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Emerging mitigation needs and sustainable options for solving the arsenic problems of rural and isolated urban areas in Latin America - A critical analysis

机译:新兴的缓解需求和可持续的解决方案,用于解决拉丁美洲农村和偏远城市地区的砷问题-批判性分析

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摘要

In this work, current information about the contamination of ground- and surface-water resources by arsenic from geogenic sources in Latin America is presented together with possible emerging mitigation solutions. The problem is of the same order of magnitude as other world regions, such as SE Asia, but it is often not described in English. Despite the studies undertaken by numerous local researchers, and the identification of proven treatment methods for the specific water conditions encountered, no technologies have been commercialized due to a current lack of funding and technical assistance. Emerging, low-cost technologies to mitigate the problem of arsenic in drinking water resources that are suitable for rural and urban areas lacking centralized water supplies have been evaluated. The technologies generally use simple and low-cost equipment that can easily be handled and maintained by the local population. Experiences comprise (i) coagulation/filtration with iron and aluminum salts, scaled-down for small community-and household-scale-applications, (ii) adsorption techniques using low-cost arsenic sorbents, such as geological materials (clays, laterites, soils, limestones), natural organic-based sorbents (natural biomass), and synthetic materials. TiO_2-heterogeneous photo-catalysis and zerovalent iron, especially using nanoscale particles, appear to be promising emergent technologies. Another promising innovative method for rural communities is the use of constructed wetlands using native perennial plants for arsenic rhizofiltration. Small-scale simple reverse osmosis equipment (which can be powered by wind or solar energy) that is suitable for small communities can also be utilized. The individual benefits of the different methods have been evaluated in terms of (i) size of the treatment device, (ii) arsenic concentration and distribution of species, chemical composition and grade of mineralization in the raw water, (iii) guidelines for the remaining As concentration, (iv) economical constrains, (v) complexity of installation and maintenance, and infrastructure constraints (e.g. electricity needs).
机译:在这项工作中,将介绍有关拉丁美洲地源来源的砷污染地下水和地表水资源的最新信息以及可能出现的缓解措施。该问题与其他世界地区(例如,东南亚)的问题数量级相同,但通常不会用英语来描述。尽管有许多当地研究人员进行了研究,并针对遇到的特定水条件确定了经过验证的处理方法,但由于当前缺乏资金和技术援助,因此尚未将任何技术商业化。已经评估了减轻饮用水资源中砷问题的新兴低成本技术,这些技术适用于缺乏集中供水的农村和城市地区。这些技术通常使用简单且低成本的设备,这些设备可以很容易地被当地居民使用和维护。经验包括(i)用铁盐和铝盐进行混凝/过滤,按比例缩小以用于小型社区和家庭规模的应用;(ii)使用低成本砷吸附剂的吸附技术,例如地质材料(粘土,红土,土壤) ,石灰石),天然有机吸附剂(天然生物质)和合成材料。 TiO_2非均相光催化和零价铁,尤其是使用纳米级颗粒,似乎是很有前途的新兴技术。农村社区的另一种有希望的创新方法是使用人工多年生植物对砷进行根际过滤的人工湿地。也可以使用适用于小型社区的小型简单反渗透设备(可以通过风能或太阳能驱动)。根据以下方法评估了不同方法的个人益处:(i)处理设备的尺寸;(ii)砷浓度和物种分布,原水中的化学成分和矿化度;(iii)其余准则作为集中,(iv)经济上的限制,(v)安装和维护的复杂性以及基础设施的限制(例如,电力需求)。

著录项

  • 来源
    《Water Research》 |2010年第19期|p.5828-5845|共18页
  • 作者单位

    Institute of Applied Research, Karlsruhe University of Applied Sciences, Moltfeestrasse 30, 76133 Karlsruhe, Germany,Department of Earth Sciences, National Cheng Kung University, University Road, Tainan City 701, Taiwan,Institute of Applied Research, Karlsruhe University of Applied Sciences, Moltfeestrasse 30, 76133 Karlsruhe, Germany;

    Gerencia Quimica, Comisidn Nacional de Energfa Atdmica, Au. Gral. Paz 1499, San Martin, 1650, Prou. de Buenos Aires, Argentina,Instituto de Ingenien'a e Investigation Ambiental, Uniuersidad Nacional de General San Martin, Au. Gral. Paz 5445, 1650 San Martin,Prou. de Buenos Aires, Argentina;

    Department of Metallurgical and Materials Engineering, Federal Uniuersity of Minas Gerais, Av Antonio Carlos, 6627-Belo Horizonte-31.270.901, Minas Gerais, Brazil;

    Gerencia Qui'mica, Comisidn Nacional de Energfa Atdmica, Au. Gral. Paz 1499, San Martin, 1650, Prou. de Buenos Aires, Argentina;

    Departamento de Qui'mica, Facultad de Ciencias, Uniuersidad de Tarapacd, Casilla 7-D, Arica, Chile,Laboratorio de Inuestigaciones Medioambientales de Zonas Aridas, LIMZA, Centro de Inuestigaciones del Hombre en el Desierto,CIHDE/CODECITE, Uniuersidad de Tarapacd, Casilla 7-D, Arica, Chile;

    Instituto Mexicano de Tecnologi'a del Agua, Paseo Cuauhndhuac 8532, Col Progreso, Jiutepec, Morelos 62550, Mexico;

    Institute of Applied Research, Karlsruhe University of Applied Sciences, Moltfeestrasse 30, 76133 Karlsruhe, Germany;

    Centro de Investigation en Materiales Auanzados (CIMAV), Aue. Miguel de Cervantes 120, Complejo Industrial Chihuahua, C.P. 31109Chihuahua, Chih., Mexico;

    Institute of Applied Research, Karlsruhe University of Applied Sciences, Moltfeestrasse 30, 76133 Karlsruhe, Germany;

    Institute of Applied Research, Karlsruhe University of Applied Sciences, Moltfeestrasse 30, 76133 Karlsruhe, Germany;

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

    arsenic; water resources; Latin America;

    机译:砷;水资源;拉丁美洲;
  • 入库时间 2022-08-17 13:49:45

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