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中国腐蚀与防护学报  2015, Vol. 35 Issue (3): 251-256    DOI: 10.11902/1005.4537.2014.033
  研究报告 本期目录 | 过刊浏览 |
油气田H2S腐蚀体系模拟方法探究
王凤平(),刘岚,丁言伟,胡隋军,刘照斌,刘丹,张丽
Simulation of Carbon Steel Corrosion in Oil-gas Field Produced Waters Containing Hydrogen Sulfide
Fengping WANG(),Lan LIU,Yanwei DING,Suijun HU,Zhaobin LIU,Dan LIU,Li ZHANG
Chemistry and Chemical Engineering, Liaoning Normal University, Dalian 116029, China
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摘要: 

通过两种方法向反应釜内引入H2S气体模拟含H2S油气田腐蚀体系:一是使用钢瓶直接通入H2S,二是通过化学反应间接生成H2S。在高压釜内研究了20#钢在这两种不同方法引入H2S体系中腐蚀情况的差异。通过失重法和电化学法研究了两种方法下20#钢的腐蚀速率及腐蚀机理;通过SEM观察腐蚀形貌;并利用EDS分析腐蚀产物的组成。结果表明:20#钢在由化学反应产生H2S模拟油气田环境中的腐蚀速率为0.1077 mm/a,腐蚀产物膜粗糙、疏松。而其在直接导入H2S模拟油气田环境中的腐蚀速率为0.0518 mm/a,腐蚀产物膜均匀、致密、平整,接近现场实际情况。即H2S的导入方法对油气田模拟腐蚀体系的建立有重要的影响。从科学研究角度看,直接通入H2S法能更好地模拟含H2S油气田腐蚀体系。

关键词 油气田H2S腐蚀模拟实验方法20#钢    
Abstract

In order to simulate the carbon steel corrosion in oil-gas field produced water containing H2S, a proper artificial water was poured into an autoclave and then into which H2S gas was introduced respectively in two different ways: directly inducing H2S from a pressed H2S gas cylinder and generating H2S gas in-situ during the corrosion process through chemical reaction of desired reagents pre-set in the water. The corrosion rates of 20# steel were comparatively studied for two different ways of introducing H2S gas, while the other parameters kept the same, by weight loss technique, electrochemical measurement and scanning electron microscopy with energy dispersive spectrometer. It has been found that the 20# steel in the water with in-situ generating H2S exhibits a corrosion rate 0.1077 mm/a and a coarse and porous corrosion product film. Whereas, those by inducing H2S from gas cylinder are a corrosion rate 0.0518 mm/a and a uniform and compact corrosion product film respectively. It is also noted that the results of the former one are better accorded with those observed in oil/gas fields practice. Therefore, the way of directly inducing H2S from gas cylinder into the waters should be suitable to simulate the relevant corrosion performance of metallic materials in oil-gas field produced waters.

Key wordsoil/gas field    H2S corrosion    experimental method    20# steel
    
基金资助:辽宁省高校创新团队项目 (LT20100055) 资助

引用本文:

王凤平,刘岚,丁言伟,胡隋军,刘照斌,刘丹,张丽. 油气田H2S腐蚀体系模拟方法探究[J]. 中国腐蚀与防护学报, 2015, 35(3): 251-256.
Fengping WANG, Lan LIU, Yanwei DING, Suijun HU, Zhaobin LIU, Dan LIU, Li ZHANG. Simulation of Carbon Steel Corrosion in Oil-gas Field Produced Waters Containing Hydrogen Sulfide. Journal of Chinese Society for Corrosion and protection, 2015, 35(3): 251-256.

链接本文:

https://www.jcscp.org/CN/10.11902/1005.4537.2014.033      或      https://www.jcscp.org/CN/Y2015/V35/I3/251

图1  反应釜内动电位法测试20#钢腐蚀速率装置示意图
Introducing method of H2S νcorr / mma-1 Concentration of inhibitor / mgL-1 pH
Direct method (compressed gas) 0.0518 0 6.0
0.0400 150
Indirect method (reaction of Na2S and HAc) 0.1077 0 5.5
0.0695 150
表1  20#钢在两种不同模拟含H2S油气田腐蚀体系中的腐蚀速率
图2  在不同方法模拟含H2S油气田腐蚀体系中20#钢的极化曲线
Introducing method of H2S OCP V (Ag-AgCl) Inhibitor mgL-1 Corrosion rate mAcm-2 Tafel slope-bc mVdec-1
Direct method (compressed gas) -0.59 0 4.2×10-2 800
-0.60 150 1.9×10-2 853
Indirect method (reaction of Na2S and HAc) -0.59 0 6.2×10-2 685
-0.61 150 2.8×10-2 805
表2  20#钢在两种不同模拟方法中的电化学参数
图3  20#钢在两种不同方法模拟含H2S介质中腐蚀后的产物膜SEM像
图4  20#钢在两种不同方法引入H2S的介质中腐蚀后产物膜的EDS分析
Element Direct method Indirect method
Mass fraction / % Atomic fraction / % Mass fraction / % Atomic fraction / %
Fe K 71.74 57.16 89.35 75.25
S K 24.68 34.25 2.47 3.62
O K 2.68 7.46 6.37 18.73
Cl K 0.89 1.12 1.82 2.41
Total 100.00 100.00
表3  20#钢在两种不同模拟含H2S方法的腐蚀介质中腐蚀产物膜的元素组成
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