首页> 外文期刊>Journal of Applied Phycology >Economic construction and operation of hectare-scale wastewater treatment enhanced pond systems
【24h】

Economic construction and operation of hectare-scale wastewater treatment enhanced pond systems

机译:公顷规模废水处理增强型池塘系统的经济建设和运营

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Enhanced pond systems (EPS) are an effective and economic upgrade option for conventional wastewater treatment ponds providing improved natural disinfection and nutrient removal. Moreover, wastewater nutrients are recovered as harvested algal biomass for beneficial use as fertiliser, feed or biofuel feedstock. Low-cost construction and operation are crucial factors for the adoption of EPS. This paper presents novel and economic design, construction and operation methods for an earthen hectare-scale EPS treating domestic wastewater at the Cambridge Wastewater Treatment Plant, New Zealand. The system consisted of: the existing Anaerobic Pond to settle and anaerobically digest wastewater solids that was retrofitted with a cover to capture the biogas, two 1-hectare HRAPs to aerobically treat and remove nutrients from the anaerobic pond effluent through the production of algal biomass, algal harvest ponds to settle and concentrate the algal biomass which was then pumped into a covered digester pond to recover energy as biogas and nutrients as a concentrated digestate. Further effluent polishing was provided by maturation ponds and rock filters to achieve higher quality effluent. All of the ponds were of earthen construction and were made within existing or disused conventional wastewater treatment ponds. Cost-effective earthen pond construction combined with the use of protective geotextile and geomembrane liners, geomembrane covers, painted steel paddlewheels and precast concrete carbonation sumps enable economic implementation of EPS for energy-efficient and effective wastewater treatment as well as nutrient recovery and energy production for the local community.
机译:增强型池塘系统(EPS)是常规废水处理池塘的有效且经济的升级选项,可改善自然消毒和营养去除率。此外,废水养分作为收获的藻类生物质被回收,可有益地用作肥料,饲料或生物燃料原料。低成本的建设和运营是采用EPS的关键因素。本文介绍了一种新的,经济的设计,构造和操作方法,用于在新西兰剑桥废水处理厂处理一公顷土制EPS。该系统包括:现有的厌氧池,用于沉降和厌氧消化废水固体,并对其进行了翻新,以覆盖沼气;两个1公顷的HRAP,可厌氧地通过生产藻类生物质从厌氧池废水中去除营养,藻类收获池可以沉淀和浓缩藻类生物质,然后将其泵入有盖的消化池中,以回收沼气中的能量和浓缩消化液中的养分。成熟池和岩石过滤器提供了进一步的废水抛光,以实现更高质量的废水。所有的池子都是土制的,是在现有的或废弃的常规废水处理池中建造的。具有成本效益的土池建设,结合使用防护性土工布和土工膜衬板,土工膜覆盖层,涂漆的钢制桨轮和预制混凝土碳化池,可经济地实施EPS,以实现节能高效的废水处理以及养分回收和能源生产当地社区。

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