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Interlocked Dithi-Magnetospheres-Decorated MoS2 Nanosheets as Molecular Sieves and Traps for Heavy Metal Ions

机译:联锁Dithi-Magnetospheres-Decorated二硫化钼Nanosheets分子筛和陷阱重金属离子

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摘要

Water remediation at minimal cost is the need of the day, as freshwater aquifers are declining at an alarming rate. To address this challenge, composite membranes is herein developed using a unique reversible addition-fragmentation chain transfer (RAFT)-synthesized copolymer as the active surface layer, a commercial reverse osmosis (RO) membrane serving as the support layer, and foamy molybdenum disulfide (MoS2) nanosheets decorated with dithi-magnetospheres acting as the interlayer. This strategy isadopted because the commercial RO membrane is effective toward desalination but is susceptible to fouling and biofilm. The foamy interlayer MoS2 nanosheets decorated with dithi-magnetospheres in the composite membranes minimize the additional resistance, both in terms of flow and also facilitate reversible action toward heavy metal removal. Further, the composite membranes exhibit a 7-log reduction in bacterial colonies for both gram-positive and gram-negative strains. A stringent and targeted action is also observed in terms of intracellular reactive oxygen species generation. In addition, excellent reversible antifouling with 98.5% flux retention ratio is observed. The average lead (II) removal at 50 ppm is 95.3% and the average arsenic (III) removal at 50 ppm is observed to be 96%. Thus, these membranes could be the next generation to advance sustainable systems for water remediation.
机译:水在最小成本的需要修复天,淡水含水层正在下降以惊人的速度。复合膜是所开发的使用独特的可逆加成断裂链转让(筏)合成共聚物活跃的表层,商业逆转渗透(RO)膜作为支持层,泡沫二硫化钼(监理)nanosheets装饰着dithi-magnetospheres夹层。因为商业RO膜是有效的对海水淡化,但容易受到污染和生物膜。与dithi-magnetospheres装饰复合膜减少额外的抵抗,无论是流也促进对重金属的可逆的行动去除。两7-log减少细菌菌落革兰氏阳性和革兰氏阴性菌株。严格的和有针对性的行动也观察到细胞内活性氧的一代。防污通量保留比例为98.5%观察到。是95.3%,平均除砷(III)观察50 ppm是96%。膜可能是下一代可持续的水净化系统。

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