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Preparation of composite graphene hydrogels adsorbent with special-shaped ZnO and TiO2

机译:用异形ZnO和TiO2制备复合石墨烯水凝胶吸附剂

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摘要

Graphene-based hydrogels (GH) have exhibited prominent performances in wastewater treatment. Herein, Special-shaped ZnO tetrapods and TiO2 nanosheets were introduced to the preparation of GH via a one-step hydrothermal reduction method. The ZnO-GH and TiO2-GH composite hydrogel with a uniform 3D network structure and good mechanical properties can be used as an adsorbent for printing and dyeing wastewater. The optimum doping amount of ZnO and TiO2 in the composite hydrogel and the adsorption regularity to rhodamine B (RhB) with different concentrations were discussed. The cyclic adsorption performance and adsorption kinetics were briefly discussed. When the doping ratio of ZnO to graphene oxide (GO) is 5:8, ZnO-GH has the best adsorption rate, which is 71.7%. The best degradation rate appears at a ZnO doping ratio of 1:2, which also shows the best total removal rate of RhB of approximately 82.20%. When the doping ratio of TiO2 to GO is 3:4, the photocatalytic degradation rate is 30.3%, and the total removal rate of RhB reaches 99.1%, which indicates that RhB can be almost completely removed by TiO2-GH through adsorption and degradation. After five cycles, the adsorption capacity of ZnO-GH and TiO2-GH for the low RhB concentration is still good. The addition of ZnO and TiO2 improves not only the adsorption and degradation properties of the composite hydrogel but also its recycling performance as a result of the increase in mechanical stability.
机译:基于石墨烯的水凝胶(GH)在废水处理中表现出突出的性能。这里,通过一步水热还原方法将特殊形状的ZnO Tetrapods和TiO2纳米片引入制备GH中。具有均匀3D网络结构和良好机械性能的ZnO-GH和TiO2-GH复合水凝胶可用作印染废水的吸附剂。讨论了复合水凝胶中ZnO和TiO 2的最佳掺杂量,以及具有不同浓度的罗丹明B(RHB)的吸附规律性。简要讨论了循环吸附性能和吸附动力学。当ZnO至石墨烯氧化物(GO)的掺杂比为5:8时,ZnO-GH具有最佳吸附速率,即71.7%。最佳的降解速率以1:2的ZnO掺杂比出现,其还显示出大约82.20%的RHB的最佳总去除率。当TiO 2的掺杂比为3:4时,光催化降解速率为30.3%,RHB的总除去率达到99.1%,表明通过吸附和降解几乎可以通过TiO2-GH完全除去RHB。经过五个循环,ZnO-GH和TiO2-GH的吸附容量对于低RHB浓度仍然很好。由于机械稳定性的增加,添加ZnO和TiO 2的添加还改善了复合水凝胶的吸附和降解性能,而且还改善了其回收性能。

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