已阅读5页,还剩19页未读, 继续免费阅读
版权说明:本文档由用户提供并上传,收益归属内容提供方,若内容存在侵权,请进行举报或认领
文档简介
Free Energy, Vapor Pressure and the Equilibrium Between a Vapor and Condensed Phase References: Thermodynamics, G. N. Lewis and M. Randall, rev. K. Pitzer and L. Brewer, McGraw Hill, New York (1961). Chemical Thermodynamics, I. Klotz, Benjamin, New York (1964). The Gibbs Free Energy is generally agreed to be the “weapon of choice” for describing (a) chemical reactions and (b) equilibria between phases. It is defined as: G = H TS = E + PV TS(1) WhereH = Enthalpy E = Total internal energy T = Absolute Temperature S = Entropy Obviously dG = dE + PdV +VdP TdS SdT Aside Remember that thermodynamic variables come in pairs One is “intrinsic” (does not depend on system size) One is “extrinsic” (depends on system size) Examples: P and V, T and S Also G and N, the number of moles of stuff in the system. Hence G is the appropriate variable when material is moving between phases From the First Law of Thermodynamics dE = TdS PdV since dS = Q/T and the mechanical work done on a system when it expands is PdV. Substituting into dG = dE + PdV +VdP TdS SdT Leaves:dG = -SdT + VdP Apply equation to a closed system Closed system contains pure substance vapor condensed phase Phases co-exist in equilibrium. Objective will be to see how the pressure of the vapor depends on the temperature of the system. Write the Free Energy Equation twice Once for each phase dGc = -ScdT + VcdPc refers to the condensed phase dGv = -SvdT + VvdPv refers to the vapor phase Objective of the Exercise Change system temperature See how the pressure of the vapor changes Note: Both the vapor and condensed phase are in thermal equilibrium Both are at the same temperature System remains in thermal equilibrium if the molar free energy of the system, also known as the chemical potential, remains constant. Definition of chemical equilibrium between two phases Free energy is the same in both phases Gc = Gv Changes in free energy when some independent variable is changed must be the same if they are to remain in equilibrium dGc = dGv -ScdT + VcdP = -SvdT + VvdP (Sv - Sc )dT = (Vv- Vc)dP (Sv - Sc ) is the entropy change that takes place when material moves from the condensed phase to the vapor S = Q/T where Q is the amount of heat required per mole of material moved between the phases Q is just the heat of vaporization! dP/dT = (Sv Sc)/(Vv Vc) = Hv/(TV) This is the Clapeyron equation (E. Clapeyron, J. cole polytech. (Paris) 14(23), 153 (1834). It relates the change in pressure of a vapor to the temperature in a closed, mono-component system to the heat of vaporization, system temperature and molar volume change of the material on vaporization. Creating of an Ideal Gas For lack of a better model, we treat most vapors as ideal gases, whose molar volume is given by: V/n = RT/P Alternatively, equation of state is needed Molar volume of gas is typically factor of 500 larger than condensed phase Hence Vc is negligible in comparison Substituting and Integrating dP = (Hv/Vv)dT/T = (PHv/RT)dT/T dP/P = Hv/R)dT/T2 ln(P(T)/ P0) = -(Hv/R)(1/T 1/T0) P(T) = P0 exp(-Hv/R(1/T 1/T0) The vapor pressure in equilibrium with a condensed phase increases exponentially (sort of: exp(-1/T) isnt exactly an exponential!) with temperature from zero up to the critical temperature. Borne out in the vapor pressure charts and generating functions for them. Deviations from linearity on the log-log plot Temperature dependence of the heat of vaporization exp (-1/T) isnt really linear in the exponent. Heat of Vaporization from CRC Data Log10p(Torr) = -0.2185*A/T + B Generating Function s Imperfect Normal boiling point of water on the plot is about 108.2 C. I cheated; I looked at the data! What does “Normal boiling point” mean? What does “boiling” mean? Kubaschewski, Evans and Alcock, Metallurgical Thermochemistry, Pergammon, Oxford (1967) Log10p(Torr) = A/T + BlogT + CT + D From Kubaschewskis Data Vapor pressure at 100 C is 758 Torr Much better approximation! Caveat emptor! “Life is like a sewer: the quality of the fit depends on the number of terms in the generating function!” RCA Charts Great resource tool: the “RCA Charts”, which live in 327 JFB. Treat them with great respect: they are much older than you are and irreplaceable. “Often imitated Never duplicated” Other Sources of Data Vapor Pressures of Pure Substances, Daniel R. Stull, Industrial and Engineering Chemistry, April 1947, pp. 517 550. (Tables give data on temperature required to generate a specific vapor pressure.) Vapour Pressure of the Elements, An. N. Nesmeyanov, Academic Press, NY, NY (1963). Gibbs Phase Rule F = C P + 2 F = number of degrees of freedom C = number of components P = number of phases What is a phase? What is a component? What is a degree of freedom? Phase Diagram of Water Boiling curve “Normal boiling point” Melting curve Sublimation curve “Melting point” Homework 1. Determine the vapor pressure at 77 K Water Carbon monoxide What is the boiling point of water in a vacuum system at 10-6 Torr? What is the vapor pressure of carbon dioxide at room temperature? What is the condensed phase of carbon dioxide in equilibrium with the vapor at room temperature? How do you know? ;51=M(I$EYAVxRtjpflb 8.40-K*H!DXzTvPsioeka:640-K63N)J%G#CWySuOrhnd9;52=M(I$EYAVxRtjpflc 8.40-K*H!DXzTvQsioeka:63N)J%FZCWySuOqgnd9;51+M(I$EYAUxRtjpflb8.40-K63N)J53N)J%F#CWySuOqgnd9;51=M(I$EYAUxRtjpflb 8.40-K53N)J%G#CWySuOqhnd9;51=M(I$EYAVxRtjpflb 8.40-K*H!DXzTvPsioeka:63N)K63N)J52=M(I$EYBVxRtjpflc 8.40-L*H!DXzTvQsioeka:63N)J%F#CWySuOqgnd9;51=M(I$EYAUxRtjpflb8.40-K53N)J%F#CWySuOqhnd9;51=M(I$EYAVxRtjpflb 8.40-K51+L(I$EYAUwQtjpflb7.40-K53N)J%F#CWySuOqhnd9;51=M(I$EYAVxRtjpflb 8.40-K51+L(I$EYAUwQtjpflb740-K53N)J%F#CWySuOqhnd9;51=M(I$EYAUxRtjpflb 8.40-K51+L(I$EYAUwQtjpflb740-K53N)J%F#CWySuOqhnd9;51=M(I$EYAUxRtjpflb 8.40-K51+M(I$EYAUxRtjpflb8.40-K63N)J53N)J%F#CWySuOqgnd9;51=M(I$EYAUxRtjpflb 8.40-K52=M(I$EYAVxRtjpflc 8.40-K*H!DXzTvQsioeka:63N)J%FZCWySuOqgnd9;51+M(I$EYAUxRtjpflb8.40-K63N)J51+L*I$EYAUwQsjpflb730-K63N)J%G#CWySuOqhnd9;52=M(I$EYAVxRtjpflc 8.40-K*H!DXzTvPsioeka:63N)J%FZCWySuOqgnd9;51+M(I$EYAUwRtjpflb8.40-K51=M(I$EYAVxRtjpflb 8.40-K63N)J%G#CWySuOqhnd9;52=M(I$EYAVxRtjpflc 8.40-K*H!DXzTvPsioeka:63N)J%FZCWySOqgmc 8.51+L*H!DYAUwQsioflb73N-K53N)J%F#CWySuOqhnd9;51=M(I$EYAUxRtjp
温馨提示
- 1. 本站所有资源如无特殊说明,都需要本地电脑安装OFFICE2007和PDF阅读器。图纸软件为CAD,CAXA,PROE,UG,SolidWorks等.压缩文件请下载最新的WinRAR软件解压。
- 2. 本站的文档不包含任何第三方提供的附件图纸等,如果需要附件,请联系上传者。文件的所有权益归上传用户所有。
- 3. 本站RAR压缩包中若带图纸,网页内容里面会有图纸预览,若没有图纸预览就没有图纸。
- 4. 未经权益所有人同意不得将文件中的内容挪作商业或盈利用途。
- 5. 人人文库网仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对用户上传分享的文档内容本身不做任何修改或编辑,并不能对任何下载内容负责。
- 6. 下载文件中如有侵权或不适当内容,请与我们联系,我们立即纠正。
- 7. 本站不保证下载资源的准确性、安全性和完整性, 同时也不承担用户因使用这些下载资源对自己和他人造成任何形式的伤害或损失。
最新文档
- 花椒家族的电子合同
- 隔音彩色海绵采购合同
- 新建基础设施合同
- 危固间改造合同
- 合同剩余不执行协议
- 塑胶设备转让协议书
- 外卖招聘骑手协议书
- 垃圾清理责任协议书
- 场地管理协议书模板
- 员工外出居住协议书
- 2025国际胰腺病学会急性胰腺炎修订指南解读课件
- 2025-2026学年高一化学上学期第一次月考卷(四川)含答案解析
- 2025年江苏省公考《申论》(B卷)题及参考答案
- 雨课堂学堂云在线《中国马克思主义与当代(北京化工大学 )》单元测试考核答案
- 2025年陕西有色金属科工贸服务有限公司招聘(24人)笔试考试参考题库及答案解析
- 2025年石化油品市场调研合同协议
- 2025年飞行员招聘面试参考题库及答案
- 2025年社区工作者考试题库(各地真题)附答案
- 古文二则课件四知
- 【《研发管理的定义和理论基础概述》2800字】
- 地下室防水工程质量监理细则
评论
0/150
提交评论