Hydrogen utilization
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Safety Control Strategy for Hydrogen Utilization in Continuous Annealing Simulator
连续退火模拟实验机氢气使用的安全控制策略
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Study on Cost Leadership Strategy of Hydrogen Utilization in Petroleum Refining Plants
炼厂用氢的低成本战略探讨
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By taking the above measures , Karamay Petrochemical Company basically achieved its objective of optimizing hydrogen utilization .
上述措施实施后,克拉玛依石化公司基本达到了优化氢气资源的目标。
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The results showed that the holding method significantly affects the product distributions , thus making an apparent difference in hydrogen utilization efficiency .
结果表明,不同停留方式对热解产物的分布及性质有重要的影响,并使氢气的有效利用率相差很大。
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Through designing seal reduction system , the hydrogen utilization ratio is high and the destination of the reaction is easily judged .
设计了封闭还原系统,用此系统进行氢气热还原,不仅使氢气得到充分利用,而且容易判断反应终点,缩短了Mo粉在恒温区的时间,阻止了颗粒的长大。
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The safety function of hydrogen utilization is also considered and implemented . ( 3 ) Cooling technology is the key technology of continuous annealing line .
在各功能部分的设计中还充分考虑和实现了使用氢气的安全保护功能。(3)冷却技术是连续退火机组的核心技术。
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PLC system software includes logical control system , furnace pressure control system , safety control strategy of hydrogen utilization , tension control system , temperature fuzzy expert control system , gas and water distribution system .
PLC软件系统主要包括功能逻辑控制系统、炉内压力控制系统、用氢安全控制策略、张力控制系统、模糊专家温度控制系统、气水分配和调节系统等部分。
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A special seal reduction system was designed with a high hydrogen utilization ratio and easy to judge the destination of reaction , in which water can be removed due to the lower reaction temperature .
设计了封闭循环氢还原系统,用此系统进行氢气热还原,不仅使氢气得到充分利用,而且容易判断反应终点。
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The hydrogen utilization ratio can reach to 77 % proved by constant current experiment . Finally , a self-breathing micro-PEMFC stack with six cells for the structure of ladder form was developed .
恒电流实验表明,氢气发生器的氢气利用率可达77%。最后,研制了一个六单体的小型自呼吸式质子交换膜燃料电池电堆。
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Summary of Research and Development of Hydrogen Energy Utilization and Hydrogen Production by Nuclear Energy
氢能利用与核能制氢研究开发综述
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Economic Feasibility Analysis of Purifying Hydrogen through Utilization of Off-gas in Yangzi Petrochemical Company
扬子石化利用尾气提纯氢气的经济可行性分析
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The research on safety monitoring technology in liquid hydrogen storage and utilization
液氢贮存及使用中安全监测技术的研究
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Sr - aromatic solvent suitable for the production of hydrogen peroxide & utilization of c_ ( 10 ) heavy aromatic hydrocarbons
双氧水生产用SR-芳烃溶剂&C(10)重芳烃的综合利用
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The world is gradually changing from gasoline time to wind energy and hydrogen energy time . Utilization of wind energy and hydrogen energy in the world is on the stage of development and demonstration .
世界正逐步从汽油时代向风能、氢能时代的转变,世界上对风能、氢能的利用处在开发和示范阶段。
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Chinese petroleum refining plants have increasingly recognized the importance of enhancing hydrogen management , optimizing hydrogen utilization and reducing hydrogen cost .
我国炼厂现在已越来越认识到加强氢气管理,优化氢气利用和降低氢气成本的重要性。
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Hydrogen storage technology is an important process of hydrogen utilization . Focusing on commercialization natural gas-to-solids technology , researchers make plentiful research in terms of technical problems .
氢能的储运技术是氢能利用的关键环节之一。围绕固体天然气储运技术的工业化,人们就一系列技术问题作了大量的研究,而设计研究高效的固化工艺技术是工业应用的基础。
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The paper analyzed the difficulties for developing hydrogen energy system from the aspects of hydrogen production and utilization , which were also the main directions of research on hydrogen energy technologies and made the conclusion that ' hydrogen energy economy can not be realized in a short time .
本文从氢的生产和利用两个方面分析了目前推广氢能系统的困难,得出了短期内不可能实现氢能经济的结论,同时,也指明了氢能技术研究和发展的主要方向。
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The combination of hydrogen storage and transportation will be optimal partner of hydrogen energy development and utilization in the 21st century .
氢与储氢材料的组合,将是21世纪新能源&氢能的开发与利用的最佳搭档。
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Hydrogen storage material is the new type functional material developed along with hydrogen energy utilization in recent thirty years .
储氢材料是伴随着氢能利用在最近三十多年才发展起来的新型功能材料。
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For further widespread use , a set of problems such as production , storage , and application of hydrogen must be solved . The way of storage and transportation is always the key to the hydrogen utilization .
氢能利用需要解决制取、储运和应用等一系列问题,而储运则是氢能应用的重要关键。
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Hydrogen , as a new energy resource , has been the inevitable trend , while hydrogen storage is the most critical aspect of hydrogen energy utilization system . Carbon-based materials because of its unique structure and properties , has become the hot spot for hydrogen storage .
氢能作为未来的新能源己为必然的发展趋势,氢源的储存是氢能利用系统中最为关键的一环,碳基纳米材料因其独特的结构和性能成为储氢材料研究的热点。