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煤岩油气(矿)藏品质与油基质开发、加工参数分析
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作者 牛嘉玉 侯创业 +2 位作者 王好平 杨元一 金军 《石油学报(石油加工)》 EI CAS CSCD 北大核心 2009年第3期291-306,共16页
化石能源物理模型和煤岩油气(矿)藏的提出,为化石能源——石油和煤炭两大工业系统的资源开发与加工建立起相关的统一评价参数奠定了理论基础,也填补了H/C原子比为0.90~1.35的化石能源资源在自然界中存在方式和储集场所等方面的认识空... 化石能源物理模型和煤岩油气(矿)藏的提出,为化石能源——石油和煤炭两大工业系统的资源开发与加工建立起相关的统一评价参数奠定了理论基础,也填补了H/C原子比为0.90~1.35的化石能源资源在自然界中存在方式和储集场所等方面的认识空白。笔者从煤岩热成烃、与挥发分等参数的对应关系、煤岩组分构成特征、煤岩形成的地质环境和不同组分加工工艺评价参数等方面的分析入手,确定了煤岩油气(矿)藏的品质评价参数和划分方案,提出了我国不同品质煤岩油气(矿)藏的开发与加工技术思路。它区别于煤全岩直接加氢液化工艺,而是通过煤岩油气(矿)藏中油基质的开发,即富集和均质化类似于石油体系中的稠油-特超稠油组分,直接进入现有石油工业稠油加工体系,降低转化为石油制品的技术门槛,提高加工工艺的可控性,实现煤炭工业丰富的油基质资源和石油加工两大工业体系的对接,达到资源优势与加工优势互补的目的。并指出,中、西部地区可造就成为我国未来石油制成品的重要基地。 展开更多
关键词 化石能源工业 煤岩油气(矿)藏品质 油基质开发 油基质加工 油气资源潜力
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Facile microwave approach towards high performance MoS2/graphene nanocomposite for hydrogen evolution reaction 被引量:5
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作者 Shatila Sarwar Amit Nautiyal +8 位作者 Jonathan Cook Yifei Yuan Junhao Li Sunil Uprety Reza Shahbazian-Yassar Ruigang Wang Minseo Park Michael J.Bozack Xinyu Zhang 《Science China Materials》 SCIE EI CSCD 2020年第1期62-74,共13页
Low-cost, highly efficient catalysts for hydrogen evolution reaction(HER) are very important to advance energy economy based on clean hydrogen gas. Intensive studies on two-dimensional molybdenum disulfides(2 D Mo S2)... Low-cost, highly efficient catalysts for hydrogen evolution reaction(HER) are very important to advance energy economy based on clean hydrogen gas. Intensive studies on two-dimensional molybdenum disulfides(2 D Mo S2) have been conducted due to their remarkable catalytic properties.However, most of the reported syntheses are time consuming,complicated and less efficient. The present work demonstrates the production of Mo S2/graphene catalyst via an ultra-fast(60 s) microwave-initiated approach. High specific surface area and conductivity of graphene delivers a favorable conductive network for the growth of Mo S2 nanosheets, along with rapid charge transfer kinetics. As-produced Mo S2/graphene nanocomposites exhibit superior electrocatalytic activity for the HER in acidic medium, with a low onset potential of62 m V, high cathodic currents and a Tafel slope of43.3 m V/decade. Beyond excellent catalytic activity, Mo S2/graphene reveals long cycling stability with a very high cathodic current density of around 1000 m A cm^-2 at an overpotential of 250 m V. Moreover, the Mo S2/graphene-catalyst exhibits outstanding HER activities in a temperature range of 30 to 120°C with low activation energy of36.51 k J mol^-1, providing the opportunity of practical scalable processing. 展开更多
关键词 microwave-initiated synthesis MoS2/graphene nanocomposite ELECTROCATALYSIS hydrogen evolution reaction
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