Development and industrial application of catalyzer for low-temperature hydrogenation hydrolysis of Claus tail gas

With the implementation of more strict national environmental protection laws, energy conservation, emission reduction and clean production will present higher requirements for sulfur recovery tail gas processing techniques and catalyzers. As for Claus tail gas, conventional hydrogenation catalyzers...

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Main Authors: Honggang Chang, Ronghai Zhu, Zongshe Liu, Jinlong He, Chongrong Wen, Sujuan Zhang, Yang Li
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2015-10-01
Series:Natural Gas Industry B
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352854015000704
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spelling doaj-33aa7af662a54408a47bb1a4231b2df22021-03-02T11:11:52ZengKeAi Communications Co., Ltd.Natural Gas Industry B2352-85402015-10-012436837310.1016/j.ngib.2015.09.011Development and industrial application of catalyzer for low-temperature hydrogenation hydrolysis of Claus tail gasHonggang Chang0Ronghai Zhu1Zongshe Liu2Jinlong He3Chongrong Wen4Sujuan Zhang5Yang Li6Natural Gas Research Institute of Southwest Oil & Gas Field Company, PetroChina, Chengdu, Sichuan 610213, ChinaNatural Gas Research Institute of Southwest Oil & Gas Field Company, PetroChina, Chengdu, Sichuan 610213, ChinaNatural Gas Research Institute of Southwest Oil & Gas Field Company, PetroChina, Chengdu, Sichuan 610213, ChinaNatural Gas Research Institute of Southwest Oil & Gas Field Company, PetroChina, Chengdu, Sichuan 610213, ChinaNatural Gas Research Institute of Southwest Oil & Gas Field Company, PetroChina, Chengdu, Sichuan 610213, ChinaNatural Gas Research Institute of Southwest Oil & Gas Field Company, PetroChina, Chengdu, Sichuan 610213, ChinaNatural Gas Research Institute of Southwest Oil & Gas Field Company, PetroChina, Chengdu, Sichuan 610213, ChinaWith the implementation of more strict national environmental protection laws, energy conservation, emission reduction and clean production will present higher requirements for sulfur recovery tail gas processing techniques and catalyzers. As for Claus tail gas, conventional hydrogenation catalyzers are gradually being replaced by low-temperature hydrogenation catalyzers. This paper concentrates on the development of technologies for low-temperature hydrogenation hydrolysis catalyzers, preparation of such catalyzers and their industrial application. In view of the specific features of SO2 hydrogenation and organic sulfur hydrolysis during low-temperature hydrogenation, a new technical process involving joint application of hydrogenation catalyzers and hydrolysis catalyzers was proposed. In addition, low-temperature hydrogenation catalyzers and low-temperature hydrolysis catalyzers suitable for low-temperature conditions were developed. Joint application of these two kinds of catalyzers may reduce the inlet temperatures in the conventional hydrogenation reactors from 280 °C to 220 °C, at the same time, hydrogenation conversion rates of SO2 can be enhanced to over 99%. To further accelerate the hydrolysis rate of organic sulfur, the catalyzers for hydrolysis of low-temperature organic sulfur were developed. In lab tests, the volume ratio of the total sulfur content in tail gas can be as low as 131 × 10−6 when these two kinds of catalyzers were used in a proportion of 5:5 in volumes. Industrial application of these catalyzers was implemented in 17 sulfur recovery tail gas processing facilities of 15 companies. As a result, Sinopec Jinling Petrochemical Company had outstanding application performances with a tail gas discharging rate lower than 77.9 mg/m3 and a total sulfur recovery of 99.97%.http://www.sciencedirect.com/science/article/pii/S2352854015000704High-sulfur natural gasClausTail gasLow-temperatureHydrogenationHydrolyzationCatalyzerIndustrial application
collection DOAJ
language English
format Article
sources DOAJ
author Honggang Chang
Ronghai Zhu
Zongshe Liu
Jinlong He
Chongrong Wen
Sujuan Zhang
Yang Li
spellingShingle Honggang Chang
Ronghai Zhu
Zongshe Liu
Jinlong He
Chongrong Wen
Sujuan Zhang
Yang Li
Development and industrial application of catalyzer for low-temperature hydrogenation hydrolysis of Claus tail gas
Natural Gas Industry B
High-sulfur natural gas
Claus
Tail gas
Low-temperature
Hydrogenation
Hydrolyzation
Catalyzer
Industrial application
author_facet Honggang Chang
Ronghai Zhu
Zongshe Liu
Jinlong He
Chongrong Wen
Sujuan Zhang
Yang Li
author_sort Honggang Chang
title Development and industrial application of catalyzer for low-temperature hydrogenation hydrolysis of Claus tail gas
title_short Development and industrial application of catalyzer for low-temperature hydrogenation hydrolysis of Claus tail gas
title_full Development and industrial application of catalyzer for low-temperature hydrogenation hydrolysis of Claus tail gas
title_fullStr Development and industrial application of catalyzer for low-temperature hydrogenation hydrolysis of Claus tail gas
title_full_unstemmed Development and industrial application of catalyzer for low-temperature hydrogenation hydrolysis of Claus tail gas
title_sort development and industrial application of catalyzer for low-temperature hydrogenation hydrolysis of claus tail gas
publisher KeAi Communications Co., Ltd.
series Natural Gas Industry B
issn 2352-8540
publishDate 2015-10-01
description With the implementation of more strict national environmental protection laws, energy conservation, emission reduction and clean production will present higher requirements for sulfur recovery tail gas processing techniques and catalyzers. As for Claus tail gas, conventional hydrogenation catalyzers are gradually being replaced by low-temperature hydrogenation catalyzers. This paper concentrates on the development of technologies for low-temperature hydrogenation hydrolysis catalyzers, preparation of such catalyzers and their industrial application. In view of the specific features of SO2 hydrogenation and organic sulfur hydrolysis during low-temperature hydrogenation, a new technical process involving joint application of hydrogenation catalyzers and hydrolysis catalyzers was proposed. In addition, low-temperature hydrogenation catalyzers and low-temperature hydrolysis catalyzers suitable for low-temperature conditions were developed. Joint application of these two kinds of catalyzers may reduce the inlet temperatures in the conventional hydrogenation reactors from 280 °C to 220 °C, at the same time, hydrogenation conversion rates of SO2 can be enhanced to over 99%. To further accelerate the hydrolysis rate of organic sulfur, the catalyzers for hydrolysis of low-temperature organic sulfur were developed. In lab tests, the volume ratio of the total sulfur content in tail gas can be as low as 131 × 10−6 when these two kinds of catalyzers were used in a proportion of 5:5 in volumes. Industrial application of these catalyzers was implemented in 17 sulfur recovery tail gas processing facilities of 15 companies. As a result, Sinopec Jinling Petrochemical Company had outstanding application performances with a tail gas discharging rate lower than 77.9 mg/m3 and a total sulfur recovery of 99.97%.
topic High-sulfur natural gas
Claus
Tail gas
Low-temperature
Hydrogenation
Hydrolyzation
Catalyzer
Industrial application
url http://www.sciencedirect.com/science/article/pii/S2352854015000704
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