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IGCC粗煤氣高溫脫硫(英文版)

IGCC粗煤氣高溫脫硫(英文版)

定 價(jià):¥98.00

作 者: 吳江,劉東京,周偉國(guó),劉啟貞,黃亞繼 著,翁史烈 編
出版社: 上海交通大學(xué)出版社
叢編項(xiàng): 能源與環(huán)境出版工程(第二期)
標(biāo) 簽: 暫缺

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ISBN: 9787313202086 出版時(shí)間: 2018-12-01 包裝: 精裝
開(kāi)本: 16開(kāi) 頁(yè)數(shù): 155 字?jǐn)?shù):  

內(nèi)容簡(jiǎn)介

  《IGCC粗煤氣高溫脫硫(英文版)》系“能源與環(huán)境出版工程”(第二期)之一,較為全面地介紹了整體煤氣化聯(lián)合循環(huán)發(fā)電(1GCC)的高溫脫硫技術(shù)。書(shū)中系統(tǒng)介紹了單一金屬氧化物脫硫劑、復(fù)合金屬氧化物脫硫劑、稀土氧化物脫硫劑和納米金屬單質(zhì)脫硫劑的制備方法;對(duì)不同氣氛下各脫硫劑的反應(yīng)機(jī)理、脫硫反應(yīng)動(dòng)力學(xué)、再生后脫硫劑的脫硫活性和使用循環(huán)次數(shù)進(jìn)行了相應(yīng)的實(shí)驗(yàn)研究;此外,該書(shū)提供了碳?xì)饽z(作為脫硫劑的載體)具體的制備方法和改性措施,介紹了其在吸附、催化等領(lǐng)域的應(yīng)用前景。通過(guò)閱讀該書(shū),讀者可以全面了解lGCC潔凈發(fā)電技術(shù)中的關(guān)鍵環(huán)節(jié)和未來(lái)有可能實(shí)現(xiàn)的新型技術(shù)應(yīng)用。

作者簡(jiǎn)介

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圖書(shū)目錄

1 H2S and Its Effect on Devices and Environment
1.1 H2S Emission Sources
1.2 H2S Chemical Properties
1.3 Acid Gas Removal Methods
1.4 IGCC Environmental Performance
References
2 Status of Coal Gas H2S Removal
2.1 Clean Coal Technology
2.1.1 Pre-combustion Clean Technologies
2.1.2 Combustion Adjusting and Optimization
2.1.3 Flue Gas Emission Controls
2.2 H2S Removal for Integrated Gasification Combined Cycle
2.2.1 Introduction of Integrated Gasification Combined Cycle
2.2.2 Integrated Gasification Combined Cycle Desulfurization
2.3 Low-Temperature Coal Gas Desulfurizers
2.4 High-Temperature Coal Gas Desulfurizers
2.4.1 Unsupported Desulfurizers
2.4.2 Supported Desulfurizers
2.4.3 Kinetic Studies for High-Temperature Desulfurization..
References
3 Rare-Earth Oxide Desulfurizers
3.1 Desulfurizer Synthesis and Desulfurization System
3.1.1 Synthesis and Characterization of Rare-Earth Oxide Desulfurizers
3.1.2 Fixed-bed Reactor Desulfurization System
3.1.3 Activity Evaluation of Rare-Earth Oxide Desulfurizers..
3.2 Cerium-Based High-Temperature Desulfurizers
3.2.1 Textural Properties of Cerium-Based Desulfurizers
3.2.2 Crystalline Structures of Cerium-Based Desulfurizers...
3.2.3 Surface Elemental Analysis of Cerium-Based Desulfurizers
3.2.4 Activity of Cerium-Based Desulfurizers
3.3 Lanthanum-Based High-Temperature Desulfurizers
3.3.1 Textural Properties of Lanthanum-Based Desulfurizers
3.3.2 Crystalline Structure of Lanthanum-Based Desulfurizers
3.3.3 Surface Elemental Analysis of Lanthanum-Based Desulfurizers
3.3.4 Activity of Lanthanum-Based Desulfurizers
3.4 Sulfidation Mechanism of Rare-Earth Oxide Desulfurizers
3.5 Summary
References
4 Nano Elemental Metal Desulfurizers
4.1 Sorbent Synthesis and Activity Tests
4.1.1 Carbon Aerogel Synthesis
4.1.2 Synthesis of Nano Elemental Metal Desulfurizers
4.1.3 Activity Tests for Nano Elemental Metal Desulfurizers
4.2 Nano Fe High-Temperature Desulfurizers
4.2.1 Textural Properties of Nano Fe Desulfurizers
4.2.2 Crystalline Structures of Nano Fe Desulfurizers
4.2.3 Surface Elemental Analysis of Nano Fe Desulfurizers..
4.2.4 Activity of Nano Fe Desulfurizers
4.3 Nano Cu High-Temperature Desulfurizers
4.3.1 Textural Properties of Nano Cu Desulfurizers
4.3.2 Crystalline Structures of Nano Cu Desulfurizers
4.3.3 Surface Elemental Analysis of Nano Cu Desulfurizers
4.3.4 Activity of Nano Cu Desulfurizers
4.4 Sulfidation Mechanism of Nano Elemental Metal Desulfurizers
4.5 Summary
References
5 Desulfurization Kinetics and Thermodynamics
5.1 Desulfurizer TPR Kinetics
5.1.1 H2-TPR Experiments
5.1.2 Kinetic Equations of Desulfurizer Reduction
5.1.3 H2-TPR Profile and Kinetic Parameter Analysis
5.2 Desulfurizer Deactivation Kinetics
5.3 Desulphurization Thermodynamics
5.3.1 Thermodynamic Equations of Desulfurization
5.3.2 Thermodynamic Properties of Desulfurizers
5.4 Influence of Gas Composition on Desulfurization Performance
5.4.1 Effect of CO on Rare Earth Oxide Desulfurization Performance
5.4.2 Effect of H2 on Rare Earth Oxide Desulfurization Performance
5.4.3 Effect of CO and H2 on Nano Metal Desulfurization Performance
5.4.4 Effect of CO and H2 on Sulfidation Products
5.5 Summary
References
Index

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