引用本文:杨超越,刘可,李林峰,王军,胡天友,张小兵. 天然气净化装置影响有机硫脱除的因素研究[J]. 石油与天然气化工, 2021, 50(2): 9-16.
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天然气净化装置影响有机硫脱除的因素研究
杨超越1,2,刘可1,2,李林峰1,2,王军3,胡天友1,2,张小兵3
1.中国石油西南油气田公司天然气研究院;2.国家能源高含硫气藏开采研发中心 ;3.中国石油西南油气田公司天然气净化总厂
摘要:
GB 17820-2018《天然气》规定,进入长输管网的天然气气质需满足H2S质量浓度≤6 mg/m3、CO2摩尔分数≤3%、总硫质量浓度≤20 mg/m3的要求。为达到GB 17820-2018的要求,中国石油西南油气田公司已有3个净化厂将原MDEA脱硫溶液升级为有机硫脱除溶剂CT8-24。与常规MDEA化学溶剂不同,有机硫脱除溶剂属于物理-化学溶剂,其对有机硫的脱除既有物理溶解也有化学吸收。因此,各工艺参数对有机硫脱除的影响更为复杂。分别在实验室及天然气净化厂对影响有机硫脱除的因素进行试验研究,包括吸收压力、气液比以及气液接触时间等,系统分析了各个因素变化对有机硫脱除率的影响。结果 表明,较高的吸收压力、较低的气液比和较长的气液接触时间有利于有机硫的深度脱除,为现场装置的优化运行以及其他天然气净化厂的气质达标提供了技术参考。
关键词:  天然气  净化厂  有机硫  脱硫  GB 17820  气质达标
DOI:10.3969/j.issn.1007-3426.2021.02.002
分类号:
基金项目:中国石油天然气股份有限公司重大科技专项“西南油气田天然气上产300亿立方米关键技术研究与应用——四川盆地气田开发地面系统安全清洁高效运行关键技术研究与应用”(2016E-0610)
Research on the factors affecting organic sulfur removal of natural gas purification unit
Yang Chaoyue1,2, Liu Ke1,2, Li Linfeng1,2, Wang Jun3, Hu Tianyou1,2, Zhang Xiaobing3
1. Research Institute of Natural Gas Technology, PetroChina Southwest Oil & Gasfield Company, Chengdu, Sichuan, China;2. National Energy R&D Center of High Sulfur Gas Exploitation, Chengdu, Sichuan, China;3. Natural Gas Purification Plant General, PetroChina Southwest Oil & Gasfield Company, Chongqing, China
Abstract:
The gas quality of natural gas entering the long-distance pipeline network shall meet the requirements of H2S mass concentration no more than 6 mg/m3, CO2 molar fraction no more than 3%, and total sulfur mass concentration no more than 20 mg/m3 in GB 17820-2018 Natural Gas. In order to meet the requirements of GB 17820-2018, the original MDEA desulfurization solution of three purification plants of PetroChina Southwest Oil and Gasfield Company has been upgraded to organic sulfur removal solvent CT8-24. The organic sulfur removal solvent is different from conventional MDEA chemical solvent. It belongs to physical-chemical solvent, which can remove organic sulfur both by physical dissolution and chemical absorption. Therefore, the influence of process parameters on organic sulfur removal is more complex. The factors affecting the removal of organic sulfur were studied in laboratory and purification plant respectively, including absorption pressure, gas-liquid ratio and gas-liquid contact time, etc. The effects of various factors on the removal rate of organic sulfur were systematically analyzed. The results showed that high absorption pressure, low gas-liquid ratio and long gas-liquid contact time were favorable to the deep removal of organic sulfur. It provides a technical reference for optimizing the unit operation and the gas quality of other natural gas purification plants up to standard.
Key words:  natural gas  purification plant  organic sulfur  desulfurization  GB 17820  gas quality up to standard