Despite Configuration 1's lower phosphorus recovery efficiency, it had a 23.0% lower life cycle cost and a 14.2% lower global warming impact per hm(3) of treated influent than Configuration 2. Configuration 1 also reduced the TAEC by 17.6% and global warming impact by 2.0% less than Configuration 0. (C) 2020 Elsevier Ltd. All rights reserved.
机译:由于磷是一种不可再生资源,主要用于生产肥料并有助于在世界范围内提供食物,因此对其储量的适当管理已成为全球关注的问题,因为预计在不久的将来它将变得稀缺。两种不同的污泥生产线配置,旨在在厌氧消化之前提取和回收磷,并将其与经典配置进行比较。通过使用集成在软件包DESASS 7.1中的BNRM2模型进行仿真来完成此研究。配置1基于污泥在初级浓缩器中通过淘洗生产的富含PO4的物流,而配置2基于WASSTRIP(R)工艺,其动态富集器通过机械方式获得了富含PO4的物流。在这两种选择中,通过促进在厌氧条件下的多磷酸盐(poly-P)提取可提高回收率,这两种配置均已在全面污水处理厂中得到了充分评估。两者都进行了优化,以最大限度地提高磷的提取率。还分析了它们的成本和生命周期。这项研究的新颖之处在于,缺乏对废水中厌氧消化前P回收率进行整体评估的文献。这项研究包括整体方案和对这两种替代方案及其经济和环境方面的优化研究。在配置1中,回收流中的PO4-P负荷达到了总进水P负荷的43.1%,并减少了P4中沉淀物的不受控制的P沉淀。污泥线达52.9%。在配置2中,提取量为进水P负荷的48.2%,最多可减少60.0%的沉淀。尽管配置1的磷回收效率较低,但与配置2相比,它的生命周期成本降低了23.0%,每hm(3)的处理过的进水口的全球变暖影响降低了14.2%。配置1还将TAEC降低了17.6%,并降低了全球变暖的影响比配置0低2.0%。(C)2020 Elsevier Ltd.保留所有权利。

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