首页> 外文期刊>The Science of the Total Environment >River toxicity assessment using molecular biosensors: Heavy metal contamination in the Turag-Balu-Buriganga river systems, Dhaka, Bangladesh
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River toxicity assessment using molecular biosensors: Heavy metal contamination in the Turag-Balu-Buriganga river systems, Dhaka, Bangladesh

机译:使用分子生物传感器的毒性评估:Turag-Balu-Buriganga River Systems,Dhaka,Bangladesh中的重金属污染

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摘要

Pollution in rapidly urbanising cities and in delta systems is a serious problem that blights the lives and livelihoods of millions of people, damaging and restricting potable water supply and supplies to industry (Whitehead et al, 2015, 2018). Employing new technology based on luminescent molecular biosensors, the toxicity in the rivers around Dhaka in Bangladesh, namely the Turag, Tongi, Balu and Buriganga, has been assessed. Samples taken at 36 sites during medium and low flow conditions and during the Bishwa Ijtema Festival revealed high levels of cell toxicity, as well as high concentrations of metals, particularly aluminium, cadmium, chromium, iron, zinc, lithium, selenium and nickel. Chemical analysis also revealed low dissolved oxygen levels and anoxic conditions in the rivers at certain sites. The bacterial molecular biosensors were demonstrated to be fast, with results in 30 min, robust and a highly sensitive method for the assessment of water toxicity in the field. Furthermore, the biosensor toxicity analysis correlated with the metals data, and a multivariate regression relationship was developed relating toxicity to key metals, such a selenium, zinc and chromium. The resulting model has been validated against split samples and the Bishwa Ijtema Festival data. The combination of modelling and the molecular biosensor technology provides a new approach to detecting and managing pollution in urban river systems.
机译:迅速城市和三角洲系统的污染是一个严重的问题,掩盖了数百万人的生命和生计,损害和限制了行业的饮用水和用品(Whitehead等,2018,2018)。采用基于发光分子生物传感器的新技术,孟加拉国达卡周边河流毒性,即自动变形,刁才,巴鲁和Buriganga,已经评估。在中等和低流量条件下的36个位点以及Bishwa Ijtema节的样品显示出高水平的细胞毒性,以及高浓度的金属,特别是铝,镉,铬,铁,锌,锂,硒和镍。化学分析还揭示了某些部位河流中的低溶解氧水平和缺氧条件。将细菌分子生物传感器证明快速,结果在30分钟内得到30分钟,稳定性和高度敏感的方法,用于评估该领域的水毒性。此外,与金属数据相关的生物传感器毒性分析以及多元回归关系的毒性与关键金属相关,如硒,锌和铬。由此产生的模型已针对分离样本和Bishwa IJTEMA节日数据验证。建模和分子生物传感器技术的组合为城市河流系统中的检测和管理污染提供了一种新的方法。

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  • 来源
    《The Science of the Total Environment》 |2020年第1期|134760.1-134760.10|共10页
  • 作者单位

    Oxford Molecular Biosensors Centre for Innovation and Enterprise Begbroke Oxford 0X5 1PF UK;

    School of Geography and the Environment University of Oxford Oxford OX1 3QY UK Oxford Molecular Biosensors Centre for Innovation and Enterprise Begbroke Oxford 0X5 1PF UK;

    School of Geography and the Environment University of Oxford Oxford OX1 3QY UK;

    Institute of Water and Flood Management (IWFM) Bangladesh University of Engineering and Technology (BUET) Dhaka 1000 Bangladesh;

    Geology Department State University of New York College at Cortland Cortland NY 13045 USA;

    School of Geography and the Environment University of Oxford Oxford OX1 3QY UK;

    Institute of Water and Flood Management (IWFM) Bangladesh University of Engineering and Technology (BUET) Dhaka 1000 Bangladesh;

    Institute of Water and Flood Management (IWFM) Bangladesh University of Engineering and Technology (BUET) Dhaka 1000 Bangladesh;

    Department of Engineering Science University of Oxford Parks Road Oxford OX1 3PF UK;

    Department of Engineering Science University of Oxford Parks Road Oxford OX1 3PF UK;

    School of Geography and the Environment University of Oxford Oxford OX1 3QY UK;

    Department of Earth Sciences University of Oxford Parks Road OX1 3AN UK;

    School of Geography and the Environment University of Oxford Oxford OX1 3QY UK;

    United Nations Human Settlements Programme Waste Management and Sanitation Division Palais des Nations Avenue de la Paix 8-14 1211 Geneve Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biosensors; Toxicity; Bangladesh; Buriganga River; Metals; Pollution; Bishwa Ijtema;

    机译:生物传感器;毒性;孟加拉国;Buriganga河;金属;污染;Bishwa ijtema.;

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