Water Resources Management and Wastewater Treatment in the Democratic Republic of Congo (D.R.C): Application of Galvanic Treatment, Results and Prospectives

Arthur Kaniki Tshamala, Mathieu Kayembe Musala, Gigi Kasongo Kalenga
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Abstract

The rapid industrial development and population growth increase the utilization of fresh water resulting in an increase of the amount of wastewater. Several Countries face a double challenge with regard to water resources, namely meeting the growing need for water for the population and treating the wastewater generated for application. The toxicity found in these water streams threatens the environment and human health. Hence the urgent need is to treat wastewater. The DRC is not immune from this threat. Its average population growth rate has exceeded the 3% and the number of industries it hosts continues to increase. The wastewater generated by this increasing pressure from urbanization and industrialization must be treated as required in the Congolese legal arsenal. Various factors need to be considered prior choosing the water treatment method. The choice must take into account the imperatives of the moment which are: modernization (local context) and sustainable development (international context). There are several wastewater treatments that are widely used for the removal of toxic elements such as ion exchange, reverse osmosis, chemical precipitation and electro-coagulation just to name a few. The most recent studies have shown that the galvanic technique can be used in the purification of water from domestic and industrial origin to meet drinking water standards. Various researchers have used this technique at laboratory and pilot scale demonstrating its cost-effectiveness as it uses no chemical reagents, consumes less energy and occupies only a small space for processing large flows. However, there are very few studies demonstrating the success of this treatment on an industrial scale. Therefore, this work seeks to understand and master the mechanisms that take place in the galvanic treatment. In addition, this study focuses on the development of a robust prototype that is adaptable to the needs of various users while at the same time being relatively cheap to meet the national needs.
刚果民主共和国(drc)的水资源管理和废水处理:电处理的应用、结果和前景
工业的快速发展和人口的增长增加了淡水的利用,导致废水量的增加。一些国家在水资源方面面临双重挑战,即满足人口对水日益增长的需要和处理产生的废水以供应用。在这些水流中发现的毒性威胁着环境和人类健康。因此,迫切需要对废水进行处理。刚果民主共和国也不能幸免于这种威胁。它的平均人口增长率已经超过了3%,它所拥有的工业数量也在不断增加。城市化和工业化带来的压力越来越大,产生的废水必须按照刚果法律的要求进行处理。在选择水处理方法之前,需要考虑各种因素。这种选择必须考虑到当前的当务之急,即现代化(当地情况)和可持续发展(国际情况)。有几种废水处理方法被广泛用于去除有毒元素,如离子交换、反渗透、化学沉淀和电絮凝等。最近的研究表明,电法技术可用于净化生活用水和工业用水,以达到饮用水标准。许多研究人员已经在实验室和中试规模上使用了这种技术,证明了它的成本效益,因为它不使用化学试剂,消耗更少的能量,只占用很小的空间来处理大流量。然而,很少有研究表明这种治疗方法在工业规模上取得了成功。因此,本研究旨在了解和掌握电处理过程中发生的机制。此外,本研究的重点是开发一种坚固的原型,可以适应各种用户的需求,同时相对便宜,以满足国家的需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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