feed gas

英 [fiːd ɡæs] 美 [fiːd ɡæs]

网络  原料气; 进气; 进料气体

化学



双语例句

  1. Process conditions for methanolization and methanation purification of ammonia synthesis feed gas;
    介绍了一种新的合成氨方法热平衡低温等离子体法。
  2. The application status of low temperature Cu base NC306 type catalyst for synthetic methanol in allied production equipment using natural gas and water gas as feed gas was introduced.
    介绍了低温铜基NC306型甲醇合成催化剂在天然气与水煤气联合生产甲醇装置上的应用情况,总结了使用过程中的注意事项;
  3. Analysis on the Feed Gas Efficiency in the Single-Stage DME Production Process
    浅析一步法二甲醚生产工艺中原料气的利用率
  4. There is no temperature control on the feed gas.
    对原料气无温度控制。
  5. Based on the properties of carbonaceous catalyst, composition of feed gas and the size parameters of reforming reactor, heat and material balance of reactor were established.
    基于炭催化剂特性、原料气组成和重整转化反应器的尺寸参数,建立了重整反应器体系的物料平衡和热平衡方程;
  6. Study on deep removal of trace carbon monoxide from hydrogen feed gas by TSA
    TSA法深度脱除氢气中微量CO的研究
  7. Through parameter optimization and scheme comparison, the combined processing scheme of compression and turbine expander refrigeration is put forward, the scheme has the advantages of good adaptability to feed gas composition, high propane recovering rate, simple process flow and satisfactory investment benefit.
    通过工艺计算和方案比较,提出了合理的天然气处理方案&压缩与膨胀机制冷相结合的工艺。该方案具有对天然气气质变化适应性强、丙烷收率高、流程简单和投资效益好等优点。
  8. The New Catalyst for the Elimination of Hydrogen from CO_2 Feed Gas in the Production of Urea
    新型合成尿素用CO2原料气消氢催化剂的研究
  9. An experiment is carried out in an industrial side line on the removal of CO from the ammonia feed gas by pressure swing adsorption with copper-bearing adsorbent.
    采用载铜吸附剂进行了变压吸附净化合成氨原料气中CO的工业侧线实验。
  10. Influence of impurities in feed gas on methanol synthetic system
    合成甲醇原料气中杂质对合成系统的影响
  11. Cooler leakage and high moisture content of hydrogen chloride feed gas caused less output and substandard product of a chlorosulfonic acid plant.
    由于排管冷却器泄漏和原料氯化氢气体水分含量偏高,氯磺酸装置产量不达标,产品质量差。在改造过程中,对排管冷却器进行维修,以克服冲刷腐蚀和消除遗留的泄漏因素;
  12. Options of Coal Gasification Technologies in Making Feed Gas for Methanol Synthesis
    制取甲醇合成原料气的煤气化工艺技术选择
  13. Review for Feed Gas Saturator in Ammonia Plant
    氨厂原料气饱和器的设置及评述
  14. The influence of crystalline temperature, feed gas composition, cooling time and crystalline enviroment on crystallization was investigated. The effects of the adsorption amount, adsorption temperature, water content of the adsorbent and the adsorbent reactivition conditions on adsorption process were described.
    考察了温度、原料气组成、冷却时间、结晶环境对结晶过程的影响,以及吸收量、吸附温度、吸附剂含水量和吸附剂的再生条件对吸附过程的影响。
  15. Control Method of Feed Gas Flux in Membrane Separation Process
    膜分离过程中原料气流量的控制方法
  16. Discussion on the technology for removing sulfur carboxide and carbon dioxide in the carbonylation feed gas
    羰基合成原料气中羰基硫、二氧化碳脱除技术的探讨
  17. The influences of catalyst pellet size, pressure and composition of feed gas were discussed.
    讨论了正逆反应,催化剂颗粒度、压力、气体成份对有效因子的影响。
  18. Experimental results show that it is possible to control the CO/ H2 ratio of produced gas by adjusting CO2 concentration in feed gas and adding Ca or Fe catalyst into coal.
    实验结果表明:可以利用调节进料气中CO2的浓度或添加Ca或Fe催化剂来控制生成气中CO/H2比。
  19. Under atmospheric pressure, the effects of reaction temperature, Pd-Cu catalyst composition, small amount of additive, as well as O2 content in feed gas mixtures on the oxidative carbonylation of styrene to methyl cinnamate were studied.
    在常压130℃下研究了Pd-Cu催化剂组成,反应温度,少量添加剂和原料气中O2含量等对苯乙烯氧化羰化合成肉桂酸甲酯的影响,并对催化剂的形、相态进行表征。
  20. A comparison is made of several gasification processes for the production of methanol feed gas from coal, and emphasis is placed on the process flow, main consumption figures, and process equipment of the production of methanol from coal.
    对以煤为原料生产甲醇原料气的几种气化工艺进行了比较,重点介绍了以煤为原料生产甲醇的工艺流程、主要消耗、工艺设备。
  21. Under two process conditions, viz., a part of the product gas used as the regenerating gas and regeneration with vacuum-pumping, the stability of the purification process by removal of CO from the ammonia feed gas is examined.
    在部分产品气体作为再生气和抽真空再生2种工艺条件下,考察了合成氨原料气中CO的净化过程的稳定性。
  22. The presence of CO_ 2 in the feed gas had no effect on the reaction of natural gas soot with NO, but resulted in a lower initial reaction temperature of candle soot and coke reaction with NO, and separated the whole reaction process into two stages.
    反应气中CO2存在对天然气炭黑反应无影响,可以降低蜡烛炭黑和焦炭与NO起始反应温度,使反应分成两个阶段。
  23. This paper introduces a gas chromatographic method for quantitative determination of feed gas and products of oxidative dehydrogenation of ethane to ethene.
    建立了乙烷氧化脱氢制乙烯原料气及反应产物的气相色谱分析方法。
  24. Lowering the CO_2 concentration in the fresh feed shows no significant influence on the yield of alcohols, but it is greatly decreased by using a low H_2/ CO ratio feed gas.
    降低原料气中CO2的浓度对反应未产生显著影响,而降低原料气中H2/CO比则使醇收率大大下降。
  25. Wetting system for feed gas
    原料气增湿系统
  26. Requirements and analysis methods of sulfides content in ammonia synthesis feed gas
    合成氨原料气中硫含量的要求与分析方法
  27. This SO2 will be mixed with the feed gas of an existing sulphuric acid plant.
    这部分二氧化硫与现有硫酸装置的原料气混合。
  28. By the verification of load performance parameters and the composition analysis of the desulfuration solution and the feed gas, it is found the real reason of liquid blocking by desulfuration unit is the desulfuration solution seriously foaming.
    通过对塔板负荷性能参数的验算和对脱硫溶液及原料气组分的分析研究,找到了脱硫溶液严重发泡是造成脱硫装置拦液的真正原因。
  29. At last, the influence of technological conditions ( such as the pretreatment time of water vapor, space velocity and CO content in feed gas) on the catalytic activity of Pd-Cu/ APT catalyst, the intermitted use and the store stability of the catalyst were investigated.
    最后还考察了水蒸气预处理时间、空速、原料气中CO含量等工艺条件对Pd-Cu/APT催化剂催化氧化性能的影响以及该催化剂的间断使用、储存稳定性等。
  30. We gave some discussions about the process and mechanism of the reactions under atmospheric pressure microwave discharge when pure methane, methane and hydrogen mixtures, methane and CO2 mixtures, methane and 62 mixtures were used as feed gas respectively by means of mass spectra on-line.
    实验借助在线质谱检测手段对纯甲烷,甲烷和氢气、二氧化碳、氧气混合气在常压微波放电下各自的反应过程和机理进行了考察和探讨。