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东京奥运会背后的“氢能社会”战略布局及经验启示
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作者 魏晨 龚龑 樊锦艳 《中外能源》 CAS 2022年第11期23-29,共7页
“氢能社会”不同于“氢能产业”,具有不可估量的经济和战略价值。日本希望通过构建“氢能社会”,在世界氢能商业化竞争中占据主导地位。在东京奥运会上,从奥运火炬到奥运村的热电联产系统,再到往来场馆的燃料电池汽车,日本清一色使用... “氢能社会”不同于“氢能产业”,具有不可估量的经济和战略价值。日本希望通过构建“氢能社会”,在世界氢能商业化竞争中占据主导地位。在东京奥运会上,从奥运火炬到奥运村的热电联产系统,再到往来场馆的燃料电池汽车,日本清一色使用了氢能源,开创了诸多氢能全球首次应用场景。2014年日本政府就明确提出加速建设和发展“氢能社会”的战略方向,构建“氢能社会”的关键是零碳和低成本制氢,基础是燃料电池车和家用热电联产,并在“氢能社会”发展的各个关键环节都制定了具体战略目标。日本氢燃料电池技术和制氢技术全球领先,在氢燃料电池汽车领域发展优势明显。同时,家用燃料电池Ene-Fram的大规模商业化也在推动成本平稳下降。目前日本仍面临燃料电池、加氢站和家用热电联产系统的成本较高,应用前景不明确,氢能基础设施薄弱等问题。中国的氢能产业尚处于发展初期,氢能的应用广度、深度和产业化程度都与日本有一定的差距。中国在发展与完善氢能战略上可以借鉴日本的经验,加强顶层设计,加快突破关键核心技术,促进产学研融合,推动氢能商业化进程。 展开更多
关键词 氢能社会 燃料电池汽车 加氢站 家用热电联产 低成本制氢 东京奥运会
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Surface treatment effect on the photocatalytic hydrogen generation of CdS/ZnS core-shell microstructures 被引量:7
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作者 苏进展 张涛 +2 位作者 王璐 师进文 陈玉彬 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2017年第3期489-497,共9页
CdS/ZnS core-shell microparticles were prepared by a simple two-step method combining ultrasonic spray pyrolysis and chemical bath deposition.The core-shell structures showed enhanced photocatalytic properties compare... CdS/ZnS core-shell microparticles were prepared by a simple two-step method combining ultrasonic spray pyrolysis and chemical bath deposition.The core-shell structures showed enhanced photocatalytic properties compared with those of CdS or ZnS spherical particles.CdS/ZnS photocatalysts with different amount of ZnS loaded as shells were prepared by adjusting the concentrations of Zn and S precursors during synthesis.The optical properties and photocatalytic activity for hydrogen production were investigated and the amount of ZnS loaded as shell was optimized.Thermal annealing and hydrothermal sulfurization treatments were applied to the core-shell structure and both treatments enhanced the material's photocatalytic activity and stability by eliminating crystalline defects and surface states.The result showed that thermal annealing treatment improved the bulk crystallinity and hydrothermal sulfurization improved the surface properties.The sample subjected to both treatments showed the highest photocatalytic activity.These results indicate that CdS/ZnS core-shell microspheres are a simple structure that can be used as efficient photocatalysts.The hydrothermal sulfurization treatment may also be a useful surface treatment for metal sulfide photocatalysts.The simple two-step method provides a promising approach to the large-scale synthesis of core-shell microsphere catalysts. 展开更多
关键词 Core-shell microstructure PHOTOCATALYSIS Surface treatment Hydrogen production Low-cost synthesis
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