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Interaction of methanol, acetone and formaldehyde with ice surfaces between 198 and 223 K

机译:甲醇,丙酮和甲醛与198至223 K之间冰面的相互作用

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摘要

The rate and extent of physical adsorption of methanol, acetone and formaldehyde on ice were measured as a function of concentration and temperature. The gas ice interaction was analysed by applying adsorption isotherms to determine temperature dependent Langmuir constants, K(T) and saturation surface coverage, N-max. At low coverage a partitioning constant K-#(T) was derived. The dependence of K-# on temperature is given by K-#(T) = 6.24 x 10(-12) exp(6178/T) cm for methanol and K-#(T) = 1.25 x 10(-10) exp(5575/T) cm for acetone. For formaldehyde a temperature independent expression, K-# = 0.7 cm was derived. From these data adsorption enthalpies DeltaH(ads) of (-46 +/- 7) and (-51 +/- 10) kJ mol(-1) were obtained for acetone and methanol, respectively. The results were used to calculate the equilibrium partitioning of these trace gases to ice surfaces under conditions relevant to the atmosphere. [References: 26]
机译:测量甲醇,丙酮和甲醛在冰上的物理吸附速率和程度,作为浓度和温度的函数。通过应用吸附等温线来分析气冰相互作用,以确定温度相关的朗缪尔常数K(T)和饱和表面覆盖率N-max。在低覆盖率下,得出分配常数K-#(T)。 K-#对温度的依赖性由甲醇的K-#(T)= 6.24 x 10(-12)exp(6178 / T)cm和K-#(T)= 1.25 x 10(-10)exp给出丙酮(5575 / T)厘米。对于甲醛,可以得出温度无关的表达式,K-#= 0.7 cm。根据这些数据,分别获得了丙酮和甲醇的(-46 +/- 7)和(-51 +/- 10)kJ mol(-1)的吸附焓DeltaH(ads)。结果被用来计算在与大气有关的条件下这些痕量气体到冰表面的平衡分配。 [参考:26]

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