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Inland Treatment of the Brine Generated from Reverse Osmosis Advanced Membrane Wastewater Treatment Plant Using Epuvalisation System

机译:使用Epuvalization系统对反渗透高级膜废水处理厂产生的盐水进行内陆处理

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摘要

The reverse osmosis (RO) brine generated from the Al-Quds University wastewater treatment plant was treated using an epuvalisation system. The advanced integrated wastewater treatment plant included an activated sludge unit, two consecutive ultrafiltration (UF) membrane filters (20 kD and 100 kD cutoffs) followed by an activated carbon filter and a reverse osmosis membrane. The epuvalisation system consisted of salt tolerant plants grown in hydroponic channels under continuous water flowing in a closed loop system, and placed in a greenhouse at Al-Quds University. Sweet basil (Ocimum basilicum) plants were selected, and underwent two consecutive hydroponic flowing stages using different brine-concentrations: an adaptation stage, in which a 1:1 mixture of brine and fresh water was used; followed by a functioning stage, with 100% brine. A control treatment using fresh water was included as well. The experiment started in April and ended in June (2012). At the end of the experiment, analysis of the effluent brine showed a remarkable decrease of electroconductivity (EC), PO43−, chemical oxygen demand (COD) and K+ with a reduction of 60%, 74%, 70%, and 60%, respectively, as compared to the influent. The effluent of the control treatment showed 50%, 63%, 46%, and 90% reduction for the same parameters as compared to the influent. Plant growth parameters (plant height, fresh and dry weight) showed no significant difference between fresh water and brine treatments. Obtained results suggest that the epuvalisation system is a promising technique for inland brine treatment with added benefits. The increasing of channel number or closed loop time is estimated for enhancing the treatment process and increasing the nutrient uptake. Nevertheless, the epuvalisation technique is considered to be simple, efficient and low cost for inland RO brine treatment.
机译:Al-Quds University废水处理厂产生的反渗透(RO)盐水使用蒸发处理系统进行了处理。先进的综合废水处理厂包括一个活性污泥单元,两个连续的超滤(UF)膜过滤器(截止阀为20 kD和100 kD截止),然后是一个活性炭过滤器和一个反渗透膜。紫化系统由耐盐植物组成,这些植物在闭环系统中的连续水流作用下,在水培通道中生长,并置于Al-Quds大学的温室中。选择甜罗勒(Ocimum basilicum)植物,并使用不同的盐水浓度使其经历两个连续的水培流动阶段:适应阶段,其中使用1:1的盐水和淡水的混合物;随后是一个运行阶段,其中包含100%的盐水。还包括使用淡水的对照处理。实验从4月开始,到2012年6月结束。在实验结束时,对废水盐水的分析表明,电导率(EC),PO4 3-,化学需氧量(COD)和K + 显着降低,与进水口相比,分别减少了60%,74%,70%和60%。与进水相比,对于相同的参数,对照处理的出水减少了50%,63%,46%和90%。淡水和盐水处理之间的植物生长参数(植物高度,鲜重和干重)没有显着差异。获得的结果表明,紫化系统是用于内陆盐水处理的有前途的技术,具有更多的好处。估计通道数或闭环时间的增加可增强处理过程并增加养分吸收。然而,对于内陆反渗透盐水处理,epuvalization技术被认为是简单,高效且低成本的。

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