期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
鞍钢三烧添加催化强化剂工业试验 被引量:1
1
作者 杨熙鹏 周节旺 杨济凡 《烧结球团》 北大核心 2000年第4期25-26,27,共3页
通过在三烧进行添加催化强化剂的工业试验 ,验证了催化强化剂能增产降耗的试验室研究结果。工业试验表明 ,烧结添加 0 .0 2 2 8%催化强化剂 ,可降低煤耗 10 %以上 ,增产5%。
关键词 催化强化剂 强化烧结 增产 节能 工业试验
下载PDF
New development in Fe/Co catalysts:Structure modulation and performance optimization for syngas conversion 被引量:4
2
作者 Yinwen Li Xin Zhang Min Wei 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第8期1329-1346,共18页
C1 chemistry is the essence of coal chemistry and natural gas chemistry. Catalytic methods to efficiently convert C1 molecules into fuels and chemicals have been extensively studied. Syngas(CO +H_2) conversion is t... C1 chemistry is the essence of coal chemistry and natural gas chemistry. Catalytic methods to efficiently convert C1 molecules into fuels and chemicals have been extensively studied. Syngas(CO +H_2) conversion is the most important industrial reaction system in C1 chemistry, and Fe and Co catalysts, two major industrial catalysts, have been the focus of fundamental research and industrial application. In the last decade, considerable research efforts have been devoted to discoveries concerning catalyst structure and increasing market demands for olefins and oxygenates. Since the development of efficient catalysts would strongly benefit from catalyst design and the establishment of a new reaction system, this review comprehensively overviews syngas conversion in three main reactions, highlights the advances recently made and the challenges that remain open, and will stimulate future research activities. The first part of the review summarizes the breakthroughs in Fischer-Tropsch synthesis regarding the optimization of activity and stability, determination of the active phase, and mechanistic studies. The second part overviews the modulation of catalytic structure and product selectivity for Fischer-Tropsch to olefins(FTO). Catalysts designed to produce higher alcohols, as well as to tune product selectivity in C1 chemistry, are described in the third section. Finally, present challenges in syngas conversion are proposed, and the solutions and prospects are discussed from the viewpoint of fundamental research and practical application. This review summarizes the latest advances in the design, preparation, and application of Fe/Co-based catalysts toward syngas conversion and presents the challenges and future directions in producing value-added fuels. 展开更多
关键词 Syngas conversion Fe/Cocatalyst Structure modulation Performance optimization Product selectivity
下载PDF
Catalyst-Free Growth of Nanographene Films on Various Substrates 被引量:12
3
作者 Lianchang Zhang Zhiwen Shi +3 位作者 Yi Wang Rong Yang Dongxia Shi Guangyu Zhang 《Nano Research》 SCIE EI CAS CSCD 2011年第3期315-321,共7页
We have developed a new method to grow uniform graphene films directly on various substrates, such as insulators, semiconductors, and even metals, without using any catalyst. The growth was carried out using a remote ... We have developed a new method to grow uniform graphene films directly on various substrates, such as insulators, semiconductors, and even metals, without using any catalyst. The growth was carried out using a remote plasma enhancement chemical vapor deposition (r-PECVD) system at relatively low temperatures, enabling the deposition of graphene films up to 4-inch wafer scale. Scanning tunneling microscopy (STM) confirmed that the films are made up of nanocrystalline graphene particles of tens of nanometers in lateral size. The growth mechanism for the nanographene is analogous to that for diamond grown by PECVD methods, in spite of sp2 carbon atoms being formed in the case of graphene rather than sp3 carbon atoms as in diamond. This growth approach is simple, low-cost, and scalable, and might have potential applications in fields such as thin film resistors, gas sensors, electrode materials, and transparent conductive films. 展开更多
关键词 NANOGRAPHENE CATALYST-FREE plasma enhancement chemical vapor deposition (PECVD) transparent and conductive film
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部