Citation: | WANG Zhonghua.Research progress, current situation analysis and development suggestions of drilling fluid treatment agents in china[J]. Drilling Fluid & Completion Fluid,2025, 42(1):1-19 doi: 10.12358/j.issn.1001-5620.2025.01.001 |
[1] |
孙金声, 王韧, 龙一夫. 我国钻井液技术难题、新进展及发展建议[J]. 钻井液与完井液,2024,41(1):1-30.
SUN Jinsheng, WANG Ren, LONG Yifu. Challenges, developments, and suggestions for drilling fluid technology in China[J]. Drilling Fluid & Completion Fluid, 2024, 41(1):1-30.
|
[2] |
王中华. 国内钻井液处理剂研发现状与发展趋势[J]. 石油钻探技术,2016,44(3):1-8.
WANG Zhonghua. Present status and trends in research and development of drilling fluid additives in China[J]. Petroleum Drilling Techniques, 2016, 44(3):1-8.
|
[3] |
王中华. 现代钻井液概论[M]. 北京: 中国石化出版社, 2020.
WANG Zhonghua. Introduction to modern drilling fluids[M]. Beijing: China Petrochemical Press , 2020.
|
[4] |
王中华. 油基钻井液技术[M]. 北京: 中国石化出版社, 2019.
WANG Zhonghua. Oil based drilling fluid technology[M]. Beijing: China Petrochemical Press , 2019.
|
[5] |
王中华. 2022~2023年国内钻井液处理剂研究进展[J]. 中外能源,2024,29(6):39-51.
WANG Zhonghua. Research progress of drilling fluid treatment agents in China from 2022 to 2023[J]. Sino-global Energy, 2024, 29(6):39-51.
|
[6] |
王中华. 2017~2021年国内钻井液处理剂研究进展[J]. 中外能源,2022,27(3):31-42.
WANG Zhonghua. Research progress of drilling fluid additives in China between 2017 to 2021[J]. Sino-global Energy, 2022, 27(3):31-42.
|
[7] |
王爱荣, 梁冠秋, 李丽娟, 等. 复合醚化淀粉降滤失剂的合成与性能测试[J]. 化工技术与开发,2018,47(3):8-12, 24.
WANG Airong, LIANG Guanqiu, LI Lijuan, et al. Synthesis and performance testing of compond etherification starch filtrate reducer[J]. Technology & Development of Chemical Industry, 2018, 47(3):8-12, 24.
|
[8] |
张坤, 马红, 舒儒宏, 等. 双酯化改性淀粉降滤失剂的研究与应用[J]. 钻井液与完井液,2021,38(2):142-145.
ZHANG Kun, MA Hong, SHU Ruhong, et al. Study and application of a double esterified modified starch filter loss reducer[J]. Drilling Fluid & Completion Fluid, 2021, 38(2):142-145.
|
[9] |
魏君, 于洪江, 贺建飞, 等. 交联羧甲基淀粉降滤失剂的制备与性能评价[J]. 油田化学,2018,35(1):12-15.
WEI Jun, YU Hongjiang, HE Jianfei, et al. Preparation and performance evaluation of cross-linked carboxymethyl starch filtrate reducer[J]. Oilfield Chemistry, 2018, 35(1):12-15.
|
[10] |
陈思琪, 邱正松, 钟汉毅, 等. 钻井液用淀粉微球降滤失剂的制备及性能评价[J]. 钻井液与完井液,2019,36(4):414-419. doi: 10.3969/j.issn.1001-5620.2019.04.003
CHEN Siqi, QIU Zhengsong, ZHONG Hanyi, et al. Preparation and performance evaluation of a drilling fluid microsphere starch filter loss reducer[J]. Drilling Fluid & Completion Fluid, 2019, 36(4):414-419. doi: 10.3969/j.issn.1001-5620.2019.04.003
|
[11] |
杨超, 杨国兴, 周成华, 等. 抗高温改性淀粉FSL在高温井段的现场应用[J]. 钻井液与完井液,2019,36(1):51-54.
YANG Chao, YANG Guoxing, ZHOU Chenghua, et al. Application of a high temperature modified starch (FSL) in high temperature drilling[J]. Drilling Fluid & Completion Fluid, 2019, 36(1):51-54.
|
[12] |
王爱荣, 石海信, 童张法, 等. KH570-AM-淀粉接枝共聚物降滤失剂的制备及其性能[J]. 化工进展,2018,37(10):4022-4028.
WANG Airong, SHI Haixin, TONG Zhangfa, et al. Preparation and properties of KH570-AM-starch graft copolymer as filtrate reducing agents[J]. Chemical Industry and Engineering Progress, 2018, 37(10):4022-4028.
|
[13] |
赵凯强, 杨超, 周成华, 等. 耐高温抗盐淀粉接枝共聚物的制备及其评价[J]. 精细石油化工[J]. 2019, 36(1): 51-54.
ZHAO Kaiqiang, YANG Chao, ZHOU Chenghua, et al. Preparation and evalauation of high temperature and salt resistant starch graft copolymer[J]. Drilling Fluid & Completion Fluid, 2019, 36(1): 51-54.
|
[14] |
田惠, 王野, 赵雷, 等. 无土相高密度饱和盐水钻井液用降滤失剂的研究[J]. 钻井液与完井液,2018,35(6):22-26.
TIAN Hui, WANG Ye, ZHAO Lei, et al. Study on filter loss reducer for high density clay-free saturated saltwater drilling fluids[J]. Drilling Fluid & Completion Fluid, 2018, 35(6):22-26.
|
[15] |
高鑫, 钟汉毅, 邱正松, 等. 钻井液用β-环糊精聚合物微球降滤失剂的制备[J]. 钻井液与完井液,2021,38(1):21-26.
GAO Xin, ZHONG Hanyi, QIU Zhengsong, et al. Preparation of microsphere β-cyclodextrin polymer filter loss reducer for drilling fluids[J]. Drilling Fluid & Completion Fluid, 2021, 38(1):21-26.
|
[16] |
司西强, 王中华. 钻井液用聚醚胺基烷基糖苷的合成及性能[J]. 应用化工,2019,48(7):1568-1571.
SI Xiqiang, WANG Zhonghua. Synthesis and properties of polyether amine alkyl polyglucosides for drilling fluids[J]. Applied Chemical Industry, 2019, 48(7):1568-1571.
|
[17] |
司西强, 王中华. 钻井液用磺化胺基烷基糖苷高效润滑剂的研制及性能[J]. 应用化工,2022,51(8):2323-2326.
SI Xiqiang, WANG Zhonghua. Preparation and properties of sulfonated amino alkyl polyglucoside used as high efficiency lubricant in drilling fluids[J]. Applied Chemical Industry, 2022, 51(8):2323-2326.
|
[18] |
王伟吉. 抗温环保纳米纤维素降滤失剂的研制及特性[J]. 钻井液与完井液,2020,37(4):421-426.
WANG Weiji. Development and characteristics of a high temperature environmentally friendly nanocellulose filter loss reducer[J]. Drilling Fluid & Completion Fluid, 2020, 37(4):421-426.
|
[19] |
皇飞, 张群正, 武志远, 等. 玉米秸秆制备钻井液处理剂及性能评价[J]. 应用化工,2016,45(6):1049-1052.
HUANG Fei, ZHANG Qunzheng, WU Zhiyuan, et al. Synthesis and performance evaluation of corn straw drilling fluid treatment agent[J]. Applied Chemical Industry, 2016, 45(6):1049-1052.
|
[20] |
刘洪国. 环保型钻井液用抗温降滤失剂的制备与评价[J]. 化学工程与装备,2020(2):63-65.
LIU Hongguo. Preparation and evaluation of temperature resistant and filtration reducing agents for environmentally friendly drilling fluids[J]. Chemical Engineering and Equipment, 2020(2):63-65.
|
[21] |
王金堂, 徐嘉崎, 廖波, 等. 海域天然气水合物钻井液用多功能处理剂制备与性能评价[J]. 钻探工程,2023,50(6):11-17. doi: 10.12143/j.ztgc.2023.06.002
WANG Jintang, XU Jiaqi, LIAO Bo, et al. Preparation and properties evaluation of multifunctional drilling fluid additive for Marine natural gas hydrate[J]. Drilling Engineering, 2023, 50(6):11-17. doi: 10.12143/j.ztgc.2023.06.002
|
[22] |
崔鹏, 杨志淑, 马双政. 一种抗高温环保型低增黏提切剂[J]. 钻井液与完井液,2022,39(4):441-445.
CUI Peng, YANG Zhishu, MA Shuangzheng. Synthesis and properties of high temperature resistant environmental protection shear strength improving agent[J]. Drilling Fluid & Completion Fluid, 2022, 39(4):441-445.
|
[23] |
杨倩云, 宋翔远, 于雷, 等. 微泡沫钻井液用高温稳泡剂TFS的制备及性能评价[J]. 精细石油化工,2024,41(5):1-5.
YANG Qianyun, SONG Xiangyuan, YU Lei, et al. High-temperature foam stabilizer for micro foam drilling fluid[J]. Speciality Petrochemicals, 2024, 41(5):1-5.
|
[24] |
王国超, 席明利. 铁络合木质素的制备及其在钻井液中作用研究[J]. 当代化工,2020,49(5):790-793. doi: 10.3969/j.issn.1671-0460.2020.05.009
WANG Guochao, XI Mingli. Study on preparation of Iron complex lignin and its role in drilling fluids[J]. Contemporary Chemical Industry, 2020, 49(5):790-793. doi: 10.3969/j.issn.1671-0460.2020.05.009
|
[25] |
张洁, 陈卫鹏, 郑萌, 等. DSC辅助木质素磺酸盐-聚糖复合物的制备及性能评估[J]. 化工技术与开发,2017,46(7):5-9. doi: 10.3969/j.issn.1671-9905.2017.07.002
ZHANG Jie, CHEN Weipeng, ZHENG Meng, et al. DSC assisted preparation of lignin-carbohydrate complex and performance evaluation[J]. Technology & Development of Chemical Industry, 2017, 46(7):5-9. doi: 10.3969/j.issn.1671-9905.2017.07.002
|
[26] |
张洁, 胡伟民, 王阳光, 等. DSC辅助碱木素-聚糖复合物的制备及其作用效能[J]. 精细石油化工进展,2017,18(1):1-5.
ZHANG Jie, HU Weimin, WANG Yangguang, et al. DSC assisted preparation of alkali Lignin-Carbohydrate complex and evaluation on its performance[J]. Advances in Fine Petrochemicals, 2017, 18(1):1-5.
|
[27] |
周启成, 单海霞, 位华, 等. 环保型生物质合成树脂降滤失剂[J]. 钻井液与完井液,2020,37(5):593-596.
ZHOU Qicheng, SHAN Haixia, WEI Hua, et al. A synthetic resin filter loss reducer made from environmentally friendly biomasses[J]. Drilling Fluid & Completion Fluid, 2020, 37(5):593-596.
|
[28] |
王茂功, 陈帅, 李彦琴, 等. 新型抗高温油基钻井液降滤失剂的研制与性能[J]. 钻井液与完井液,2016,33(1):1-5.
WANG Maogong, CHEN Shuai, LI Yanqin, et al. Development and evaluation of a new high temperature filter loss reducer used in oil base drilling fluid[J]. Drilling Fluid & Completion Fluid, 2016, 33(1):1-5.
|
[29] |
牟亚晨, 黄文章, 罗炽臻, 等. 改性腐植酸油基降滤失剂的两步法合成与性能评价[J]. 石油与天然气化工,2016,45(1):83-85.
MU Yachen, HUANG Wenzhang, LUO Chizhen, et al. Two-step synthesis and performance evaluation of humic acid fluid loss additive for oil-based drilling fluid[J]. Chemical Engineering of Oil and Gas, 2016, 45(1):83-85.
|
[30] |
王茂功, 徐显广, 孙金声, 等. 气制油合成基钻井液关键处理剂研制与应用[J]. 钻井液与完井液,2016,33(3):30-34, 40. doi: 10.3969/j.issn.1001-5620.2016.03.006
WANG Maogong, XU Xianguang, SUN Jinsheng, et al. Study and application of additives for synthetic fluids with GTL as the base fluid[J]. Drilling Fluid & Completion Fluid, 2016, 33(3):30-34, 40. doi: 10.3969/j.issn.1001-5620.2016.03.006
|
[31] |
韩子轩, 蒋官澄, 李青洋, 等. 新型合成基钻井液降滤失剂合成及性能评价[J]. 大庆石油学院学报,2014,38(5):86-92.
HAN Zixuan, JIANG Guancheng, LI Qingyang, et al. Synthesis and performance evaluation of a new synthetic based drilling fluid filtrate reducer[J]. Journal of Daqing Petroleum Institute, 2014, 38(5):86-92.
|
[32] |
张瑞, 徐加放, 顾甜甜, 等. 棕榈油基钻井液降滤失剂的研制[J]. 钻井液与完井液,2017,34(6):29-34.
ZHANG Rui, XU Jiafang, GU Tiantian, et al. Development of a filter loss reducer for palm oil base drilling fluid[J]. Drilling Fluid & Completion Fluid, 2017, 34(6):29-34.
|
[33] |
庞少聪, 安玉秀, 马京缘, 等. 耐高温降粘剂SMT/AMPS的研制与性能评价[J]. 应用化工,2022,51(8):2194-2199.
PANG Shaocong, AN Yuxiu, MA Jingyuan, et al. Development and performance evaluation of high temperature resistant viscosity reducer SMT/AMPS[J]. Applied Chemical Industry, 2022, 51(8):2194-2199.
|
[34] |
刘云峰, 邱正松, 杨鹏, 等. 一种钻井液用高效抗磨润滑剂[J]. 钻井液与完井液,2018,35(5):8-13.
LIU Yunfeng, QIU Zhengsong, YANG Peng, et al. A high-performance drilling fluid anti-wear lubricant[J]. Drilling Fluid & Completion Fluid, 2018, 35(5):8-13.
|
[35] |
孙欢, 陈华, 贾彦强. 环保水基钻井液用聚合物M-TSP的合成与性能评价[J]. 油田化学,2021,38(1):14-18.
SUN Huan, CHEN Hua, JIA Yanqiang. Synthesis and performance evaluation of polymer M-TSP for environment-friendly water-based drilling fluids[J]. Oilfield Chemistry, 2021, 38(1):14-18.
|
[36] |
段宝荣, 郭景颂, 苏立清, 等. 板栗刺壳栲胶制备油田用降粘剂的初步研究[J]. 石化技术,2018,25(2):26-27.
DUAN Baorong, GUO Jingsong, SU Liqing, et al. A preliminary study on the chestnut shell extract prepared with oil viscosity reducer[J]. Petrochemical Industry Technology, 2018, 25(2):26-27.
|
[37] |
吴一帆, 赵海鹏. 国内油田用AMPS聚合物研究进展[J]. 中外能源,2019,24(6):26-32.
WU Yifan, ZHAO Haipeng. Research progress of AMPS polymers for oilfields in China[J]. Sino-global Energy, 2019, 24(6):26-32.
|
[38] |
何晨晨, 罗春芝. 抗高温聚合物降滤失剂YL-Ⅱ的合成与性能[J]. 化学与生物工程,2017,34(7):43-46.
HE Chenchen, LUO Chunzhi. Synthesis and property of anti-High temperature polymer filtrate reducer YL-Ⅱ[J]. Chemistry & Bioengineering, 2017, 34(7):43-46.
|
[39] |
张丽君, 王旭, 胡小燕, 等. 抗温270℃钻井液聚合物降滤失剂的研制[J]. 石油化工,2017,46(1):117-123.
ZHANG Lijun, WANG Xu, HU Xiaoyan, et al. Development of the polymer filtrate reducer used for 270℃ ultra-high temperature drilling fluid[J]. Petrochemical Technology, 2017, 46(1):117-123.
|
[40] |
蒋官澄, 祁由荣, 安玉秀, 等. 抗高温超分子降滤失剂的合成及性能评价[J]. 钻井液与完井液,2017,34(2):39-44.
JIANG Guancheng, QI Yourong, AN Yuxiu, et al. Synthesis and evaluation of a high temperature AMPS/AM/NVP copolymer filter loss reducer[J]. Drilling Fluid & Completion Fluid, 2017, 34(2):39-44.
|
[41] |
张现斌, 李欣, 陈安亮, 等. 钻井液用抗高温聚合物增黏剂的制备与性能评价[J]. 油田化学,2020,37(1):1-6, 16.
ZHANG Xianbin, LI Xin, CHEN Anliang, et al. Preparation and performance evaluation of polymeric viscosifier with thermal resistance for water-based drilling fluid[J]. Oilfield Chemistry, 2020, 37(1):1-6, 16.
|
[42] |
徐运波, 蓝强, 张斌, 等. 梳型聚合物降滤失剂的合成及其在深井盐水钻井液中的应用[J]. 钻井液与完井液,2017,34(1):33-38.
XU Yunbo, LAN Qiang, ZHANG Bin, et al. Synthesis and application of a comb polymer filter loss reducer in deep well saltwater drilling fluid[J]. Drilling Fluid & Completion Fluid, 2017, 34(1):33-38.
|
[43] |
全红平, 张拓森, 黄志宇, 等. 抗高温耐盐钻井液降滤失剂的合成与评价[J]. 应用化工,2022,51(6):1691-1696, 1701.
QUAN Hongping, ZHANG Tuosen, HUANG Zhiyu, et al. Synthesis and evaluation of high temperature and salt resistant fluid loss reducer[J]. Applied Chemical Industry, 2022, 51(6):1691-1696, 1701.
|
[44] |
宋永涛, 周丰, 余维初, 等. 基于季戊四醇的超支化降滤失剂的合成及性能评价[J]. 钻井液与完井液,2022,39(5):587-595.
SONG Yongtao, ZHOU Feng, YU Weichu, et al. The synthesis and evaluation of a pentaerythritol-based hyperbranched polymer filter loss reducer[J]. Drilling Fluid & Completion Fluid, 2022, 39(5):587-595.
|
[45] |
丁伟俊, 张颖, 余维初, 等. 无黏土水基钻井液用超支化聚合物降滤失剂的合成及性能评价[J]. 特种油气藏,2024,31(4):169-174.
DING Weijun, ZHANG Ying, YU Weichu, et al. Synthesis and performance evaluation of clay-free water-based drilling fluid with hyperbranched polymer filtrate reducer[J]. Special Oil & Gas Reservoirs, 2024, 31(4):169-174.
|
[46] |
张万栋, 王爱佳, 郭浩, 等. 抗高温高钙梳型降滤失剂的制备与应用[J]. 钻井液与完井液,2022,39(4):435-440.
ZHANG Wandong, WANG Aijia, GUO Hao, et al. Development and application of comb-like polymer filter loss reducer with high temperature and high calcium contamination resistance[J]. Drilling Fluid & Completion Fluid, 2022, 39(4):435-440.
|
[47] |
邢林庄, 袁玥辉, 叶成, 等. 抗高温抗复合盐支链型聚合物降滤失剂的合成及其性能[J]. 钻井液与完井液,2023,40(6):703-710.
XING Linzhuang, YUAN Yuehui, YE Cheng, et al. Synthesis and evaluation of a high temperature salt-resistant chain polymer filter loss reducer[J]. Drilling Fluid & Completion Fluid, 2023, 40(6):703-710.
|
[48] |
吴艳婷, 全红平, 黄志宇, 等. 抗高温钻井液降滤失剂的合成及机理研究[J]. 石油化工,2023,52(7):946-955.
WU Yanting, QUAN Hongping, HUANG Zhiyu, et al. Synthesis and mechanism of fluid loss additive for high temperature resistant drilling fluid[J]. Petrochemical Technology, 2023, 52(7):946-955.
|
[49] |
薛丹, 张笑, 李善建, 等. AMPS/DMAEMA/AM三元共聚物钻井液降滤失剂的研制[J]. 应用化工,2024,53(3):600-603, 607.
XUE Dan, ZHANG Xiao, LI Shanjian, et al. Development of AMPS/DMAEMA/AM terpolymer drilling fluid filter loss reduction agent[J]. Applied Chemical Industry, 2024, 53(3):600-603, 607.
|
[50] |
孙振峰, 杨超, 李杰, 等. 钻井液用高性能增黏剂的研制及性能评价[J]. 钻井液与完井液,2024,41(1):84-91.
SUN Zhenfeng, YANG Chao, LI Jie, et al. Development and performance evaluation of a high performance drilling fluid viscosifier[J]. Drilling Fluid & Completion Fluid, 2024, 41(1):84-91.
|
[51] |
李东, 王翟, 赵英杰, 等. 高温高盐钻井液用降滤失剂的合成与性能评价[J]. 现代化工,2021,41(8):187-192.
LI Dong, WANG Zhai, ZHAO Yingjie, et al. Synthesis and performance evaluation of fluid loss additive for drilling fluid at high temperature and salinity[J]. Modern chemical industry, 2021, 41(8):187-192.
|
[52] |
褚奇, 石秉忠, 李涛, 等. 水基钻井液用低增黏提切剂的合成与性能评价[J]. 钻井液与完井液,2019,36(6):689-693.
CHU Qi, SHI Bingzhong, LI Tao, et al. Synthesis and evaluation of a low viscosity gelling agent for water base drilling fluids[J]. Drilling Fluid & Completion Fluid, 2019, 36(6):689-693.
|
[53] |
罗春芝, 向欢, 章楚君, 等. 抗温抗盐乳液聚合物降滤失剂的合成与评价[J]. 长江大学学报(自然科学版),2023,20(6):93-102.
LUO Chunzhi, XIANG Huan, ZHANG Chujun, et al. Synthesis and evaluation of anti-temperature and anti-salt emulsion polymeric filtrate loss reducer[J]. Journal of Yangtze University (Natural Science Edition), 2023, 20(6):93-102.
|
[54] |
苏雪霞, 王中华, 孙举, 等. 基于星型单体与RAFT相结合的超支化聚合物的合成与评价[J]. 精细石油化工,2023,40(4):22-26.
SU Xuexia, WANG Zhonghua, SUN Ju, et al. Synthesis and evaluation of hyperbranched polymers based on star monomers and RAFT polymerization[J]. Speciality Petrochemicals, 2023, 40(4):22-26.
|
[55] |
刘晓东. 一种水基钻井液用抗温增黏剂的研制与评价[J]. 辽宁化工,2024,53(4):530-532, 578.
LIU Xiaodong. Development and evaluation of a temperature-resistant tackifier for water-based drilling fluid[J]. Liaoning Chemical Industry, 2024, 53(4):530-532, 578.
|
[56] |
王飞龙, 杨泽星, 刘泽, 等. 钻井液降黏剂SSMA的本体聚合制备与性能[J]. 钻井液与完井液,2017,34(6):8-12, 17. doi: 10.3969/j.issn.1001-5620.2017.06.002
WANG Feilong, YANG Zexing, LIU Ze, et al. Study on the performance of SSMA-A thinner made through mass polymerization[J]. Drilling Fluid & Completion Fluid, 2017, 34(6):8-12, 17. doi: 10.3969/j.issn.1001-5620.2017.06.002
|
[57] |
邓正强, 欧猛, 白海龙, 等. 高密度水基钻井液降黏剂的研制及应用[J]. 新疆石油天然气,2023,19(3):33-37. doi: 10.12388/j.issn.1673-2677.2023.03.005
DENG Zhengqiang, OU Meng, BAI Hailong, et al. Development of viscosity reducer for high density water-based drilling fluid and its application[J]. Xinjiang Oil & Gas, 2023, 19(3):33-37. doi: 10.12388/j.issn.1673-2677.2023.03.005
|
[58] |
张城, 刘帅, 袁翊, 等. 两性离子聚合物降黏剂的制备与性能评价[J]. 油田化学,2023,40(1):7-11.
ZHANG Cheng, LIU Shuai, YUAN Yi, et al. Preparation and performance evaluation of zwitterionic polymer viscosity reducer[J]. Oilfield Chemistry, 2023, 40(1):7-11.
|
[59] |
赵俊, 孙泽宁, 王景, 等. 一种环保型钻井液絮凝剂的研制与评价[J]. 钻井液与完井液,2020,37(4):427-430.
ZHAO Jun, SUN Zening, WANG Jing, et al. The development and evaluation of an environmentally friendly drilling flocculant[J]. Drilling Fluid & Completion Fluid, 2020, 37(4):427-430.
|
[60] |
吕开河, 王中义, 黄贤斌, 等. 适用于深水水基钻井液的温敏聚合物流型调节剂[J]. 钻井液与完井液,2021,38(1):14-20.
LYU Kaihe, WANG Zhongyi, HUANG Xianbin, et al. A temperature sensitive polymer flow pattern modifier for water base drilling fluids for deep water drilling[J]. Drilling Fluid & Completion Fluid, 2021, 38(1):14-20.
|
[61] |
杨浩, 岳前升, 赵庆美. 纳米SiO2/丙烯酰胺絮凝剂的合成及性能评价[J]. 钻井液与完井液,2022,39(6):714-720.
YANG Hao, YUE Qiansheng, ZHAO Qingmei. Synthesis and performance evaluation of Nano SiO2/acrylamide flocculant[J]. Drilling Fluid & Completion Fluid, 2022, 39(6):714-720.
|
[62] |
李永丰. 致密储层水基钻井液防塌抑制剂研发[J]. 当代化工,2022,51(8):2000-2003, 2007.
LI Yongfeng. Development of anti-collapse inhibitors for water-based drilling fluids in tight reservoirs[J]. Contemporary Chemical Industry, 2022, 51(8):2000-2003, 2007.
|
[63] |
刘书杰, 徐一龙, 张宇飞, 等. 水合物抑制剂的合成及在超深水钻井液中的应用[J]. 钻井液与完井液,2024,41(5):557-563.
LIU Shujie, XU Yilong, ZHANG Yufei, et al. Synthesis of a hydrate inhibitor and its application in drilling fluids for ultra-deep water drilling[J]. Drilling Fluid & Completion Fluid, 2024, 41(5):557-563.
|
[64] |
王晓博, 程云, 马诚, 等. 耐盐抗高温水基钻井液增黏剂的合成与性能评价[J]. 应用化工,2024,53(9):2118-2122.
WANG Xiaobo, CHENG Yun, MA Cheng, et al. Synthesis and performance evaluation of salt and high temperature resistant water-based drilling fluid viscosity enhancers[J]. Applied Chemical Industry, 2024, 53(9):2118-2122.
|
[65] |
卢震, 黄贤斌, 孙金声, 等. 水基钻井液用耐高温纳米聚合物封堵剂的研制[J]. 石油钻采工艺,2020,42(5):587-591.
LU Zhen, HUANG Xianbin, SUN Jinsheng, et al. Development of the nano-polymer plugging agent with high temperature tolerance for water-based drilling fluid[J]. Oil Drilling & Production Technology, 2020, 42(5):587-591.
|
[66] |
周新宇, 刘敬平, 吕开河, 等. 一种抗高温凝胶封堵剂[J]. 钻井液与完井液,2022,39(3):294-300.
ZHOU Xinyu, LIU Jingping, LYU Kaihe, et al. A high temperature gel plugging agent[J]. Drilling Fluid & Completion Fluid, 2022, 39(3):294-300.
|
[67] |
黄乘升, 褚奇, 李涛, 等. 抗高温聚合物纳米微球封堵剂的合成与性能评价[J]. 钻井液与完井液,2022,39(2):139-145. doi: 10.12358/j.issn.1001-5620.2022.02.002
HUANG Chengsheng, CHU Qi, LI Tao, et al. The synthesis and evaluation of a high temperature nano micro-spherical polymer plugging agent[J]. Drilling Fluid & Completion Fluid, 2022, 39(2):139-145. doi: 10.12358/j.issn.1001-5620.2022.02.002
|
[68] |
马诚, 王惟, 孔宝莹, 等. 钻井液用阳离子型胶乳合成及性能研究[J]. 精细石油化工,2018,35(4):7-12. doi: 10.3969/j.issn.1003-9384.2018.04.002
MA Cheng, WANG Wei, KONG Baoying, et al. Preparation and characterization of cationic latex for drilling fluid[J]. Speciality Petrochemicals, 2018, 35(4):7-12. doi: 10.3969/j.issn.1003-9384.2018.04.002
|
[69] |
符合, 许明标. 环保型高分子聚合物油基钻井液降滤失剂的合成及性能评价[J]. 当代化工,2019,48(5):966-968, 972.
FU He, XU Mingbiao. Synthesis and performance evaluation of new polymer environmental friendly oil based drilling fluid filtrate reducer[J]. Contemporary Chemical Industry, 2019, 48(5):966-968, 972.
|
[70] |
周研, 蒲晓林, 刘鹭, 等. 油基钻井液用聚合物降滤失剂合成与性能评价[J]. 精细化工,2019,36(3):520-526, 533.
ZHOU Yan, PU Xiaolin, LIU Lu, et al. Synthesis and performance evaluation of polymer fluid loss additive for oil-based drilling fluid[J]. Fine Chemicals, 2019, 36(3):520-526, 533.
|
[71] |
杨俊, 蒋官澄, 王国帅, 等. 自交联型油基钻井液降滤失剂的研制与评价[J]. 钻井液与完井液,2022,39(6):685-691.
YANG Jun, JIANG Guancheng, WANG Guoshuai, et al. Development and evaluation of a self-crosslinking filter loss reducer for oil based drilling fluids[J]. Drilling Fluid & Completion Fluid, 2022, 39(6):685-691.
|
[72] |
程荣超, 王建华, 闫丽丽, 等. 油基钻井液用抗高温树脂类封堵剂的研制[J]. 当代化工研究,2021(5):160-162.
CHENG Rongchao, WANG Jianhua, YAN Lili, et al. Development of high temperature resistant resin plugging agent for oil-based drilling fluid[J]. Modern Chemical Research, 2021(5):160-162.
|
[73] |
万伟. 抗高温高密度油基钻井液高效封堵剂研究与应用[J]. 钻采工艺,2017,40(3):87-89, 116.
WAN Wei. Research and application of high efficiency sealing agent for high temperature and high density oil based drilling fluid[J]. Drilling & Production Technology, 2017, 40(3):87-89, 116.
|
[74] |
张蔚, 邱士鑫, 张硕, 等. OBM-1油基钻井液用聚合物微球[J]. 钻井液与完井液,2023,40(6):711-717.
ZHANG Wei, QIU Shixin, ZHANG Shuo, et al. A polymeric microsphere OBM-1 for oil based drilling fluids[J]. Drilling Fluid & Completion Fluid, 2023, 40(6):711-717.
|
[75] |
倪晓骁, 史赫, 闫丽丽, 等. 油基钻井液用改性碳纳米管纳微米封堵剂[J]. 油田化学,2023,40(4):578-584.
NI Xiaoxiao, SHI He, YAN Lili, et al. Modified carbon nanotube as nano-micro plugging agent in oil-based drilling fluid[J]. Oilfield Chemistry, 2023, 40(4):578-584.
|
[76] |
杜征鸿, 沈建文, 睢圣, 等. 耐高温核壳型油基钻井液纳米封堵剂的制备与性能评价[J]. 油田化学,2022,39(1):1-4, 10.
DU Zhenghong, SHEN Jianwen, SUI Sheng, et al. Preparation and performance evaluation of core-shell Nano plugging agent with high temperature resistance using in oil-based drilling fluid[J]. Oilfield Chemistry, 2022, 39(1):1-4, 10.
|
[77] |
赵艳, 张太亮, 刘杨康, 等. 一种油基钻井液封堵用油溶胀微凝胶的制备及性能评价[J]. 精细石油化工,2022,39(6):10-15. doi: 10.3969/j.issn.1003-9384.2022.06.003
ZHAO Yan, ZHANG Tailiang, LIU Yangkang, et al. Preparation and performance evaluation of an oil swelling microgel for oil based plugging drilling fluid[J]. Speciality Petrochemicals, 2022, 39(6):10-15. doi: 10.3969/j.issn.1003-9384.2022.06.003
|
[78] |
陶怀志, 陈俊斌, 王兰, 等. 聚合物纳米微球封堵剂CQ-NSA性能研究[J]. 钻采工艺,2022,45(2):115-119. doi: 10.3969/J.ISSN.1006-768X.2022.02.21
TAO Huaizhi, CHEN Junbin, WANG Lan, et al. Study on property of polymer nanoparticle blocking agent CQ-NSA[J]. Drilling & Production Technology, 2022, 45(2):115-119. doi: 10.3969/J.ISSN.1006-768X.2022.02.21
|
[79] |
孔勇. 地层环境响应封堵材料研究与应用[J]. 钻井液与完井液,2022,39(6):677-684. doi: 10.12358/j.issn.1001-5620.2022.06.003
KONG Yong. Study and application of formation environment responsive plugging material[J]. Drilling Fluid & Completion Fluid, 2022, 39(6):677-684. doi: 10.12358/j.issn.1001-5620.2022.06.003
|
[80] |
滕春鸣, 甄剑武, 罗会义, 等. 一种强吸附疏水改性纳米SiO2封堵剂[J]. 钻井液与完井液,2022,39(3):307-312. doi: 10.12358/j.issn.1001-5620.2022.03.007
TENG Chunming, ZHEN Jianwu, LUO Huiyi, et al. A strongly adsorptive hydrophobically modified nano SiO2 plugging agent[J]. Drilling Fluid & Completion Fluid, 2022, 39(3):307-312. doi: 10.12358/j.issn.1001-5620.2022.03.007
|
[81] |
高重阳, 黄贤斌, 白英睿, 等. 水基钻井液用抗超高温聚合物刷润滑剂的研制[J]. 钻井液与完井液,2023,40(4):453-461. doi: 10.12358/j.issn.1001-5620.2023.04.006
GAO Chongyang, HUANG Xianbin, BAI Yingrui, et al. Development of ultra-high temperature polymer brush lubricant for water based drilling fluids[J]. Drilling Fluid & Completion Fluid, 2023, 40(4):453-461. doi: 10.12358/j.issn.1001-5620.2023.04.006
|
[82] |
张高波, 杨双全, 李培海. 改性磺甲基酚醛树脂MSP-1的合成及评价[J]. 钻井液与完井液,2024,41(5):574-581. doi: 10.12358/j.issn.1001-5620.2024.05.003
ZHANG Gaobo, YANG Shuangquan, LI Peihai. Synthesis and evaluation of modified sulfomethylated phenolic resin MSP-1[J]. Drilling Fluid & Completion Fluid, 2024, 41(5):574-581. doi: 10.12358/j.issn.1001-5620.2024.05.003
|
[83] |
罗朝东, 王权阳, 王方博, 等. 低支化度聚胺抑制剂研究与应用[J]. 钻采工艺,2023,46(4):151-156. doi: 10.3969/J.ISSN.1006-768X.2023.04.26
LUO Chaodong, WANG Quanyang, WANG Fangbo, et al. Study and application of low branched polyamine inhibitor[J]. Drilling & Production Technology, 2023, 46(4):151-156. doi: 10.3969/J.ISSN.1006-768X.2023.04.26
|
[84] |
许林, 王浪, 许明标, 等. 一种水基钻井液超支化高分子润滑添加剂[J]. 天然气工业,2023,43(7):79-89. doi: 10.3787/j.issn.1000-0976.2023.07.009
XU Lin, WANG Lang, XU Mingbiao, et al. Hyperbranched polymer lubricant additive for water-based drilling fluid[J]. Natural Gas Industry, 2023, 43(7):79-89. doi: 10.3787/j.issn.1000-0976.2023.07.009
|
[85] |
陶怀志, 明显森, 马光长, 等. 水基钻井液强吸附多元醇酯键合润滑剂及作用机理[J]. 钻井液与完井液,2022,39(5):579-586. doi: 10.12358/j.issn.1001-5620.2022.05.008
TAO Huaizhi, MING Xiansen, MA Guangchang, et al. Study on mechanisms of a highly adsorptive polyol ester bonded lubricant for water based drilling fluids[J]. Drilling Fluid & Completion Fluid, 2022, 39(5):579-586. doi: 10.12358/j.issn.1001-5620.2022.05.008
|
[86] |
姚磊. 一种水基钻井液用抗温润滑剂的研制与评价[J]. 山东化工,2024,53(1):58-60. doi: 10.3969/j.issn.1008-021X.2024.01.015
YAO Lei. Development and evaluation of a temperature-resistant lubricant for water-based drilling fluid[J]. Shandong Chemical Industry, 2024, 53(1):58-60. doi: 10.3969/j.issn.1008-021X.2024.01.015
|
[87] |
韩银府, 王正良, 徐鹏. 一种钻井液润滑剂的制备及其性能评价[J]. 化学工程师,2024,38(7):9-12.
HAN Yinfu, WANG Zhengliang, XU Peng. Preparation and performance evaluation of lubricant for water-based drilling fluid[J]. Chemical Engineer, 2024, 38(7):9-12.
|
[88] |
李斌, 蒋官澄, 王金锡, 等. 水基钻井液用润滑剂SDL-1的研制与评价[J]. 钻井液与完井液,2019,36(2):170-175. doi: 10.3969/j.issn.1001-5620.2019.02.007
LI Bin, JIANG Guancheng, WANG Jinxi, et al. Development and evaluation of a water base drilling fluid lubricant SDL-1[J]. Drilling Fluid & Completion Fluid, 2019, 36(2):170-175. doi: 10.3969/j.issn.1001-5620.2019.02.007
|
[89] |
耿月, 刘洪山, 何振涛, 等. 新型环保润滑剂的制备及其在页岩气水基钻井液中的应用[J]. 钻采工艺,2021,44(3):92-95. doi: 10.3969/J.ISSN.1006-768X.2021.03.22
GENG Yue, LIU Hongshan, HE Zhentao, et al. Preparation of new environmental-friendly lubricant and its application in shale gas water based drilling fluid[J]. Drilling & Production Technology, 2021, 44(3):92-95. doi: 10.3969/J.ISSN.1006-768X.2021.03.22
|
[90] |
王宗轮, 孙金声, 刘敬平, 等. 耐高温高盐钻井液润滑剂的研制与性能评价[J]. 钻井液与完井液,2022,39(5):538-544. doi: 10.12358/j.issn.1001-5620.2022.05.002
WANG Zonglun, SUN Jinsheng, LIU Jingping, et al. Development and performance evaluation of high temperature salt resistant drilling lubricant[J]. Drilling Fluid & Completion Fluid, 2022, 39(5):538-544. doi: 10.12358/j.issn.1001-5620.2022.05.002
|
[91] |
罗春芝, 章楚君, 王怡迪, 等. 聚醚脂肪酸类油基钻井液提切剂的研制与应用[J]. 钻井液与完井液,2023,40(3):303-312. doi: 10.12358/j.issn.1001-5620.2023.03.004
LUO Chunzhi, ZHANG Chujun, WANG Yidi, et al. Synthesis and application of polyether fatty acid rheology modifier for oil-based drilling fluids[J]. Drilling Fluid & Completion Fluid, 2023, 40(3):303-312. doi: 10.12358/j.issn.1001-5620.2023.03.004
|
[92] |
刘雪婧, 刘刚, 王苏南, 等. 油基钻井液高温乳化剂的制备与性能评价[J]. 油田化学,2022,39(4):571-576.
LIU Xuejing, LIU Gang, WANG Sunan, et al. Preparation and performance evaluation of emulsifier with high temperature resistance for oil-based drilling fluid[J]. Oilfield Chemistry, 2022, 39(4):571-576.
|
[93] |
魏久勇. 油基钻井液用超支化乳化剂的制备与评价[J]. 山东化工,2024,53(18):4-8. doi: 10.3969/j.issn.1008-021X.2024.18.002
WEI Jiuyong. Preparation and evaluation of hyperbranched emulsifiers for oil-Based drilling fluids[J]. Shandong Chemical Industry, 2024, 53(18):4-8. doi: 10.3969/j.issn.1008-021X.2024.18.002
|
[94] |
杜坤. 油基钻井液新型高效乳化剂的研制与评价[J]. 钻井液与完井液,2020,37(5):555-560.
DU Kun. Development and evaluation of a new high efficiency emulsifier for oil base drilling fluids[J]. Drilling Fluid & Completion Fluid, 2020, 37(5):555-560.
|
[95] |
陈安猛, 沈之芹, 高磊, 等. 可逆转油基钻井液用乳化剂的合成及性能研究[J]. 化学世界,2015,56(4):240-244.
CHEN Anmeng, SHEN Zhiqin, GAO Lei, et al. Synthesis and evaluation of the emulsifier for reversible oil based drilling fluid[J]. Chemical World, 2015, 56(4):240-244.
|
[96] |
沈启航, 梁大川, 王瑜, 等. 基于乳化剂EMUL-GP可逆乳化钻井液的研制与性能评价[J]. 化学世界,2020,61(4):298-304.
SHEN Qihang, LIANG Dachuan, WANG Yu, et al. Preparation and performance evaluation of reversible emulsifying drilling fluid based on EMUL-GP emulsifier[J]. Chemical World, 2020, 61(4):298-304.
|
[97] |
唐国旺, 安玉秀, 于培志. GW-1油基钻井液增黏剂的合成和性能[J]. 断块油气田,2017,24(5):723-726.
TANG Guowang, AN Yuxiu, YU Peizhi. Synthesis and properties of GW-1 viscosifier for oil-based drilling fluid[J]. Fault-Block Oil and Gas Field, 2017, 24(5):723-726.
|
[98] |
陈波, 侯珊珊, 吴宇, 等. 一种油基钻井液提切剂的研制及评价[J]. 化学工程师,2020,34(3):44-46, 43.
CHEN Bo, HOU Shanshan, WU Yu, et al. Development and evaluation of arheological modifier for oil based drilling fluid[J]. Chemical Engineer, 2020, 34(3):44-46, 43.
|
[99] |
黄贤斌, 孙金声, 蒋官澄, 等. 改性脂肪酸提切剂的研制及其应用[J]. 中国石油大学学报(自然科学版),2019,43(3):107-112.
HUANG Xianbin, SUN Jinsheng, JIANG Guancheng, et al. Synthesis of a modified fatty acid as rheology modifier and its application[J]. Journal of China University of Petroleum(Edition of Natural Science), 2019, 43(3):107-112.
|
[100] |
王伟, 杨洁, 荆鹏. 油基增黏提切剂VSSI的制备和性能评价[J]. 长江大学学报(自然科学版),2019,16(6):30-32.
WANG Wei, YANG Jie, JING Peng. Preparation of oil based viscosifier VSSl and its lab research[J]. Journal of Yangtze University(Natural Science Edition), 2019, 16(6):30-32.
|
[101] |
倪晓骁, 史赫, 程荣超, 等. 油基钻井液用改性锂皂石增黏提切剂[J]. 钻井液与完井液,2022,39(2):133-138. doi: 10.12358/j.issn.1001-5620.2022.02.001
NI Xiaoxiao, SHI He, CHENG Rongchao, et al. A modified hectorite viscosifier and gelling agent for oil based drilling fluids[J]. Drilling Fluid & Completion Fluid, 2022, 39(2):133-138. doi: 10.12358/j.issn.1001-5620.2022.02.001
|
[102] |
封心领. 钻井液用环境友好型减摩降阻剂性能评价及应用[J]. 油田化学,2019,36(4):587-593.
FENG Xinling. Performance evaluation and application of environmental friendly antifriction and resistance reducer for drilling fluid[J]. Oilfield Chemistry, 2019, 36(4):587-593.
|
[103] |
孙丙向, 李文博. 氨解改性大豆卵磷脂钻井液润滑剂[J]. 钻井液与完井液,2022,39(2):164-170. doi: 10.12358/j.issn.1001-5620.2022.02.006
SUN Bingxiang, LI Wenbo. Ammonolysis modified soybean lecithin as a drilling fluid lubricant[J]. Drilling Fluid & Completion Fluid, 2022, 39(2):164-170. doi: 10.12358/j.issn.1001-5620.2022.02.006
|
[104] |
明显森, 陶怀志, 陈俊斌, 等. 高密度油基钻井液降黏剂及其现场应用[J]. 钻井液与完井液,2021,38(4):423-427. doi: 10.12358/j.issn.1001-5620.2021.04.004
MING Xiansen, TAO Huaizhi, CHEN Junbin, et al. A viscosity reducer for oil based drilling fluids and its field application[J]. Drilling Fluid & Completion Fluid, 2021, 38(4):423-427. doi: 10.12358/j.issn.1001-5620.2021.04.004
|
[105] |
韩子轩. 合成基钻井液流型调节剂的研制及其作用机理[J]. 钻井液与完井液,2020,37(2):148-152. doi: 10.3969/j.issn.1001-5620.2020.02.003
HAN Zixuan. Development and working mechanism of flow pattern enhancer for synthetic base drilling fluids[J]. Drilling Fluid & Completion Fluid, 2020, 37(2):148-152. doi: 10.3969/j.issn.1001-5620.2020.02.003
|
[106] |
唐力, 黄贤斌, 刘敏. 抗高温油基钻井液润湿剂的研制及性能评价[J]. 断块油气田,2019,26(1):93-96. doi: 10.6056/dkyqt201901021
TANG Li, HUANG Xianbin, LIU Min. Development and performance evaluation of wetting agent for high-temperature oil-based drilling fluids[J]. Fault-Block Oil and Gas Field, 2019, 26(1):93-96. doi: 10.6056/dkyqt201901021
|
[107] |
刘状, 查如俊, 邵斐, 等. 石油树脂钻井液用页岩抑制剂的研制[J]. 华东理工大学学报(自然科学版),2021,47(2):170-176.
LIU Zhuang, ZHA Rujun, SHAO Fei, et al. Preparation of petroleum resin shale inhibitors for drilling fluid[J]. Journal of East China University of Science and Technology(Natural Science Edition), 2021, 47(2):170-176.
|
[108] |
韩银府, 周书胜, 魏世旺. 一种环保型封堵剂的制备及其性能评价[J]. 辽宁化工,2023,52(12):1756-1758, 1763. doi: 10.3969/j.issn.1004-0935.2023.12.010
HAN Yinfu, ZHOU Shusheng, WEI Shiwang. Preparation and performance evaluation of an environmental friendly plugging agent[J]. Liaoning Chemical Industry, 2023, 52(12):1756-1758, 1763. doi: 10.3969/j.issn.1004-0935.2023.12.010
|
[109] |
柴金鹏, 刘均一, 邱正松, 等. 含油污泥资源化制备钻井液用封堵防塌剂与应用[J]. 中国石油大学学报(自然科学版),2018,42(2):172-180.
CHAI Jinpeng, LIU Junyi, QIU Zhengsong, et al. Preparation and application of anti-sloughing agent based on resource utilization of oil sludge for drilling fluid[J]. Journal of China University of Petroleum (Edition of Natural Science), 2018, 42(2):172-180.
|
[110] |
邓小刚, 李一平, 胡正文, 等. 环保型水基钻井液润滑剂的研制与评价[J]. 油田化学,2017,34(2):201-205.
DENG Xiaogang, LI Yiping, HU Zhengwen, et al. Preparation and evaluation of environment-friendly lubricant used for water-based drilling fluid[J]. Oilfield Chemistry, 2017, 34(2):201-205.
|
[111] |
陈秀丽, 马丽华, 贾新玥, 等. 钻井液用改性地沟油润滑剂的制备与性能研究[J]. 精细石油化工,2021,38(2):7-10. doi: 10.3969/j.issn.1003-9384.2021.02.002
CHEN Xiuli, MA Lihua, JIA Xinyue, et al. Study on the preparation and performance of modified gutter oil-based lubricant for drilling fluid[J]. Speciality Petrochemicals, 2021, 38(2):7-10. doi: 10.3969/j.issn.1003-9384.2021.02.002
|
[112] |
熊潇, 吴娇. 地沟油合成钻井液用乳化剂的室内研究[J]. 石油和化工设备,2024,27(5):106-109. doi: 10.3969/j.issn.1674-8980.2024.05.027
XIONG Xiao, WU Jiao. Laboratory study on emulsifiers for mud synthesis from gutter oil[J]. Petro-Chemical Equipment, 2024, 27(5):106-109. doi: 10.3969/j.issn.1674-8980.2024.05.027
|