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Characterization of draw solution in forward osmosis process for the treatment of synthetic river water

机译:正渗透工艺处理合成河水过程中汲取溶液的表征

摘要

Forward osmosis is a process that depends on the concentration gradient and also osmotic potential to treat water which is currently, applicable in many industries. The main factor which affects the entire process of forward osmosis is the draw solution as draw solution acts as the driving force which drives water to past through semi-permeable membrane by means of concentration gradient. This research focuses on the characterization of draw solution in order to provide the optimum effect in treating river water in Malaysia. Apart from that, this research used synthesized river water which consists of 15mg/L of humic acid to replace river water as feed solution. This research was done so as to fill the inadequate amount of research done on forward osmosis where river water was used as feed solution. This research was conducted based on two parameters which will impact the water flux and performance of draw solution namely, concentration of draw solution and also osmotic pressure of draw solution. Thus, 4 different draw solutions made up of inorganic salt, fertilizers and organic salts were tested based on 5 different concentrations. This research also measures the humic acid rejection for each draw solution by using UV-vis spectrometer. Besides, reverse salt diffusion caused by different draw solution was also tested in terms of conductivity to determine the best performing draw solution. This research was conducted by using polyamide coated ultrafiltration membrane to separate the feed and draw solution and the permeation module was constructed as the preliminary laboratory work. Based on the results obtained, increase in molarity of draw solution is proportional to the increase in flux of water. The water flux obtained by using related formula showed the highest figure with calcium nitrate at 2.7 x 10^-4 m3/m2.s at 1mol/L, whereas the lowest flux obtained was by fructose with the reading of 2.529 x 10^-05 m3/m2.s. Besides that, calculation shows that the increase in draw solution concentration causes a decrease in humic acid rejection. However, the data recorded showed that every draw solutions at concentrations of 0.1mol/L to 1mol/L have good humic acid rejection at approximately 100%. On the other hand, sodium chloride showed higher reverse salt diffusion than calcium nitrate and the value of reverse salt diffusion increases as the molarity increases. Based on the discussions, it is found that this research showed calcium nitrate at 1mol/L as the best performing draw solution in treating river water. This research can further assist future research on forward osmosis of treating river water by narrowing down the type of draw solution that can provide best efficiency in treating river water and also show the category of draw solution which provides best efficiency.
机译:正向渗透是一种取决于浓度梯度以及渗透潜力的处理方法,该方法目前可用于许多行业。影响正渗透整个过程的主要因素是抽吸溶液,因为抽吸溶液作为驱动力,通过浓度梯度将水驱动通过半透膜流过。这项研究着重于汲取溶液的表征,以提供最佳的效果来处理马来西亚的河水。除此之外,本研究还使用了由15mg / L腐殖酸组成的合成河水代替河水作为饲料溶液。进行这项研究的目的是为了填补对以河水为饲料的正向渗透研究的不足。这项研究是基于两个将影响水通量和汲取溶液性能的参数进行的,即汲取溶液的浓度和汲取溶液的渗透压。因此,基于5种不同的浓度测试了由无机盐,肥料和有机盐组成的4种不同的汲取溶液。这项研究还通过使用紫外可见光谱仪测量了每种汲取溶液的腐殖酸抑制率。此外,还测试了由不同汲取溶液引起的盐分反向扩散,以确定最佳性能的汲取溶液。该研究是通过使用聚酰胺涂覆的超滤膜分离进料和汲取溶液进行的,并构建了渗透模块作为实验室的初步工作。根据获得的结果,汲取溶液摩尔浓度的增加与水通量的增​​加成比例。使用相关公式获得的水通量在硝酸钙为2.7 x 10 ^ -4 m3 / m2.s的情况下在1mol / L时显示最高数值,而在果糖中获得的最低通量为2.529 x 10 ^ -05立方米/平方米除此之外,计算表明,汲取溶液浓度的增加导致腐殖酸截留率降低。但是,记录的数据表明,浓度在0.1mol / L到1mol / L的每种汲取溶液都具有良好的腐殖酸抑制率,约为100%。另一方面,氯化钠显示出比硝酸钙更高的反向盐扩散,并且随着摩尔浓度的增加,反向盐扩散的值增加。根据讨论,发现该研究表明硝酸钙为1mol / L是处理河水中性能最好的汲取溶液。通过缩小可以提供最佳处理河水效率的汲取溶液的类型,并显示提供最佳效率的汲取溶液的种​​类,该研究可以进一步帮助将来对处理河水的正向渗透研究。

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    Yeo Ryan Whye Seong;

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