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Fabrication of anion exchanger resinano-CdS composite photocatalyst for visible light RhB degradation

机译:用于可见光RhB降解的阴离子交换树脂/纳米CdS复合光催化剂的制备

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摘要

A novel nanocomposite photocatalyst, D201-CdS beads (0.70-0.80mm in diameter), was fabricated for visible light (λ > 420nm) photodegradation of Rhodamine B (RhB). Sphalerite CdS nanoparticles (5-15nm) were distributed within the outer layer of D201 for favorable visible light permeation. Ultraviolet-visible spectral changes of RhB solution indicated that efficient RhB photodegradation was achieved by D201-CdS under visible light irradiation. More attractively, negligible photocorrosion of the hybrid catalyst D201-CdS was demonstrated by the constant photodegradation efficiency and negligible CdS leaching during five-cycle batch runs. Besides the higher stability, D201-CdS is superior to CdS in terms of separation. The used nanocomposite can be readily separated from solutions by a simple filtration while a high speed centrifugation is needed for the separation of CdS. The above results suggested that the resultant D201-CdS nanocomposite catalyst is promising for practical application in environmental remediation
机译:制备了新型纳米复合光催化剂D201-CdS珠(直径0.70-0.80mm),用于可见光(λ> 420nm)对罗丹明B(RhB)的光降解。闪锌矿CdS纳米粒子(5-15nm)分布在D201的外层内,有利于可见光的渗透。 RhB溶液的紫外-可见光谱变化表明,D201-CdS在可见光照射下实现了有效的RhB光降解。更有吸引力的是,杂化催化剂D201-CdS的光腐蚀可忽略不计,这是通过在五周期分批运行过程中恒定的光降解效率和可忽略的CdS浸出证明的。除了更高的稳定性外,D201-CdS在分离方面还优于CdS。通过简单的过滤可以很容易地从溶液中分离出用过的纳米复合材料,而分离CdS则需要高速离心。以上结果表明,所得的D201-CdS纳米复合催化剂有望在环境修复中得到实际应用。

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