Ashok Kumar S, Moncarmel Johanna N, Beula Jenefer V, Srinivasan G, Kanimozhi G, Yuvarani G, Ridhamsha G, Prabu K, Govindaradjane S, Jayaraman Sundaramurthy
Department of Chemical Engineering, Pondicherry Engineering College, Pondicherry, India.
Department of Physics, Pondicherry University, Pondicherry, India.
J Environ Health Sci Eng. 2021 Mar 16;19(1):515-529. doi: 10.1007/s40201-021-00624-x. eCollection 2021 Jun.
In this article, monomers (tannic acid (TA) and m- phenylenediamine (MPD)) were used in the fabrication of a novel PES based thin-film composite nanofiltration (TFC-NF) membrane for the treatment of a common effluent treatment plant (CETP) of textile industrial wastewater.
PES support sheets and TFC layers were fabricated via non-solvent induced phase inversion and in-situ interfacial polymerization (IP) process. The ultra-thin active layer was synthesized via the IP process with monomers such as tannic acid (TA) and m- phenylenediamine (MPD). T and M series membranes correspond to (PES/x wt% TA, x = 2, 4, 6) as T1, T2, T3 -TA and (PES/x wt% MPD, x = 2, 4, 6) as M1, M2, M3-MPD respectively. M0 corresponds to PES which is the virgin membrane.
The chemical structure, surface morphology, surface roughness and surface properties were explored using fourier transform infrared (FTIR) spectroscopy, field emission scanning electron microscopy (FESEM), atomic force microscopy (AFM) and contact angle, respectively. The filtration performance of the thin-film composite nanofiltration (TFC-NF) membranes was investigated by various properties like pure water flux, salt rejection, porosity, mean pore radius and antifouling analysis.
T1-TA membrane showed better water permeability, high salt rejection and better industrial effluent rejection with 94.4% of TDS that are suitable for industrial reuse and agricultural irrigation. Moreover, for T1-TA membrane, the water flux, porosity, mean pore radius, salt rejection, surface roughness and contact angle of 43.5lm , 47.1%, 16.7nm, 72.7%, 11.7nm and 41.48°was achieved respectively that was found to be higher than that of all the other fabricated membranes. Further, the rejection efficiency rate of textile effluent characteristics such as pH, turbidity, TDS, alkalinity, total hardness, BOD and COD were also achieved with maximum deduction in the T1-TA TFC-NF membrane compared to the M0-Virgin PES membrane. From the results, it can be confirmed that the T1-TA membrane significantly reduced the alkalinity, total hardness, BOD and COD rejections of 78%, 77.3%, 58.5% and 67.5% respectively, present in the effluent. Water flux recovery ratio (FRR) was improved from 74.6% for M0-Virgin PES membrane to 94.8% for T1-TA membrane. The modified TFC-NF membranes especially T1-TA, had better anti-fouling property and excellent hydrophilicity than the unmodified M0-Virgin PES membrane.
The online version contains supplementary material available at 10.1007/s40201-021-00624-x.
在本文中,单体(单宁酸(TA)和间苯二胺(MPD))被用于制备一种新型的聚醚砜(PES)基薄膜复合纳滤(TFC-NF)膜,用于处理纺织工业废水的普通污水处理厂(CETP)废水。
PES支撑片和TFC层通过非溶剂诱导相转化和原位界面聚合(IP)工艺制备。超薄活性层通过IP工艺与单宁酸(TA)和间苯二胺(MPD)等单体合成。T系列和M系列膜分别对应(PES/x wt% TA,x = 2、4、6),即T1、T2、T3 - TA,以及(PES/x wt% MPD,x = 2、4、6),即M1、M2、M3 - MPD。M0对应于原始的PES膜。
分别使用傅里叶变换红外(FTIR)光谱、场发射扫描电子显微镜(FESEM)、原子力显微镜(AFM)和接触角来探究化学结构、表面形态、表面粗糙度和表面性质。通过纯水通量、盐截留率、孔隙率、平均孔径和抗污染分析等各种性能来研究薄膜复合纳滤(TFC-NF)膜的过滤性能。
T1-TA膜表现出更好的水渗透性、高盐截留率以及对工业废水的良好截留率,对总溶解固体(TDS)的截留率为94.4%,适用于工业回用和农业灌溉。此外,对于T1-TA膜,其水通量、孔隙率、平均孔径、盐截留率、表面粗糙度和接触角分别达到了43.5lm 、47.1%、16.7nm、72.7%、11.7nm和41.48°,高于所有其他制备的膜。此外,与M0原始PES膜相比,T1-TA TFC-NF膜对纺织废水特征如pH值、浊度、TDS、碱度、总硬度、生化需氧量(BOD)和化学需氧量(COD)的截留效率也最高。从结果可以确认,T1-TA膜显著降低了废水中分别存在的碱度、总硬度、BOD和COD截留率,分别为78%、77.3%、58.5%和67.5%。水通量恢复率(FRR)从M0原始PES膜的74.6%提高到T1-TA膜的94.8%。改性的TFC-NF膜,尤其是T1-TA,比未改性的M0原始PES膜具有更好的抗污染性能和优异的亲水性。
在线版本包含可在10.1007/s40201-021-00624-x获取的补充材料。