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工程化的光滑表面以减轻膜蒸馏中的石膏结垢,用于处理高盐度工业废水。

Engineered Slippery Surface to Mitigate Gypsum Scaling in Membrane Distillation for Treatment of Hypersaline Industrial Wastewaters.

机构信息

Department of Chemical and Environmental Engineering , Yale University , New Haven , Connecticut 06520-8286 , United States.

出版信息

Environ Sci Technol. 2018 Dec 18;52(24):14362-14370. doi: 10.1021/acs.est.8b04836. Epub 2018 Nov 28.

Abstract

Membrane distillation (MD) is an emerging thermal desalination process, which can potentially treat high salinity industrial wastewaters, such as shale gas produced water and power plant blowdown. The performance of MD systems is hampered by inorganic scaling, particularly when treating hypersaline industrial wastewaters with high-scaling potential. In this study, we developed a scaling-resistant MD membrane with an engineered "slippery" surface for desalination of high-salinity industrial wastewaters at high water recovery. A polyvinylidene fluoride (PVDF) membrane was grafted with silica nanoparticles, followed by coating with fluoroalkylsilane to lower the membrane surface energy. Contact angle measurements revealed the "slippery" nature of the modified PVDF membrane. We evaluated the desalination performance of the surface-engineered PVDF membrane in direct contact membrane distillation using a synthetic wastewater with high gypsum scaling potential as well as a brine from a power plant blowdown. Results show that gypsum scaling is substantially delayed on the developed slippery surface. Compared to the pristine PVDF membrane, the modified PVDF membranes exhibited a stable MD performance with reduced scaling potential, demonstrating its potential to achieve high water recovery in treatment of high-salinity industrial wastewaters. We conclude with a discussion of the mechanism for gypsum scaling inhibition by the engineered slippery surface.

摘要

膜蒸馏(MD)是一种新兴的热脱盐工艺,它可以有效地处理高盐度的工业废水,如页岩气生产水和电厂排污。MD 系统的性能受到无机结垢的影响,特别是在处理高结垢潜力的高盐度工业废水时。在本研究中,我们开发了一种具有工程化“光滑”表面的抗结垢 MD 膜,用于在高水回收率下处理高盐度工业废水的脱盐。通过在聚偏二氟乙烯(PVDF)膜上接枝二氧化硅纳米颗粒,然后涂覆氟烷基硅烷来降低膜表面能,从而实现了这种膜的制备。接触角测量表明了改性后的 PVDF 膜的“光滑”特性。我们评估了表面工程化的 PVDF 膜在使用具有高石膏结垢潜力的合成废水和电厂排污进行直接接触膜蒸馏中的脱盐性能。结果表明,在开发的光滑表面上,石膏结垢得到了显著的延迟。与原始的 PVDF 膜相比,改性的 PVDF 膜表现出稳定的 MD 性能和降低的结垢潜力,这表明它在处理高盐度工业废水时具有实现高水回收率的潜力。最后,我们讨论了工程化光滑表面抑制石膏结垢的机制。

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