合成气
- 网络Synthesis gas;syngas;syn gas;HYCO
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Shell气化炉合成气冷却器积灰原因及应对策略
Ash Deposition Reason and Its Countermeasure for Syngas Cooler of Shell Gasifier
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CO2稀释对合成气扩散火焰中氮氧化物生成排放特性的影响
Effects of CO_2 Dilution on NO_x Formation Characteristics in Syngas Diffusion Flames
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在超临界相条件下由合成气合成C2含氧化合物反应的研究
Synthesis of C_2 Oxygenated Compounds from Syngas in Supercritical Phase
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合成气直接制二甲醚的Cu基双功能催化剂研究
Cu-based bi-function catalysts for direct synthesis of dimethyl ether from syngas
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富CO合成气三相床甲醇合成过程研究
Influences of main reaction factors on methanol synthesis process utilizing CO-rich syngas
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β-氧化铝型复合氧化物BaMAl(11)O(19-δ)催化CO2重整甲烷制合成气
CO _ 2 Reforming of Methane to Syngas Catalyzed by β - Alumina Oxides
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甲烷催化重整制合成气反应的Ni基复合催化剂的研究
The Research of Ni Based Heterogeneous Catalysts for Synthesis Gas of Methane Reforming
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大气压反常辉光放电下CO2重整CH4制合成气的实验研究
CO_2 Reforming of CH _4 by Atmospheric Pressure Abnormal Glow Plasma
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流化床甲烷/丙烷临氧CO2重整制合成气反应研究
Study on Reforming of CH-4 and C_3H_8 with CO_2 and O_2 to Syngas in a Fluidized Bed reactor
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CH4和CO2制合成气的负载型锦催化剂的制备研究
Preparation of Supported Nickel Catalyst for Reforming CH_4 and CO_2 to Produce Synthesis Gas
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低Ni载量六铝酸盐催化剂上甲烷和二氧化碳重整制合成气反应研究
Study on Carbon Dioxide Reforming of Methane to Synthesis Gas over Low Nickel Content Substituted Hexaaluminate Catalysts
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稀土烧绿石型催化剂上CO2重整CH4制合成气反应研究
Pyrochlore-Type Lanthanum Zirconium Composite Oxide Catalysis Reaction of CO_2 Reforming of Methane to Synthesis Gas
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GSP技术是煤制合成气(或H2)工艺的最佳选择
GSP-Optimal Technology for Synthesis Gas Production from Coal
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在流化床反应器中进行甲烷临氧CO2重整制合成气反应。
Methane reforming with CO2 in the presence of oxygen was studied in a fluidized bed reactor .
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Mg、Ce修饰纳米Al2O3负载Ni催化剂对CH4、CO2重整反应制合成气的影响
Effect of adding Mg and Ce in CO_2 reforming of CH_4 to syngas over Ni / nano-Al_2O_3 catalysts
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气化剂和气化原料以并流的方式进入反应器中反应生成高浓度CO合成气。
The gasifying agent and gasification cocurrent flow to enter the reactor to generate high concentrations of carbon monoxide synthesis gas .
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甲烷部分氧化制合成气Rh/Al2O3催化剂的原位Raman光谱表征
In Situ Raman Characterization of Rh / Al_2O_3 Calcined at Different Temperatures for Methane Partial Oxidation to Syngas
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添加过渡金属氧化物对CH4、CO2和O2制合成气催化剂性能的影响
Influence of Adding Transition Metal Oxides on Performance of Catalysts for Syngas from CH_4 , CO_2 with O_2
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CH4、CO2与O2制合成气用Ni-Ce/γ-Al2O3催化剂的制备与催化活性的关系
Relationship Between Preparation Method of Catalyst and Catalytic Activity in the Reaction of Carbon Dioxide Reforming of Methane
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钙钛矿型La0.8Sr0.2FeO3中的晶格氧用于甲烷选择氧化制取合成气
Selective Oxidation of Methane to Synthesis Gas Using Lattice Oxygen from Perovskite La_ 0.8 Sr_ 0.2 FeO_3 Catalyst
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吸波材料SiC对微波辐照下甲烷部分氧化制合成气的影响
The effects of microwave absorption material SiC on the results of partial oxidation of methane to syngas under microwave irradiation
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高硫合成气制甲硫醇钼基催化剂ESR和XPS表征
The ESR and TPR characterization of the Mo-based catalysts for methanthiol synthesis from high H_2S-containing syngas
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其燃料合成气主要成分是CO和H2,燃烧生成的NOx会对环境造成污染。
The main components of fuel syngas are CO and H2 , which will produce the environment-contaminated NOx .
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甲烷催化部分氧化制取合成气的研究&Ⅰ.负载型Ni/α-Al2O3催化剂的研究
Studies of catalytic partial oxidation of methane to syngas ⅰ . Studies of Ni / α - Al_2O_3 catalysts
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目的是以较高的产气率,制取以CO和H2为主要成分的热值较高的生物质合成气;
In order to produce the biomass synthesized gas which has the main components of H2 and CO with high heating value and gas yield .
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硫化钼催化剂上甲烷化反应的研究&合成气在MoS2/Al2O3上甲烷化反应的特征
Studies of Methanation on mos_2 catalysts & the characteristics of synthesis gas methanation on mos_2 / al_2o_3
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阐明了从合成气和各种工业废气中分离和精制CO在开发C1化学技术中的重要性。
In the development of C_1 Chemistry the significance of Separation and purification of CO from synthetic gas and a variety of industrial waste gases is elucidated .
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稀土等碱性助剂对甲烷部分氧化制合成气整体式Ni/-γAl2O3催化剂性能的影响
Partial Oxidation of Methane to Syngas over Monolithic Ni / γ - Al_2O_3 Catalyst & Effects of Rare Earths and Other Basic Promoters
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CH4、CO2与O2催化氧化重整制合成气的研究&催化剂中CeO2的作用及影响
Study on catalytic oxidation and reforming of CH_4 , CO_2 and O_2 to syngas & Action of CeO 2 in catalyst
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大气压反常辉光放电下CH4/CO2制合成气的数值模拟分析
CO_2 Reforming of CH_4 to Synthetic Gas by Abnormal Glow Discharge at Atmospheric Pressure : Model Study