Hydrogen iodide

美 [ˈhaɪdrədʒən ˈaɪədaɪd]英 [ˈhaɪdrədʒən ˈaɪədaɪd]
  • 网络碘化氢;氢碘酸
Hydrogen iodideHydrogen iodide
  1. An acid formed by aqueous solution of hydrogen iodide .

    碘化氢的水溶液形成的酸。

  2. ( HI ) a colorless or yellow aqueous solution of hydrogen iodide .

    (HI)一种无色或黄色的碘化氢水溶液。

  3. Experimental Study on the Catalytic Decomposition of Hydrogen Iodide for SI Thermochemical Cycle

    热化学硫碘制氢中碘化氢催化分解的实验研究

  4. Close-coupling calculation of the cross sections for collision between helium atoms and hydrogen iodide molecules

    He原子与HI分子碰撞截面的密耦计算

  5. Bunsen reaction and hydrogen iodide decomposition in IS ( iodine-sulfur ) cycle , the most industrialized thermochemical cycle was studied .

    本文研究了最接近工业化阶段的热化学循环&硫碘循环(SI循环)中的Bunsen反应和碘化氢分解反应。

  6. A colorless gas that yields hydroiodic acid in aqueous solution . ( HI ) a colorless or yellow aqueous solution of hydrogen iodide .

    一种无色气体,在水溶液中形成氢碘酸。(HI)一种无色或黄色的碘化氢水溶液。

  7. Gas phase synthesis of hydrogen iodide was taken for example . The example showed how to calculate extent of reaction from equilibrium constant and to calculate the heat capacities at constant pressure and constant volume .

    以碘化氢气相合成反应为例,说明如何由化学反应的平衡常数计算平衡反应进度,进而计算定压热容和定容热容。

  8. Our results indicated that although aqueous hydrogen iodide is a strong electrolytic solution , by use of NRTL equation and expanding its parameters into polynomial series of temperature , it was able to predict multicomponent equilibrium from binary data .

    结果表明,虽然碘化氢水溶液是强电解质溶液,利用NRTL方程,并将其参数展开为温度的多项式,仍可满意地关联并准确预测多元系的汽液平衡。

  9. The effect of reactant ratio 、 temperature and pressure on the thermodynamic equilibrium of Bunsen reaction were discussed and the effect of temperature 、 pressure 、 membrane reactor and vapor on the thermodynamic equilibrium of hydrogen iodide decomposition were discussed too .

    研究了反应物比例、温度、压力对bunsen反应的影响,温度、压力、膜反应器和水的存在对碘化氢分解热力学平衡状态的影响,对选择Bunsen反应和碘化氢分解的条件提供了一定的参考。

  10. Studies on the Kinetic Behaviour of Cr (ⅵ) in the Reaction Between Hydrogen Peroxide and Iodide

    铬(Ⅵ)在过氧化氢氧化碘离子反应中的动力学行为的研究