Fareed Hasan, Jang Kyunghoon, Lee Woojin, Kim In S, Han Seunghee
School of Earth Sciences and Environmental Engineering, Gwangju Institute of Science and Technology (GIST), Gwangju, 61005, Republic of Korea; Research Center for Innovative Energy and Carbon Optimized Synthesis for Chemicals (Inn-ECOSysChem), Gwangju Institute of Science and Technology (GIST), Gwangju, 61005, Republic of Korea.
School of Earth Sciences and Environmental Engineering, Gwangju Institute of Science and Technology (GIST), Gwangju, 61005, Republic of Korea; Global Desalination Research Center, Gwangju Institute of Science and Technology (GIST), Gwangju, 61005, Republic of Korea.
Chemosphere. 2023 Jun;326:138461. doi: 10.1016/j.chemosphere.2023.138461. Epub 2023 Mar 20.
A novel tortuous brick-and-mortar structure utilizing intercalation of polyvinyl alcohol (PVA) on sulfonated graphene oxide (SGO) membranes was specifically tailored for brine treatment by pervaporation to ensure excessive resistance to silica scaling and organic fouling, as well as ultrafast water transport without compromising salt rejection. The synthesized SGO membrane showed a smoother surface morphology, improved zeta potential, and a higher hydration capacity than the graphene oxide (GO) membrane. Further intercalation of PVA through glutaraldehyde (GA) crosslinking, confirmed by Fourier transform infrared spectroscopy and X-ray diffraction analysis, conferred increased cohesiveness, and the SGO-PVA-GA membrane was therefore able to withstand ultrasonication tests without any erosion of the coating layer. According to a pervaporative desalination test, the SGO-PVA-GA membrane exhibited 62 kg m h of permeate flux, with an extraordinary salt rejection of 99.99% for a 10 wt% NaCl feed solution at 65 °C. The 72 h organic fouling, silica scaling, and combined fouling and scaling tests proved that the SGO-PVA-GA membrane sustains a stable flux with less scaling and fouling than the GO-PVA-GA membrane, attributable to dense surface negative charges and great hydration capacities caused by sulfonic acid. Thus, the SGO-PVA-GA membrane offers superlative advantages for long-term brine treatment by pervaporation, related to its ability to withstand silica scaling and organic fouling.
一种新型的曲折实体结构,通过在磺化氧化石墨烯(SGO)膜上嵌入聚乙烯醇(PVA),专门为渗透汽化盐水处理量身定制,以确保对二氧化硅结垢和有机污垢具有极高的抗性,以及在不影响脱盐率的情况下实现超快的水传输。合成的SGO膜比氧化石墨烯(GO)膜具有更光滑的表面形态、改善的zeta电位和更高的水合能力。通过傅里叶变换红外光谱和X射线衍射分析证实,通过戊二醛(GA)交联进一步嵌入PVA,增强了内聚性,因此SGO-PVA-GA膜能够承受超声测试,而涂层没有任何侵蚀。根据渗透汽化脱盐测试,SGO-PVA-GA膜在65°C下对10 wt% NaCl进料溶液的渗透通量为62 kg m h,脱盐率高达99.99%。72小时的有机污垢、二氧化硅结垢以及联合污垢和结垢测试证明,SGO-PVA-GA膜比GO-PVA-GA膜维持更稳定的通量,结垢和污垢更少,这归因于磺酸引起的致密表面负电荷和高水合能力。因此,SGO-PVA-GA膜在通过渗透汽化进行长期盐水处理方面具有卓越优势,这与其抵抗二氧化硅结垢和有机污垢的能力有关。