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人工智能教育与数字经济的协同联动逻辑及推进路径 被引量:14
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作者 邓文勇 黄尧 《中国远程教育》 CSSCI 北大核心 2020年第5期1-9,76,共10页
推动数字经济发展已逐步上升为我国国家战略。人工智能教育作为一种现代化教育形式,在推动数字经济建设与发展的过程中具有重要的作用和使命,并与数字经济之间存在着复杂的协同联动关系。若想在推动人工智能教育与数字经济协同联动且在... 推动数字经济发展已逐步上升为我国国家战略。人工智能教育作为一种现代化教育形式,在推动数字经济建设与发展的过程中具有重要的作用和使命,并与数字经济之间存在着复杂的协同联动关系。若想在推动人工智能教育与数字经济协同联动且在实现二者联动发展的过程中制定出可行的战略,就需要先对二者之间的关系有一个清晰的认识、理解和把握。本研究基于不同维度,对人工智能教育与数字经济之间的"互动共生""主体交互""层次耦合"等协同联动逻辑进行深入解读,在此基础上提出构建具有共生性质的生态关系、创建主体合作共治的治理模式和助力激发层次之间的耦合效应等路径,以期深化人工智能教育与数字经济的协同联动,实现二者更深层次的联动发展。 展开更多
关键词 人工智能教育 数字经济 人工智能人才 国家战略 数字型企业 数字化产业 教育治理
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Solid-state preparation of mesoporous Ce-Mn-Co ternary mixed oxide nanoparticles for catalytic degradation of methylene blue 被引量:1
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作者 Qingwen Wang wenyong deng +6 位作者 Xinchen Lin Xigen Huang Ling Wei Lei Gong Changxiang Liu Guangbin Liu Qian Liu 《Journal of Rare Earths》 SCIE EI CAS CSCD 2021年第7期826-834,I0003,共10页
Mesoporous Ce-Mn-Co ternary metal oxide was fabricated via an efficient oxalate-precursor-based soft reactive grinding route and used to activate H_(2)O_(2) for advanced oxidation of methylene blue in water.In additio... Mesoporous Ce-Mn-Co ternary metal oxide was fabricated via an efficient oxalate-precursor-based soft reactive grinding route and used to activate H_(2)O_(2) for advanced oxidation of methylene blue in water.In addition,Mn-Co binary oxide and pure Co_(3)O_(4) and Mn_(3)O_(4) were also synthesized as reference catalysts.These catalysts were characterized by X-ray diffraction,N_(2) adsorption-desorption,H_(2)-temperature programmed reduction,transmission electron microscopy,scanning electron microscopy and X-ray photoelectron spectroscopy.The results demonstrate that part of the Ce and Mn can be incorporated into the lattice of Co_(3)O_(4) and cause severe lattice distortion of the unit cell.Compared with the single or binary system,Ce-Mn-Co ternary metal oxide exhibits the best activity in methylene blue removal and nearly 100% decomposition rate and 84% COD removal rate can be achieved in 12 h,and with degradation rate of 93.5% after three rounds.These results are primarily attributed to the synergistic effect of Ce,Mn and Co,which can promote the formation of more lattice defects,higher specific surface area and smaller particle size.Quenching tests show that hydroxyl radicals(·OH) play more dominant role than superoxide radicals(·O_(2)^(-)).Kinetic studies were studied and the activation energies of all the catalysts were calculated. 展开更多
关键词 Ce-Mn-Co mixed Oxide Methylene blue Advanced oxidation processes Soft reactive grinding Rare earths
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