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Investigating the feasibility and the optimal location of pulsed ultrasound in surface water treatment schemes

机译:研究地表水处理方案中脉冲超声的可行性和最佳位置

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The deterioration of surface water quality due to extreme weather events and increasing human activities has exacerbated the common problems in drinking water production such as filtration fouling and DPBs formation. This in turn has urged for exploring alternative methods for the traditional treatment methods that are able to improve the removal of contaminants with minimal impact on environment and human health. In this study, the application of pulsed and continuous ultrasound for improving the quality of natural water with fresh natural organic matter (NOM) mainly driven from vegetation has been evaluated. The evaluation was performed using cost-effective and quick measurements such as specific UV-vis absorbance, CODMn, alkalinity and conductivity. The changes in the characteristics of NOM induced by ultrasound were used to develop a framework for evaluating ultrasound performance in improving conventional surface water treatment processes and to identify the best fit of ultrasound within the treatment scheme. Results of this study showed that pulsed ultrasound was as effective as or in some cases better than continuous ultrasound in improving water quality. According to the adapted assessment criteria supported by an extensive literature survey, the most effective location of ultrasound treatment within surface water treatment scheme was found to be prior to coagulation/flocculation.
机译:由于极端天气事件和人类活动增加导致的地表水质量恶化,加剧了饮用水生产中的常见问题,例如过滤污垢和DPB的形成。反过来,这也促使人们寻求传统治疗方法的替代方法,这些方法应能够改善对污染物的去除,并且对环境和人类健康的影响最小。在这项研究中,已经评估了脉冲和连续超声在提高主要由植被驱动的新鲜天然有机物(NOM)的天然水质量中的应用。使用具有成本效益的快速测量方法进行评估,例如特定的紫外线可见吸收率,CODMn,碱度和电导率。超声诱导的NOM特性的变化被用于开发评估改进常规地表水处理工艺中超声性能的框架,并确定超声在处理方案中的最佳配合。这项研究的结果表明,脉冲超声在改善水质方面与连续超声一样有效,或在某些情况下优于连续超声。根据广泛文献调查支持的适应性评估标准,在地表水处理方案中,超声波处理的最有效位置是在凝结/絮凝之前。

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