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首页> 外文期刊>Journal of Environmental Management >Managing taste and odour metabolite production in drinking water reservoirs: The importance of ammonium as a key nutrient trigger
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Managing taste and odour metabolite production in drinking water reservoirs: The importance of ammonium as a key nutrient trigger

机译:在饮用水储层中管理品味和气味代谢产量:铵作为关键养分触发的重要性

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摘要

Taste and odour (T&O) compounds (most commonly 2-MIB and Geosmin) in drinking water are becoming an increasingly global problem for water management. Here, the trigger(s) for 2-MIB and Geosmin production were investigated in Plas Uchaf reservoir (North Wales, UK) with detailed water sample analysis between 2015 and 2016. Historical abstraction data from this reservoir and 4 reservoirs in Somerset (England, UK) were compared statistically using Self-Organising Map (SOM) analysis. In-reservoir measurements (2015-2016) revealed an 85% reduction in ammonium from the primary external loading source led to lower 2-MIB and Geosmin concentrations, with peak concentrations of 2-MIB declining from 60 to 21 ng(-1) and Geosmin declining from 140 to 18 ng(-1). No other measured water chemistry parameter showed a significant difference between years. The SOM results support the in-reservoir findings, revealing 2-MIB and Geosmin to be associated with high ammonium relative to nitrate for all 5 reservoirs. We conclude that ammonium is key for stimulating cyanobacterial productivity and production of T&O compounds. Whilst it is well understood that adequate availability of phosphorus is required for rapid growth in cyanobacteria, and hence should still be considered in management decisions, we suggest that monitoring sources and concentrations of ammonium is key for managing T&O outbreaks in drinking water reservoirs.
机译:饮用水中的味道和气味(T&O)化合物(最常见的2-MIB和Geosmin)正在成为水管理的越来越全球性问题。在这里,在PLAS U​​chaf储层(英国北威尔士,英国)中研究了2-MIB和地质素生产的触发器,2015年和2016年之间进行了详细的水样分析。来自该水库和4个水库的历史抽象数据在萨默塞特(英格兰)(英国)英国)使用自组织地图(SOM)分析进行统计进行统计比较。储层中的储层测量(2015-2016)显示,来自初级外部装载源的铵降低了85%的铵,导致较低的2-MIB和Geosmin浓度,峰值浓度为2-MIB从60-21ng(-1)下降(-1) Geosmin从140到18 ng下降(-1)。没有其他测量的水化学参数显示出几年之间的显着差异。 SOM结果支持储层发现,揭示2-MIB和Geosmin,相对于所有5个储存器的硝酸盐与高铵相关联。我们得出结论,氨是刺激蓝藻生产率和T&O化合物的产生的关键。虽然众所周知,磷的足够可用性是磷酸杆菌的快速生长所必需的,因此应考虑在管理决策中,我们建议监测来源和铵的浓度是管理饮用水储层中的T&O爆发的关键。

著录项

  • 来源
    《Journal of Environmental Management》 |2019年第15期|276-284|共9页
  • 作者单位

    Cardiff Univ Sch Earth & Ocean Sci Pk Pl Cardiff CF10 3AT S Glam Wales|Dwr Cymru Welsh Water Catchment Team Pentwyn Rd Nelson CF46 6LY Treharris Wales;

    Univ Bath Dept Architecture & Civil Engn Bath BA2 7AY Avon England;

    Dwr Cymru Welsh Water Catchment Team Pentwyn Rd Nelson CF46 6LY Treharris Wales;

    Univ Bath Dept Architecture & Civil Engn Bath BA2 7AY Avon England;

    Dwr Cymru Welsh Water Water Serv Sci Pentwyn Rd Nelson CF46 6LY Treharris Wales;

    Dwr Cymru Welsh Water Catchment Team Pentwyn Rd Nelson CF46 6LY Treharris Wales;

    Dwr Cymru Welsh Water Catchment Team Pentwyn Rd Nelson CF46 6LY Treharris Wales;

    Dwr Cymru Welsh Water Catchment Team Pentwyn Rd Nelson CF46 6LY Treharris Wales;

    Wessex Water Operat Ctr Claverton Rd Bath BA2 7WW Avon England;

    Bristol Water Plc Bridgwater Rd Bristol BS13 7AT Avon England;

    Univ Bath Dept Architecture & Civil Engn Bath BA2 7AY Avon England|7 Lakes Alliance 137 Main St Belgrade Lakes ME 04918 USA|Colby Coll Mayflower Hill Dr Waterville ME 04901 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    2-MIB; Geosmin; Taste and odour; Reservoir; Catchment management; Drinking water;

    机译:2-MIB;土工皂甙;味道和气味;水库;集水区管理;饮用水;

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