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《化学工艺学》课程PPT教学课件(英文讲稿)Chapter 6 Hydrogenation and dehydrogenation process

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6.1 Introduction 6.2 General rules of hydrogenation, dehydrogenation reactions 6.3 Synthetic ammonia preparation by nitrogen hydrogenation 6.4 Methanol synthesis 6.5 Styrene preparation from ethylbenzene
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Chapter 6Hydrogenation and dehydrogenation process

Hydrogenation and dehydrogenation process Chapter 6

6.1IntroductionHydrogenation reaction types(1)Hydrogenation of double bond of unsaturatedalkyne and alkeneC+ H2→

6.1 Introduction 一、Hydrogenation reaction types (1) Hydrogenation of double bond of unsaturated alkyne and alkene

(2)AromatichydrogenationCH11-CH=CH2H24H2-C2H5NixSelectivityhydrogenation3) Hydrogenation of the compound containing oxygenCO + 2H2CH3OH(CH3)2CO +. H2-(CH3)2CHOHRCOOH + 2H2→RCH2OH + H2C

(2) Aromatic hydrogenation (3) Hydrogenation of the compound containing oxygen Selectivity hydrogenation H2 4H2

(4)Hydrogenation of the compound containing nitrogenN2+3H2*2NH3N=C(CH)C=N+4H2--→HN(CH2NH2NH2NO.+ 2H20+ 3H2(5)HydrogenolysisC6HsCH3 +H2+ CH6 + CH4CHsSH + H2 →C2H6 + H2SCsHsN + 5H2 CsH12 + NH

(4) Hydrogenation of the compound containing nitrogen (5) Hydrogenolysis

二、Dehydrogenationreactionltypes(1)Dehydrogenation of alkanes to produce alkenes, dienes andaromaticsn-C4H10+n-C4H8CH2-CH-CH--CH2C12H26 - n -C12H24 + H2n-CH14→CH6 + 4H2(2)Dehydrogenationofalkenestoproducedienesi-CsH10→ CH2-CH--C(CH3)-CH2 + H

二、Dehydrogenation reaction types (1) Dehydrogenation of alkanes to produce alkenes, dienes and aromatics (2) Dehydrogenation of alkenes to produce dienes

(3)DehydrogenationofalkylaromaticstoproducealkenylaromaticsCH5CHs -→ C,HsCHCH2 + H2CHsC6H4CHs-→ CH2---CH---C6H4CH--CH2 + 2H(4)Dehydrogenation of alcohols toproduce aldehydes and ketones→CH3CHO + H2CH3CH2OH-CH3CHOHCH3 →CH3COCH3 + H

(3) Dehydrogenation of alkyl aromatics to produce alkenyl aromatics (4) Dehydrogenation of alcohols to produce aldehydes and ketones

6.2 General rules of hydrogenation,dehydrogenation reactionsGeneralrules of catalytic hydrogenationreactionsl.Thermodynamic analysisTable 6-1Thermal effectvalueof hydrogenation reactionat25℃反AHe/(kI/mol)应式174.3CH4CH2+H2132.7CH4 + H2 -→ CH690.8CO+2H2---→ CH3OH176.9CO+3H2CH4+H2O56.2CHCOCH3+H2→(CH)2CHOH69.1CH3CH2CH2CHO+H2"→CH3(CH2)3OH208.1CgH, + 3H2 CH1242.0CHsCH3+H2-→CH+CH4101.2+CsHeCsHs + H2

6.2 General rules of hydrogenation, dehydrogenation reactions 一、General rules of catalytic hydrogenation reactions 1. Thermodynamic analysis Table 6-1 Thermal effect value of hydrogenation reaction at 25℃

AHo(1)TemperatureInk△H<0, :.T↑, Kp↓.RT2dTDKp is large in a wide temperature range, almost irreversiblereaction.Kp is large at medium temperature, Kpdecreases at hightemperature,thermodynamicsis dominant?Kpislarge at lowtemperature,butKp deceases in theavailable temperature range,thermodynamics unfavorablechemical equilibriumbecomes a keyfactor

(1)Temperature △ H < 0, ∴ T↑ ,K P ↓. ① KP is large in a wide temperature range, almost irreversible reaction. ② KP is large at medium temperature, KP decreases at high temperature, thermodynamics is dominant ③ KP is large at low temperature, but KP deceases in the available temperature range, thermodynamics unfavorable, chemical equilibrium becomes a key factor

(2)Pressure△ n<0,For hydrogenation reaction,:. P↑ , Kp↑, balance yield↑

(2)Pressure For hydrogenation reaction,△ n<0, ∴ P↑ ,Kp↑ ,balance yield↑

(3)hydrogenratioBA+H2HVHH2↑Advantages: conversion (X)increases, andit is favorableto removereactionheatDisadvantages:concentration of product (yp)decreases,and separationdifficult,alargeamountof Hzcyclelargeenergyconsumption

(3)hydrogen ratio A +H2 B H2↑ Advantages: conversion (X) increases, and it is favorable to remove reaction heat Disadvantages: concentration of product (yB) decreases, and separation difficult, a large amount of H2 cycle, large energy consumption

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