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Scenario, perspectives and mechanism of arsenic and fluoride Co-occurrence in the groundwater: A review

机译:地下水中砷和氟化物共发生的情景,观点和机制:综述

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摘要

Arsenic (As) and fluoride (F-) are the two most conspicuous contaminants, in terms of distribution and menace, in aquifers around the world. While the majority of studies focus on the individual accounts of their hydro-geochemistry, the current work is an effort to bring together the past and contemporary works on As and E co-occurrence. Co-occurrence in the context of As and F- is a broad umbrella term and necessarily does not imply a positive correlation between the two contaminants. In arid oxidized aquifers, healthy relationships between As and F- is reported owing desorption based release from the positively charged (hydr)oxides of metals like iron (Fe) under alkaline pH. In many instances, multiple pathways of release led to little or no correlation between the two, yet there were high concentrations of both at the same time. The key influencer of the strength of the co-occurrence is seasonality, environment, and climatic conditions. Besides, the existing primary ion and dissolved organic matter also affect the release and enrichment of As-F- in the aquifer system. Anthropogenic forcing in the form of mining, irrigation return flow, extraction, recharge, and agrochemicals remains the most significant contributing factor in the co-occurrence. The epidemiological indicate that the interface of these two interacting elements concerning public health is considerably complicated and can be affected by some uncertain factors. The existing explanations of interactions between As-F are indecisive, especially their antagonistic interactions that need further investigation. "Multi-contamination perspectives of groundwater" is an essential consideration for the overarching question of freshwater sustainability. (C) 2020 Elsevier Ltd. All rights reserved.
机译:砷(AS)和氟化物(F-)是世界各地含水层的分布和威胁中最具显着的污染物。虽然大多数研究侧重于其水力地球化学的个体账户,但目前的工作是努力将过去和当代的作品汇集在一起​​和e共同发生。在AS和F-中的情况下的共同发生是宽伞术语,并不一定暗示两种污染物之间的正相关。在干旱的氧化含水层中,由于碱性pH下的铁(Fe)如铁(Fe)如铁(Fe)的剥离(氢)氧化物的释放,因此报道了AS和F-之间的健康关系。在许多情况下,释放的多个途径导致两者之间几乎没有任何相关性,但同时两者均浓度高。共同实力强度的关键影响者是季节性,环境和气候条件。此外,现有的初级离子和溶解的有机物也影响含水层系统中AS-F的释放和富集。人为迫使采矿,灌溉返回流动,提取,充电和农业化学品的形式迫使仍然是共同发生的最重要的贡献因素。流行病学表明,这两个关于公共卫生的两个交互要素的界面具有很大的复杂性,并且可能受到一些不确定因素的影响。 AS-F之间的相互作用的现有解释是犹豫不决的,特别是他们需要进一步调查的拮抗互动。 “地下水的多污染观点”是对淡水可持续性的总体问题的基本考虑因素。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2020年第6期|126126.1-126126.21|共21页
  • 作者单位

    Indian Inst Technol Discipline Earth Sci Room 336A Block 5 Gandhinagar 382355 Gujarat India;

    Assam Royal Global Univ Dept Environm Sci Gauhati 781035 Assam India;

    Indian Inst Technol Discipline Earth Sci Room 336A Block 5 Gandhinagar 382355 Gujarat India;

    Indian Inst Technol Discipline Earth Sci Room 336A Block 5 Gandhinagar 382355 Gujarat India;

    Indian Inst Technol Dept Civil Engn Gauhati 781039 Assam India;

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

    Arsenic; Fluoride; Groundwater; Co-occurrence; Correlation; Health;

    机译:砷;氟化物;地下水;共同发生;相关;健康;

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