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石墨烯气凝胶的制备及其对有机溶剂的吸附 被引量:2
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作者 王敬楠 于珊珊 +1 位作者 李程 崔新安 《化工环保》 CAS CSCD 北大核心 2023年第3期387-395,共9页
以试剂级和工业级氧化石墨烯为原料,采用还原自组装法制备了试剂级石墨烯气凝胶(GA)和工业级石墨烯气凝胶(GA-TP),考察了反应时间和反应物浓度对其成型的影响,运用SEM、BET、XRD、FTIR、接触角测量、弹性测试等手段对其进行了表征,并对... 以试剂级和工业级氧化石墨烯为原料,采用还原自组装法制备了试剂级石墨烯气凝胶(GA)和工业级石墨烯气凝胶(GA-TP),考察了反应时间和反应物浓度对其成型的影响,运用SEM、BET、XRD、FTIR、接触角测量、弹性测试等手段对其进行了表征,并对其吸附8种常用有机溶剂的性能进行了评价。表征结果显示:GA和GA-TP均具有三维“蜂窝状”多级孔结构以及良好的疏水亲油性和弹性。实验结果表明:当氧化石墨烯分散液质量浓度为1.0 g/L(抗坏血酸与氧化石墨烯的质量比为1∶1)、反应时间为5 h时,制备出的气凝胶形貌和结构最佳;GA-TP的单位质量孔隙体积大、孔隙填充率高,导致其吸附容量大于GA,对有机溶剂的吸附容量高达200~450 g/g,且其制备成本远低于GA;GA-TP循环再生5次后仍保持90%以上的吸附容量,且可快速吸附水上轻油和水下重油。 展开更多
关键词 石墨烯 气凝胶 吸附 油水分离
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Exclusively catalytic oxidation of toluene to benzaldehyde in an O/W emulsion stabilized by hexadecylphosphate acid terminated mixed-oxide nanoparticles 被引量:4
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作者 Changshun Deng Mengxia Xu +7 位作者 Zhen Dong Lei Li Jinyue Yang Xuefeng Guo Luming Peng Nianhua Xue Yan Zhu Weiping Ding 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第2期341-349,共9页
A series of hexadecylphosphate acid(HDPA) terminated mixed-oxide nanoparticles have been investigated to catalyze the oxidation of toluene exclusive to benzaldehyde under mild conditions in an emulsion of toluene/wate... A series of hexadecylphosphate acid(HDPA) terminated mixed-oxide nanoparticles have been investigated to catalyze the oxidation of toluene exclusive to benzaldehyde under mild conditions in an emulsion of toluene/water with the catalysts as stabilizers. With the HDPA-Fe2 O3/Al2 O3 as the basic catalyst, a series of transition metals, such as Mn, Co, Ni, Cu, Cr, Mo, V, and Ti, was respectively doped to the basic catalyst to modify the performance of the catalytic system, in expectation of influencing the mobility of the lattice oxygen species in the oxide catalysts. Under normally working conditions of the catalytic system, the nanoparticles of catalysts located themselves at the interface between the oil and water phases, constituting the Pickering emulsion. Both the doped iron oxide and its surface adsorbed hexadecylphosphate molecules were essential to the catalytic system for excellent performances with high toluene conversions as well as the exclusive selectivity to benzaldehyde. Under optimal conditions, ~83% of toluene conversion and >99% selectivity to benzaldehyde were obtained, using molecular oxygen as oxidant and HDPA-(Fe2 O3-Ni O)/Al2 O3 as the catalyst. This process is green and low cost to produce high quality benzaldehyde from O2 oxidation of toluene. 展开更多
关键词 Toluene oxidation BENZALDEHYDE Hexadecylphosphate acid Molecular oxygen PICKERING
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