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元宇宙赋能高校美育的意义、风险及对策研究
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作者 马琳 王荣霞 《西北成人教育学院学报》 2024年第4期70-76,共7页
元宇宙作为下一代互联网的发展目标已经初具形态,开始应用于工程学、建筑学及医学等应用学科,并逐步向美育、思政等人文社科领域渗透。作为一种具备新型社会体系的数智化生活空间,其所具备的高度沉浸、自然交互、虚实融合等特征契合了... 元宇宙作为下一代互联网的发展目标已经初具形态,开始应用于工程学、建筑学及医学等应用学科,并逐步向美育、思政等人文社科领域渗透。作为一种具备新型社会体系的数智化生活空间,其所具备的高度沉浸、自然交互、虚实融合等特征契合了高校美育工作的要求,可以为美育教学改革的深化提供机遇。但在利用元宇宙开展高校美育活动时,也可能会出现多种风险与挑战:认知的外包会导致主体的弱化,意识的过度聚焦会助推信息茧房的形成,而技术主权的丧失则可能导致审美霸权的产生。基于此,我们应提前布局、科学谋划,坚持以技术规约保障后人类①时代情感自主这一大前提,坚持以用户生产实现美育过程中的资源积累、以教学理念变革增强元宇宙美育的实际效果这两个关键点,推动高校元宇宙美育的合理建构与良性发展。 展开更多
关键词 元宇宙 赋能 美育 具身沉浸 用户生产
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Effects of Sn residue on the high temperature stability of the H_2-permeable palladium membranes prepared by electroless plating on Al_2O_3 substrate after SnCl_2–PdCl_2 process: A case study
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作者 Lei Wei Jian Yu +2 位作者 Xiaojuan Hu rongxia wang Yan Huang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2016年第9期1154-1160,共7页
The stability of composite palladium membranes is of key importance for their application in hydrogen energy systems. Most of these membranes are prepared by electroless plating, and beforehand the substrate surface i... The stability of composite palladium membranes is of key importance for their application in hydrogen energy systems. Most of these membranes are prepared by electroless plating, and beforehand the substrate surface is activated by a SnCl_2–PdCl_2 process, but this process leads to a residue of Sn, which has been reported to be harmful to the membrane stability. In this work, the Pd/Al_2O_3 membranes were prepared by electroless plating after the SnCl_2–PdCl_2 process. The amount of Sn residue was adjusted by the SnCl_2 concentration, activation times and additional Sn(OH)_2coating. The surface morphology, cross-sectional structure and elemental composition were analyzed by scanning electron microscopy(SEM), metallography and energy dispersive spectroscopy(EDS), respectively. Hydrogen permeation stability of the prepared palladium membranes were tested at450–600 °C for 400 h. It was found that the higher SnCl_2 concentration and activation times enlarged the Sn residue amount and led to a lower initial selectivity but a better membrane stability. Moreover, the additional Sn(OH)_2coating on the Al_2O_3 substrate surface also greatly improved the membrane selectivity and stability.Therefore, it can be concluded that the Sn residue from the SnCl_2–PdCl_2 process cannot be a main factor for the stability of the composite palladium membranes at high temperatures. 展开更多
关键词 Hydrogen separation Composite palladium membrane Electroless plating SnCl2–PdCl2 process Sn residue Membrane stability
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