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The challenge of improving the efficiency of drinking water treatment systems in rural areas facing changes in the raw water quality

机译:提高农村地区饮用水处理系统效率的挑战

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Safely managed drinking water for all is the United Nations Sustainable Development Goal 6.1. Achieving this goal is a challenge in rural areas. A strong partnership between users of a water treatment system was critical to the success of community-scale technological change. In this study, the efficiency of a water treatment system was evaluated after the implementation of a technological change in a rural area. This research was carried out in a community in Ecuador, which before the change in technology had a treatment system composed of gravel pre-filtration and slow filtration. This system did not guarantee adequate water quality, due to a notable increase in the color and turbidity levels of raw water; in addition to the growing demand for water in recent years. A new conventional treatment system was implemented consisting of: coagulation, flocculation, sedimentation, rapid filtration and disinfection. All the modernization works were carried out on the same infrastructure that had served as gravel pre-filters. Before modernization, samples of raw water and treated water were collected for six months. After the changes carried out, samples of raw and treated water were also collected for another six months. The parameters analyzed were: turbidity, color, pH, total dissolved solids, residual chlorine, nitrates, sulfates, phosphates, chlorides, alkalinity, total hardness and iron. The values of all the parameters analyzed improved after the modernization, indicating that the changes made in the treatment plant were successful. As a result, a conventional treatment to make water potable in rural areas has become a robust process that can operate within a wide range of water quality, improving the quality and quantity of drinking water.
机译:全部安全管理饮用水是联合国可持续发展目标6.1。实现这一目标是农村地区的挑战。水处理系统的用户之间的强大伙伴关系对于社区规模技术变革的成功至关重要。在这项研究中,在农村技术变化的实施之后评估了水处理系统的效率。该研究在厄瓜多尔的一个社区中进行了,在技术变化之前,该系统具有由砾石预过滤和缓慢过滤组成的治疗系统。由于原水的颜色和浊度水平显着增加,该系统并不能保证充足的水质;除了近年来对水需求不断增长。实施了一种新的常规治疗系统,包括:凝血,絮凝,沉降,快速过滤和消毒。所有现代化工程都是在与砾石预过滤器担任的相同基础设施上进行的。在现代化之前,收集原水和处理水的样品六个月。在进行的变化后,还在六个月内收集原料和处理水的样品。分析的参数是:浊度,颜色,pH,总溶解固体,残余氯,硝酸盐,硫酸盐,磷酸盐,氯化物,碱度,总硬度和铁。在现代化之后分析的所有参数的值改善,表明治疗厂的变化成功。因此,在农村地区制造水饮用的常规治疗已成为一种强大的过程,可以在各种水质中运行,从而提高饮用水的质量和数量。

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