[1] |
AMANULLAH M, YU L. Environment friendly fluid loss additives to protect the marine environment from the detrimental effect of mud additive[J]. Journal of Petroleum Science and Engineering, 2005, 48:199-208.
|
[2] |
AMANULLAH M, RAMASAMY J, AL-ARFAJ M K, et al.Application of an indigenous eco-friendly raw material as fluid loss additive[J]. Journal of Petroleum Science & Engineering, 2016(139):191-197.
|
[3] |
SALMACHI A, TALEMI P, TOOSKI Z Y. Psyllium husk in water-based drilling fluids:an environmentally friendly viscosity and filtration agent[C]. SPE 183308, 2016.
|
[4] |
TOMISLAV S, ROBERT H, PAVEL M. Uniquely engineered water-base high-temperature drill-in fluid increases production, cuts costs in croatia campaign[C]//SPE/IADC Drilling Conference Proceedings, Paper SPE/IADC 79839/Willis, John. 2003.
|
[5] |
SIFFERMAN T R, SWAZEY J M, SKAGGS B C, et al. Fluid loss control additives and subterranean treatment fluids containing the same:CA, EP 1002026 A1[P]. 2000.
|
[6] |
HYLKE SIMONIDES,GERHARD SCHURINGA,ALI GHALAMBOR. Role of starch in designing nondamaging completion and drilling fluids[J]. SPE 73768, 2002:1-10.
|
[7] |
黄浩清. 安全环保的新型水基钻井液ULTRADRILL[J]. 钻井液与完井液, 2004, 21(6):4-7.HUANG Haoqing. New environmentally-friendly waterbased drilling fluid ULTRADRILL[J]. Drilling Fluid & Completion Fluid, 2004, 21(6):4-7.
|
[8] |
屈沅治, 赖晓晴, 杨宇平. 含胺优质水基钻井液研究进展[J]. 钻井液与完井液, 2009, 26(3):73-75.QU Yuanzhi, LAI Xiaoqing, YANG Yuping. Research progress of high quality water based drilling fluid containing amine[J]. Drilling Fluid & Completion Fluid, 2009, 26(3):73-75.
|
[9] |
TEHRANI A, YOUNG S, GERRARD D, et al. Environmentally friendly water based fluid for HT/HP drilling[J]. Society of Petroleum Engineers, 2009.
|
[10] |
DIAS F T G, SOUZA R R, LUCAS E F. Influence of modified starches composition on their performance as fluid loss additives in invert-emulsion drilling fluids[J]. Fuel, 2015, 140:711-716.
|
[11] |
杨焘. 钻井液用耐高温改性淀粉的合成与应用研究[D]. 济南:济南大学, 2012. YANG Tao. Synthesis and Application of drilling thermostable modified starch[D]. University of Jinan, 2012.
|
[12] |
台立民, 韵卓. 淀粉塑化改性的机理及研究进展[J]. 安徽农业科学, 2011,39(4):2314-2316.TAI Limin, YUN Zhuo. Research progresses and mechanism of plasticizing modification of starch[J]. Journal of Anhui Agri. Sci, 2011,39(4):2314-2316.
|
[13] |
王德龙,汪建明,宋自家, 等. 无机硅改性羧甲基淀粉钠降滤失剂的研制及其性能[J]. 石油化工, 2010, 39(4):440-443.WANG Delong, WANG Jianming, SONG Zijia, et al. Preparation and properties of a novel inorganic silicon modified sodium carboxymethyl starch filtrate reducer[J]. Petrochemical Technology, 2010, 39(4):440-443.
|
[14] |
迟姚玲, 郑力会,冀德坤,等. 抗温环保型降滤失剂改性玉米淀粉的合成与评价[J]. 中国石油大学学报(自然科学版), 2011, 35(1):151-154. CHI Yaoling, ZHENG Lihui, JI Dekun. et al. Perparation and evaluation of fluid loss reducer of heat-resistant and environment friendly modified starch[J]. Journal of China University of Petroleum, 2011, 35(1):151-154.
|
[15] |
乔营, 李烁,魏朋正,等. 耐温耐盐淀粉类降滤失剂的改性研究与性能评价[J]. 钻井液与完井液, 2014, 31(4):19-22.QIAO Ying, LI Shuo, WEI Pengzheng. Modification study and performance evaluation of temperature-resistant and salt-tolerant starch type filtrate reducer[J]. Drilling Fluid & Completion Fluid, 2014, 31(4):19-22.
|
[16] |
陈馥,罗先波,熊俊杰. 一种改性淀粉钻井液降滤失剂的合成与性能评价[J]. 应用化工, 2011, 40(5):850-852.CHEN Fu, LUO Xianbo, XIONG Junjie. Synthesis and function evaluation of modified starch drilling fluid loss additive[J]. Applied Chemical Industry, 2011, 40(5):850-852.
|
[17] |
解金库, 赵鑫,盛金春,等. 抗高温淀粉降滤失剂的合成及其性能[J]. 石油化工, 2012, 41(12):1389-1393.XIE Jinku, ZHAO Xin, SHENG Jinchun, et al. Synthesis and properties of high temperature-resistant starch filtrate reducer for drilling fluid[J]. Petrochemical Technology, 2012, 41(12):1389-1393.
|
[18] |
苏俊霖, 张容,任茂,等. 一种抗高温改性淀粉降滤失剂及其制备方法:CN103396515A[P]. 2013-11-20. SU Junlin, ZHANG Rong, REN Mao, et al. A filtrate reducing agent for high temperature modified starch and its preparation method:CN 103396515A[P]. 2013-11-20.
|
[19] |
单洁, 张喜文,杨超,等. 耐温抗盐改性淀粉钻井液降滤失剂的合成及性能研究[J]. 油田化学, 2015, 32(4):481-484.SHAN Jie, ZHANG Xiwen, YANG Chao, et al. Synthesis and performance of modified starch with heat risistance and salt tolerance[J]. Oilfield Chemistry, 2015, 32(4):481-484.
|
[20] |
褚奇, 李涛,宋兆辉,等. 一种钻井液用改性淀粉降滤失剂:CN105295859A[P]. 2016-02-03. CHU Qi, LI Ta o, SONG Zh a o h u i, e t a l. A modified starch filtrate reducer for drilling fluid:CN105295859A[P]. 2016-02-03.
|
[21] |
徐强, 马峰, 张文郁. 水基钻井液降滤失剂的发展与应用[J]. 山东轻工业学院学报,2010, 24(1):58-62.XU Qiang, MA Feng,ZHANG Wenyu. Development and application of water-soluble drilling fluid filtration control agent[J]. Journal of Shandong Institute of Light Industry, 2010,24(1):58-62.
|
[22] |
朱阿成,邱正松,袁晓景,等. 纳米改性CMC的制备、结构表征和性能评价[J]. 钻井液与完井液, 2007, 24(5):6-8.ZHU Acheng, QIU Zhengsong, YUAN Xiaojing, et al. Preparation, structure characterization and performance evaluation of nano modified CMC[J]. Drilling Fluid & Completion Fluid, 2007, 24(5):6-8.
|
[23] |
陈刚, 张洁,张黎,等. 聚糖-木质素钻井液处理剂作用效能评价[J]. 油田化学, 2011, 28(1):4-8.CHEN Gang, ZHANG Jie, ZHANG Li, et al. Preparation and properties screening of Polysaccharide-Lignin as mud additives[J].Oilfield Chemistry, 2011, 28(1):4-8.
|
[24] |
褚奇, 罗平亚. 一种有机硅降滤失剂及其制备方法:CN102174314A[P]. 2011-09-07. CHU Qi, LUO Pingya. An organosilicon filter loss agent and its preparation method:CN 102174314A[P]. 2011-09-07.
|
[25] |
褚奇, 罗平亚,冯俊雄,等. 抗高温有机硅共聚物降滤失剂的合成与性能[J]. 石油化工, 2011, 40(9):991-996.CHU Qi, LUO Pingya, FENG Junxiong, et al. Synthesis and properties of an organosilicon copolymer used as high temperature fluid loss control additive[J]. Petrochemical Technology, 2011, 40(9):991-996.
|
[26] |
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.
|
[27] |
李炎. 耐高温聚合物降滤失剂AAS的研制与性能评价[J]. 石油钻探技术,2015,43(4):96-101.LI Yan.Development and performance evaluation of the high temperature resistant polymer fluid loss agent AAS[J].Petroleum Drilling Techniques,2015,43(4):96-101.
|
[28] |
李真伟,梁大川,彭波,等. 抗高温抗盐降滤失剂HRF的研制及应用[J]. 油田化学, 2016, 33(2):204-209.LI Zhenwei, LIANG Dachuan, PENG Bo, et al. Synthesis and application filtrate loss reducer HRF with temperature resistance and salt tolerance[J]. Oilfield Chemistry, 2016, 33(2):204-209.
|
[29] |
TAJ IRI T, MORITA S, OZAKI Y. Hydr a t ion mechanism on a poly(methacrylic acid) film studied by in situ, attenuated total reflection infrared spectroscopy[J]. Polymer, 2009, 50(24):5765-5770.
|
[30] |
王中华,王旭,杨小华. 超高温钻井液体系研究(Ⅱ)——聚合物降滤失剂的合成与性能评价[J]. 石油钻探技术,2009,37(4):1-6.WANG Zhonghua, WANG Xu, YANG Xiaohua.Ultra high temperature drilling fluid system study(2):Synthesis and evaluation of a polymer fluid loss additives[J]. Petroleum Drilling Techniques,2009,37(4):1-6.
|
[31] |
王中华,王旭. 超高温钻井液体系研究(Ⅲ)——抗盐高温高压降滤失剂研制[J]. 石油钻探技术,2009, 37(5):5-9.WANG Zhonghua, WANG Xu.Studies on ultra-high temperature drilling fluid system (3)——development of the salt-resistant high temperature and high pressure fluid loss reagent[J].Petroleum Drilling Techniques,2009,37(5):5-9.
|
[32] |
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.
|
[33] |
罗霄. 抗温耐盐共聚物降滤失剂及抑制剂的合成与性能评价[D]. 成都:西南石油大学, 2014. LUO Xiao. Research on synthesis, performance of high temperature resistent and sodium tolerant filtrate reducer and inhibitor[D]. Chengdu:Southwest Petroleum University, 2014.
|
[34] |
朱腾. 耐温抗盐聚合物钻井液降滤失剂的合成与评价[D]. 山东:山东大学, 2012. ZHU Teng. Synthesis and evaluation of high-temperature resistance and salt tolerance polymer as fluid loss reducer[D]. Shandong:Shandong University, 2012.
|
[35] |
王中华. 钻井液化学品设计与新产品开发[M]. 西北大学出版社,2006. WANG Zhonghua. Drilling fluid chemical design and new product development[M]. Northwestern university press, 2006.
|
[36] |
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.
|
[37] |
陶怀志. 抗高温抗盐钙水基钻井液降滤失剂合成、表征与作用机理研究[D]. 成都:西南石油大学, 2012. TAO Huaizhi. Researches on synthesis, properties and mechanism of high temperature resistentand sodium/calcium tolerant filtrate reducer for water-based drilling fluid[D]. Chengdu:Southwest Petroleum University, 2012.
|