Inorganic Chemistry Department, Faculty of Science, University of Yaoundé I, P.O. Box 812, Yaoundé, Cameroon.
Department of Chemistry, Faculty of Science, University of Abéché, P.O. Box 130, Abéché, Chad.
Environ Monit Assess. 2018 Jun 29;190(7):443. doi: 10.1007/s10661-018-6824-y.
Chemical coagulation and adsorption, despite many drawbacks, are actually the main techniques used for the removal of pollutants from aqueous solution; however, these techniques are becoming ineffective due to the exponential increase in the amount and complexity of discharged pollutants; thus, the sludge treatment process became a more complex challenge. The present study focuses on the way to reduce the quantity of sludge formed during the removal of Ridomil Gold, a widely used pesticide-fungicide in agriculture. Results revealed that pre-treatment of initial waste solution by the gliding arc (Glidarc), a source of non-thermal plasma, leads to a significant reduction of the sludge formed during the coagulation treatment. For a 20-min pre-treated effluent Glidarc followed by chemical coagulation, there was a reduction in the volume of sludge formed in the order of 90 and 80% for alum and ferric sulfate coagulants respectively without reducing the performance of pesticide removal. Therefore, there is a positive synergism between treatment by chemical coagulation and plasma treatment. These results suggest that the Glidarc can be an effective solution for the reduction of sludge obtained during treatment by coagulation.
尽管化学混凝和吸附存在许多缺点,但实际上它们是去除水溶液中污染物的主要技术;然而,由于排放的污染物数量和复杂性呈指数级增长,这些技术变得越来越无效;因此,污泥处理过程成为一个更加复杂的挑战。本研究专注于减少 Ridomil Gold 去除过程中形成的污泥量的方法,Ridomil Gold 是一种在农业中广泛使用的农药杀菌剂。结果表明,通过滑动电弧(Glidarc)预处理初始废水,这是一种非热等离子体源,可显著减少混凝处理过程中形成的污泥量。对于预处理 20 分钟的废水,然后进行化学混凝,分别使用硫酸铝和硫酸铁作为混凝剂时,形成的污泥体积减少了 90%和 80%,而农药去除率没有降低。因此,化学混凝处理和等离子体处理之间存在积极的协同作用。这些结果表明,Glidarc 可以有效减少混凝处理过程中获得的污泥。