1)hydriding combustion synthesis氢化燃烧合成
1.The effect of doping Ti on synthesis of magnesium nickel hydrogen storage alloys by hydriding combustion synthesis;掺钛对氢化燃烧合成镁镍储氢合金的影响
2.Characteristic and analysis of high activity of Mg_2 NiH_4 produced by hydriding combustion synthesis;氢化燃烧合成Mg_2NiH_4产物高活性特征及分析
3.Study on the effect of doping Cu to hydrogen storage alloys of magnesium and nickel by hydriding combustion synthesis;掺铜对氢化燃烧合成Mg_2NiH_4的影响
英文短句/例句
1.Study on the Intermediate Reactions in the Process of Hydriding Combustion Synthesis of Magnesium Based Hydrogen Storage Alloys;镁基储氢合金氢化燃烧合成若干中间反应研究
2.Development of Hydriding Combustion Synthesis Reaction Apparatus and the Preparation of Mg-Based Hydrogen Storage Alloy-Mg_2NiH_4;氢化燃烧合成设备研制及镁基储氢合金Mg_2NiH_4制备
3.Hydrogen storage material of LaMg_(11.5)Ni_(0.5) prepared by hydriding combustion synthesis followed by mechanical milling氢化燃烧合成与机械合金化复合制备LaMg_(11.5)Ni_(0.5)储氢材料
4.rich in tarry hydrocarbons; burns readily with a smoky yellow flame.在沥青质碳氢化合物中含量丰富,燃烧稳定,有黄色烟状火焰生成。
5.a colorless liquid hydrocarbon; highly inflammable; carcinogenic.一种无色液态碳氢化合物,极易燃烧,致癌物质。
6.Numerical simulation on catalytic combustion process of hydrogen/air mixture inside micro-tubes氢气预混合微尺度催化燃烧的数值模拟
7.Study on Fuel-Air Mixture Forming and Combustion Process in Hydrogen/Diesel Engine of Premixed Charge Compression Ignition;预混合压燃氢气/柴油发动机混合气形成与燃烧过程的研究
8.Study of Hydriding Combustion Synthesis Mg-Ni Hydrogen Storage Alloy and Doping for Improving Its Performance;镁镍储氢合金的氢化燃烧制备技术及掺杂改性研究
9.Research on Mechanism of Combustion Synthesis of Mg_2Ni and the Hydrogen Storage Property of Mg-Al-Ni;Mg_2Ni的燃烧合成机理及三元合金Mg-Al-Ni储氢性能研究
10.Study on Catalysts for Coupling of Dehydrogenation of Long Chain Alkane and Catalytic Combustion of Methane;长链烷烃脱氢与甲烷催化燃烧直接耦合催化剂的制备及性能
11.Monolithic Catalytic Reactor for Direct Coupling of Dehydrogenation of Long Chain Alkane and Catalytic Combustion of Methane;长链烷烃脱氢与甲烷催化燃烧直接热耦合的整体式催化反应器
12.Integration and Mechanism of Chemical Looping Combustion with Chemical Intercooling and Methanol Reforming with Multi Production耦合化学间冷的化学链燃烧与甲醇重整氢电联产系统研究
13.Simulation on Mixture Formation and Combustion Process in D.I. Hydrogen/ Diesel Engine缸内直喷加氢柴油机混合气形成与燃烧过程的数值模拟研究
14.Study on Controlling of Hydrogen Sulfide by Combustion--Absorption;硫化氢废气的燃烧——吸收法净化研究
15.Reduces air pollution by minimizing the discharge of unburned hydrocarbon .将未燃烧的碳氢化合物含量降至最低,减少了空气污染。
16.Effects of Al(OH)_3 and Mg(OH)_2 flame retardants on the fire performance of wood/polyethylene composites纳米氢氧化物对木粉/聚乙烯复合板燃烧性能的影响
17.Improving Combustion by the Additive Hydrogen Peroxide in the Diesel Engine;添加过氧化氢改善柴油机燃烧的研究
18.Realization of Combustion Control System for Reformer of Hydrogen Plant制氢装置转化炉燃烧控制系统的实现
相关短句/例句
hydrocarbon combustion碳氢化合物燃烧
3)hydriding combustion synthesis氢化燃烧
1.Development of magnesium based hydrogen storage alloys produced by hydriding combustion synthesis;氢化燃烧合成镁基贮氢合金的研究进展
4)combustion synthesis燃烧合成
1.Densification factors of C_f/TiC-TiB_2 ceramic composites by combustion synthesis;燃烧合成C_f/TiC-TiB_2陶瓷基复合材料的致密化因素探讨
2.Effects of experimental parameters and mass-fractional of Al on combustion synthesis of Ti_3AlC_2;实验参数和Al质量分数对燃烧合成Ti_3AlC_2的影响
3.Effect of an external electric field on the combustion synthesis process of TiO_2-C-Al system;电场对TiO_2-C-Al系燃烧合成过程的影响
5)hydriding combustion synthesis氢化燃烧法
1.The Mg2Ni binary alloy is prepared by microwave combustion synthesis (MWCS), hydriding combustion synthesis (HCS) and mechanical alloying (MA).采用微波燃烧合成法(MwCS)、氢化燃烧法(HCS)和机械合金化(MA)制备了Mg2Ni,并从物相结构、形貌特征、热力学和动力学性能等方面对比研究了不同制备方法对产物的影响规律,结果表明:微波燃烧合成法制备的Mg2Ni具有细小均匀的晶粒组织、大的合金比表面积、更好的吸氢性能,在553K时25s内的吸氢量达到3。
2.5) ternary alloys were prepared by hydriding combustion synthesis (HCS).采用氢化燃烧法制备La2-xNixMg17(x=0。
3.5 hydrogen storage material was prepared by hydriding combustion synthesis (HCS) or mechanical alloying (MA).采用氢化燃烧法 (HCS) 和机械合金化 (MA) 合成了La1。
6)Sulfureted hydrogen burning硫化氢燃烧
延伸阅读
燃烧合成技术分子式:CAS号:性质:又称燃烧合成技术。依靠化学反应自身放热来制备材料的新技术。即外加能源(电热或激光等)触发点火剂燃烧,进而引发反应物料(气相-固相,固相-固相、液相-固相等)自发高速反应、放出热量,反应由局部以燃烧波的形式自动蔓延整个体系,最后获得新的合成材料的技术。反应物可以是元素粉末相互直接混合或元素粉末与气体,也可用金属氧化物和还原剂及非金属粉末的混合物反应生成热能维持反应持续进行。反应产物必须是稳定的化合物。该技术具有产物纯度高、设备简单、能耗低、生产灵活等优点,缺点是工艺参数控制要求较严。已用此法制备出数百种化合物,像各种金属的氮化物、碳化物、硼化物、硅化物、氧化物、氢化物等。SHS技术已发展成SHS制粉技术、SHS烧结技术、SHS致密化技术、SHS熔铸技术、SHS焊接技术、SHS涂层技术等。
