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放热化学反应 meaning in Chinese

exothermal chemical reaction
exothermic chemical reaction
heat-producing chemical reaction

Examples

  1. The most important exothermal reactions in the crust can be expected from the chemical transformations of sulfides .
    地壳中能够料想到的最重要的放热化学反应是硫化物的化学转变。
  2. For example , if the energy from an exothermic chemical reaction is absorbed in a container of water , the change in temperature of the water provides a measure of the amount of heat added
    举例来说,如果能由一个放热化学反应所吸收,在一个货柜内的水,这一变化在水温提供了一个衡量的数额热量补充。
  3. From the viewpoint of safety technology of chemical reaction with heat release . the technical causes of getting out of control of these reactors are analyzed . hazardous effects of the leakage of chemical reactants both on human and environment , and the existing problems in current safety technological measures are also discussed . the cooling method of jet vaporization based on the jet principle and the direct cooling by non - vaporized liquid are introduced . the development trends of the safety technology for chemical reactors are analyzed
    放热化学反应的安全技术观点出发,分析了放热化学反应器失控的技术原因、化学反应物泄漏对人员和环境造成的危害、现有安全技术措施存在的问题;介绍了基于射流原理的喷射汽化和非汽化冷却液体的直接冷却方法;还展望了化学反应器安全技术的发展方向。
  4. Abstract : from the viewpoint of safety technology of chemical reaction with heat release . the technical causes of getting out of control of these reactors are analyzed . hazardous effects of the leakage of chemical reactants both on human and environment , and the existing problems in current safety technological measures are also discussed . the cooling method of jet vaporization based on the jet principle and the direct cooling by non - vaporized liquid are introduced . the development trends of the safety technology for chemical reactors are analyzed
    文摘:从放热化学反应的安全技术观点出发,分析了放热化学反应器失控的技术原因、化学反应物泄漏对人员和环境造成的危害、现有安全技术措施存在的问题;介绍了基于射流原理的喷射汽化和非汽化冷却液体的直接冷却方法;还展望了化学反应器安全技术的发展方向。
  5. Then , the one dimensional model is used to study on some factors ( viscosity , the heat given out by the chemical reaction in the chemical laser ) which bring the loss of the total pressure . the answer shows that increasing the mach number at out of the nozzles in the laser can reduce the loss of the total pressure
    在此基础上,用简化的一维模型研究了引起激光器总压损失的几个要素,它们是:喷管的粘性损失,光腔内的放热化学反应。研究的结果表明,提高喷管出口马赫数有利于减少这些因素导致的总压损失。

Related Words

  1. 放热
  2. 化学反应结垢
  3. 放热速率
  4. 放热模式
  5. 放热峰
  6. 放热的
  7. 结晶放热
  8. 放热地面
  9. 放热加热
  10. 剩余放热
  11. 放热核衰变
  12. 放热化合物
  13. 放热化学反应机理
  14. 放热还原反应
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