Chemical Industry and Engineering Progress ›› 2024, Vol. 43 ›› Issue (10): 5712-5722.DOI: 10.16085/j.issn.1000-6613.2023-1615
• Fine chemicals • Previous Articles
WANG Yefei1(), WANG Jing1, YANG Zhen1, YANG Jiang2, GUO Lei3
Received:
2023-09-12
Revised:
2023-10-24
Online:
2024-10-29
Published:
2024-10-15
Contact:
WANG Yefei
通讯作者:
王业飞
作者简介:
王业飞(1968—),教授,博士生导师,研究方向为精细油田化学品、调剖堵水、酸化缓蚀剂及化学法提高采收率等。E-mail:wangyf@upc.edu.cn。
基金资助:
CLC Number:
WANG Yefei, WANG Jing, YANG Zhen, YANG Jiang, GUO Lei. Synthesis and performance of a novel acidizing corrosion inhibitor for high temperature reservoirs[J]. Chemical Industry and Engineering Progress, 2024, 43(10): 5712-5722.
王业飞, 王婧, 杨震, 杨江, 郭雷. 新型高温酸化缓蚀剂的制备及性能评价[J]. 化工进展, 2024, 43(10): 5712-5722.
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URL: https://hgjz.cip.com.cn/EN/10.16085/j.issn.1000-6613.2023-1615
元素 | 理论值 | 实测值 |
---|---|---|
C | 81.62% | 80.99% |
H | 4.89% | 4.71% |
N | 5.95% | 5.89% |
元素 | 理论值 | 实测值 |
---|---|---|
C | 81.62% | 80.99% |
H | 4.89% | 4.71% |
N | 5.95% | 5.89% |
溶剂 | BQD溶解度/g | 溶解性 |
---|---|---|
水 | <0.01 | 难溶 |
乙腈 | 6.13 | 可溶 |
甲酸 | 25.46 | 易溶 |
乙醇 | 4.18 | 可溶 |
DMF | 18.51 | 易溶 |
DMSO | 13.85 | 易溶 |
异丙醇 | 5.27 | 可溶 |
溶剂 | BQD溶解度/g | 溶解性 |
---|---|---|
水 | <0.01 | 难溶 |
乙腈 | 6.13 | 可溶 |
甲酸 | 25.46 | 易溶 |
乙醇 | 4.18 | 可溶 |
DMF | 18.51 | 易溶 |
DMSO | 13.85 | 易溶 |
异丙醇 | 5.27 | 可溶 |
缓蚀剂 | 添加量 /% | ba/mV·dec-1 | -bc/mV·dec-1 | icorr/μA·cm-2 | –Ecorr/mV | ΔEcorr/mV | IE /% |
---|---|---|---|---|---|---|---|
空白 | 0 | 120.96 | 133.00 | 2271.10 | 428.23 | — | — |
GS-1 | 0.5 | 151.14 | 220.21 | 123.87 | 416.78 | 11.45 | 94.55 |
1.0 | 136.99 | 298.02 | 93.36 | 410.57 | 17.66 | 95.89 | |
1.5 | 132.86 | 227.90 | 89.61 | 416.68 | 11.55 | 96.05 | |
2.0 | 128.31 | 203.69 | 58.56 | 406.55 | 21.68 | 97.42 |
缓蚀剂 | 添加量 /% | ba/mV·dec-1 | -bc/mV·dec-1 | icorr/μA·cm-2 | –Ecorr/mV | ΔEcorr/mV | IE /% |
---|---|---|---|---|---|---|---|
空白 | 0 | 120.96 | 133.00 | 2271.10 | 428.23 | — | — |
GS-1 | 0.5 | 151.14 | 220.21 | 123.87 | 416.78 | 11.45 | 94.55 |
1.0 | 136.99 | 298.02 | 93.36 | 410.57 | 17.66 | 95.89 | |
1.5 | 132.86 | 227.90 | 89.61 | 416.68 | 11.55 | 96.05 | |
2.0 | 128.31 | 203.69 | 58.56 | 406.55 | 21.68 | 97.42 |
缓蚀剂 | 添加量/% | Rs/Ω·cm2 | Rp/Ω·cm2 | CPE-T/F·cm2 | CPE-P |
---|---|---|---|---|---|
空白 | 0 | 0.548 | 12.61 | 2.891×10-4 | 0.85 |
GS-1 | 0.5 | 0.510 | 1428.42 | 1.015×10-4 | 0.81 |
1.0 | 0.466 | 1797.85 | 1.255×10-4 | 0.79 | |
1.5 | 0.853 | 2497.95 | 1.101×10-4 | 0.80 | |
2.0 | 0.555 | 3130.08 | 1.120×10-4 | 0.80 |
缓蚀剂 | 添加量/% | Rs/Ω·cm2 | Rp/Ω·cm2 | CPE-T/F·cm2 | CPE-P |
---|---|---|---|---|---|
空白 | 0 | 0.548 | 12.61 | 2.891×10-4 | 0.85 |
GS-1 | 0.5 | 0.510 | 1428.42 | 1.015×10-4 | 0.81 |
1.0 | 0.466 | 1797.85 | 1.255×10-4 | 0.79 | |
1.5 | 0.853 | 2497.95 | 1.101×10-4 | 0.80 | |
2.0 | 0.555 | 3130.08 | 1.120×10-4 | 0.80 |
缓蚀剂 | EHOMO/eV | ELUMO/eV | ΔE/eV | μ/D | Ebinding/kJ·mol-1 |
---|---|---|---|---|---|
BQC | -2.455 | -1.232 | 1.223 | 3.639 | 323.50 |
BQD | -4.542 | -2.450 | 2.092 | 4.419 | 749.90 |
缓蚀剂 | EHOMO/eV | ELUMO/eV | ΔE/eV | μ/D | Ebinding/kJ·mol-1 |
---|---|---|---|---|---|
BQC | -2.455 | -1.232 | 1.223 | 3.639 | 323.50 |
BQD | -4.542 | -2.450 | 2.092 | 4.419 | 749.90 |
1 | 郭睿, 程敏, 杨江月, 等. 月桂酸咪唑啉硫酸酯盐缓蚀剂在A3钢表面吸附成膜行为[J]. 化工进展, 2017, 36(1): 336-342. |
GUO Rui, CHENG Min, YANG Jiangyue, et al. Adsorption behavior of lauryl imidazoline sulfuric ester inhibitor on the surface of A3 steel[J]. Chemical Industry and Engineering Progress, 2017, 36(1): 336-342. | |
2 | 李晖, 罗斌, 唐祖兵, 等. 新型耐高温酸化缓蚀剂XAI-180的研发与性能评价[J]. 天然气工业, 2019, 39(9): 89-95. |
LI Hui, LUO Bin, TANG Zubing, et al. Research, development and performance evaluation of XAI-180, a new acid corrosion inhibitor with high temperature resistance[J]. Natural Gas Industry, 2019, 39(9): 89-95. | |
3 | 于立冬, 李惠静, 吴彦超. 有机杂环缓蚀剂的研究进展[J]. 现代化工, 2022, 42(7): 56-59. |
YU Lidong, LI Huijing, WU Yanchao. Research progress on organic heterocyclic corrosion inhibitors[J]. Modern Chemical Industry, 2022, 42(7): 56-59. | |
4 | 王博涛, 甄建斌, 郭睿, 等. 新型絮凝-缓蚀双效高分子的合成及性能[J]. 化工进展, 2017, 36(11): 4216-4223. |
WANG Botao, ZHEN Jianbin, GUO Rui, et al. Synthesis and properties of a new type of flocculation and corrosion inhibition dual-effect polymer[J]. Chemical Industry and Engineering Progress, 2017, 36(11): 4216-4223. | |
5 | 李学坤, 李稳宏, 潘柳依, 等. 咪唑啉缓蚀剂合成工艺优化及吸附性能[J]. 化工进展, 2015, 34(4): 1126-1132. |
LI Xuekun, LI Wenhong, PAN Liuyi, et al. Optimized synthesis and adsorption behavior of imidazoline corrosion inhibitor[J]. Chemical Industry and Engineering Progress, 2015, 34(4): 1126-1132. | |
6 | 罗斌, 李钦, 黄霞, 等. 耐高温缓蚀剂的制备及缓蚀性能研究[J]. 中国石油和化工标准与质量, 2019, 39(10): 168-169. |
LUO Bin, LI Qin, HUANG Xia, et al. Study on preparation and corrosion inhibition performance of high temperature corrosion inhibitor[J]. China Petroleum and Chemical Standard and Quality, 2019, 39(10): 168-169. | |
7 | 王虎, 肖博文, 许家科, 等. 喹啉季铵盐与金属阳离子作为盐酸酸化缓蚀剂的协同作用[J]. 石油化工腐蚀与防护, 2020, 37(1): 8-11. |
WANG Hu, XIAO Bowen, XU Jiake, et al. Synergistic effects of quinoline quaternary ammonium salt and metal cations as hydrochloric acid acidizing corrosion inhibitor[J]. Corrosion & Protection in Petrochemical Industry, 2020, 37(1): 8-11. | |
8 | 冯浦涌, 彭雪飞, 刘刚芝. 一种新型吡啶季铵盐的制备及缓蚀性能研究[J]. 全面腐蚀控制, 2010, 24(4): 11-15. |
FENG Puyong, PENG Xuefei, LIU Gangzhi. Synthesis and performance evaluation of A new kind of quaternary pyridine salt[J]. Total Corrosion Control, 2010, 24(4): 11-15. | |
9 | 王业飞, 杨震, 战风涛, 等. 喹啉季铵盐二聚体吲哚嗪衍生物的合成与酸化缓蚀性能[J]. 石油学报, 2019, 40(1): 67-73, 114. |
WANG Yefei, YANG Zhen, ZHAN Fengtao, et al. Synthesis and acidizing corrosion inhibition of the dimer indolizine derivative of quinolinium quaternary ammonium salts[J]. Acta Petrolei Sinica, 2019, 40(1): 67-73, 114. | |
10 | YANG Zhen, ZHAN Fengtao, PAN Yuan, et al. Structure of a novel benzyl quinolinium chloride derivative and its effective corrosion inhibition in 15 wt.% hydrochloric acid[J]. Corrosion Science, 2015, 99: 281-294. |
11 | WANG Yefei, YANG Zhen, ZHAN Fengtao, et al. Indolizine quaternary ammonium salt inhibitors. Part Ⅱ: A reinvestigation of an old-fashioned strong acid corrosion inhibitor phenacyl quinolinium bromide and its indolizine derivative[J]. New Journal of Chemistry, 2018, 42(15): 12977-12989. |
12 | 王婧, 胡华友, 杨震, 等. 定量核磁共振氢谱法测定苄基喹啉季铵盐产品中二聚体的含量[J]. 石油与天然气化工, 2023, 52(2): 87-92. |
WANG Jing, HU Huayou, YANG Zhen, et al. Content determination of the dimer derivative in benzyl quinolinium quaternary ammonium salt by quantitative 1H NMR method[J]. Chemical Engineering of Oil & Gas, 2023, 52(2): 87-92. | |
13 | 冯颖, 赵孟杰, 崔倩, 等. 分子模拟技术在壳聚糖功能材料开发和应用中的研究进展[J]. 化工进展, 2022, 41(8): 4241-4253. |
FENG Ying, ZHAO Mengjie, CUI Qian, et al. Research progress of molecular simulation technology in the development and application of chitosan functional materials[J]. Chemical Industry and Engineering Progress, 2022, 41(8): 4241-4253. | |
14 | 魏晓静, 石鑫, 葛鵬莉, 等. 改性咪唑啉类缓蚀剂缓蚀机理的分子模拟[J]. 分子科学学报, 2021, 37(4): 352-359. |
WEI Xiaojing, SHI Xin, GE Pengli, et al. Molecular simulation of imidazoline corrosion inhibition by modification[J]. Journal of Molecular Science, 2021, 37(4): 352-359. | |
15 | 战风涛, 杨震, 吕志凤, 等. 高效缓蚀性氯化苄基喹啉衍生物制备与表征[J]. 石油学报, 2015, 36(9): 1116-1121. |
ZHAN Fengtao, YANG Zhen, Zhifeng LYU, et al. Preparation and characterization of N-benzylquinolinium chloride derivative(BQD)with effective corrosion inhibition[J]. Acta Petrolei Sinica, 2015, 36(9): 1116-1121. | |
16 | 邵明鲁, 岳湘安. 新型双季铵盐缓蚀剂的合成与性能评价[J]. 腐蚀与防护, 2019, 40(10): 747-752. |
SHAO Minglu, YUE Xiang’an. Synthesis and property evaluation of new double quaternary ammonium salt as corrosion inhibitor[J]. Corrosion & Protection, 2019, 40(10): 747-752. | |
17 | 薛丹, 张硕硕, 朱明明, 等. 一种新型高温酸化缓蚀剂的制备及性能[J]. 腐蚀与防护, 2022, 43(3): 36-41. |
XUE Dan, ZHANG Shuoshuo, ZHU Mingming, et al. Preparation and properties of a new high-temperature acidified corrosion inhibitor[J]. Corrosion & Protection, 2022, 43(3): 36-41. | |
18 | 刘畅, 王雷, 冯学彪, 等. 新型缓蚀剂胱氨酸丁酯对甲苯磺酸盐制备及缓蚀性能研究[J]. 材料导报, 2023, 37(S1): 540-543. |
LIU Chang, WANG Lei, FENG Xuebiao, et al. Preparation and corrosion inhibition performance of a new corrosion inhibitor butyl cystine P-toluenesulfonate[J]. Materials Reports, 2023, 37(S1): 540-543. | |
19 | ZHANG Xiaoyun, ZHENG Yunxiang, WANG Xiangpeng, et al. Corrosion inhibition of N80 steel using novel diquaternary ammonium salts in 15% hydrochloric acid[J]. Industrial & Engineering Chemistry Research, 2014, 53(37): 14199-14207. |
20 | FARHADIAN Abdolreza, ASSAR KASHANI Saba, RAHIMI Alireza, et al. Modified hydroxyethyl cellulose as a highly efficient eco-friendly inhibitor for suppression of mild steel corrosion in a 15% HCl solution at elevated temperatures[J]. Journal of Molecular Liquids, 2021, 338: 116607. |
21 | 张萌, 李清, 张鲲, 等. 丙二胺型双曼尼希碱酸化缓蚀剂的缓蚀性能[J]. 腐蚀与防护, 2022, 43(6): 26-32. |
ZHANG Meng, LI Qing, ZHANG Kun, et al. Corrosion inhibition properties of propylenediamine-type double mannich base acidizing corrosion inhibitor[J]. Corrosion & Protection, 2022, 43(6): 26-32. | |
22 | LGAZ Hassane, SALGHI Rachid, SUBRAHMANYA BHAT K, et al. Correlated experimental and theoretical study on inhibition behavior of novel quinoline derivatives for the corrosion of mild steel in hydrochloric acid solution[J]. Journal of Molecular Liquids, 2017, 244: 154-168. |
23 | KUMAR Raman, YADAV Ompal Singh, SINGH Gurmeet. Electrochemical and surface characterization of a new eco-friendly corrosion inhibitor for mild steel in acidic media: A cumulative study[J]. Journal of Molecular Liquids, 2017, 237: 413-427. |
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