Volume 33 Issue 6
Nov.  2016
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TANG Zhichuan, QIU Zhengsong, ZHONG Hanyi, ZHANG Xin, ZHANG Daoming. Shale Inhibition Characteristics of a New Polyamide-Amine Dendrimer[J]. DRILLING FLUID & COMPLETION FLUID, 2016, 33(6): 28-32. doi: 10.3969/j.issn.1001-5620.2016.06.005
Citation: TANG Zhichuan, QIU Zhengsong, ZHONG Hanyi, ZHANG Xin, ZHANG Daoming. Shale Inhibition Characteristics of a New Polyamide-Amine Dendrimer[J]. DRILLING FLUID & COMPLETION FLUID, 2016, 33(6): 28-32. doi: 10.3969/j.issn.1001-5620.2016.06.005

Shale Inhibition Characteristics of a New Polyamide-Amine Dendrimer

doi: 10.3969/j.issn.1001-5620.2016.06.005
  • Received Date: 2016-09-24
  • Publish Date: 2016-11-30
  • Dendrimers, because of their unique molecular structures and characteristics, have been receiving more and more attention in recent years. Polyamide-amine (PAMAM), the most understood dendrimer, has been widely used in many felds, including oilfeld chemistry. In a recent study, the inhibitive capacity of PAMAM with different generations was evaluated through bentonite yield test, hot rolling test and particle size distribution test etc. Using surface tension tester, Zeta potentiometer and X-ray diffraction tester, PAMAMs of different generations were characterized. It has been shown that PAMAM s of different generations (G0-G5) all have superior shale inhibitive capacity, better than that of KCl and Ultrahib (a polyamine product used as a shale inhibitor). The adsorption of PAMAMs in between the layers of clay is related to their concentrations. At low concentrations, the adsorption is monolayer adsorption; at higher concentrations, the adsorption becomes double-layer adsorption. PAMAM has high intensity of amine base at its surface, and after partial protonation in water, it is adsorbed on to the surface of clay particles through electrostatic force and hydrogen bond, reducing the hydration repulsion of clay particles and squeezing interlayer water molecules out of clay, thereby inhibiting the hydration and dispersion of shales.

     

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  • [1]
    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. Study progresses in water base drilling fluid with amine[J]. Drilling Fluid & Completion Fluid, 2009, 26(3):73-75.
    [2]
    张克勤, 何纶, 安淑芳, 等. 国外高性能水基钻井液介绍[J]. 钻井液与完井液, 2007, 24(3):68-73.

    ZHANG Keqin, HE Lun, AN Shufang, et al. An introduction to the high performance water base muds abroad[J]. Drilling Fluid & Completion Fluid, 2007, 24(3):68-73.
    [3]
    邱正松, 徐加放, 吕开河, 等."多元协同"稳定井壁新理论[J]. 石油学报, 2007, 28(2):117-119.

    QIU Zhengsong, XU Jiafang, LYU Kaihe, et al. A multivariate cooperation principle for well-bore stabilization[J]. Acta Petrolei Sinica, 2007, 28(2):117-119.
    [4]
    徐同台. 井壁稳定技术研究现状及发展方向[J]. 钻井液与完井液, 1997, 14(4):36-43.

    XU TongTai. On wellbore stability technology[J].Drilling Fluid & Completion Fluid, 1997, 14(4):36-43.
    [5]
    SANTARELLI F J, ZAHO S, BURRAFATO G, et al. Wellbore stability analysis made easy and practical[C]//SPE/IADC Drilling Conference. Society of Petroleum Engineers, 1996.
    [6]
    邱正松, 钟汉毅, 黄维安. 新型聚胺页岩抑制剂特性及作用机理[J]. 石油学报, 2011, 32(4):678-682.

    QIU Zhengsong, ZHONG Hanyi, HUANG Wei' an. Properties and mechanism of a new polyamine shale inhibitor[J]. Acta Petrolei Sinica, 2011, 32(4):678-682.
    [7]
    王建华, 鄢捷年, 丁彤伟. 高性能水基钻井液研究进展[J]. 钻井液与完井液, 2007, 24(1):71-75.

    WANG Jianhua, YAN Jienian, DING Tongwei. Progresses in the researches on high performance water base muds[J]. Drilling Fluid & Completion Fluid, 2007, 24(1):71-75
    [8]
    储政. 国内聚胺类页岩抑制剂研究进展[J]. 化学工业与工程技术, 2012, 33(2):1-5.

    CHU Zheng. Research progress of polyamines shale inhibitor inland[J]. Journal of Chemical Industry & Engineering, 2012, 33(2):1-5.
    [9]
    夏常磊. 树枝状聚合物光响应单分子膜与双层支化结构纳米载体[D]. 中国科学技术大学, 2010. XIA Changlei. Dendritic structures as photo-responsive monolayers and double shell structures as unimolecular nonocarriers[D]. University of Science and Technology of China, 2010.
    [10]
    TOMALIA D A, BAKER H, DEWALD J, et al. A new class of polymers:starburst-dendritic macromolecules[J]. Polymer Journal, 1985, 17(1):117-132.
    [11]
    钟汉毅, 邱正松, 黄维安, 等. 胺类页岩抑制剂特点及研究进展[J]. 石油钻探技术, 2010(1):104-108. ZHONG Hanyi, QIU Zhengsong, HUANG Wei'an, et al. Development and features of amine shale inhibitors[J]. Petroleum Drilling Techniques, 2010

    (1):104-108.
    [12]
    GAREA S A, GHEBAUR A, VASILE E. Hybrid materials based on dendritic polymer and halloysite[J]. Materiale Plastice, 2014, 51(1):12-16.
    [13]
    MOHAN K K, FOGLER H S. Effect of pH and layer charge on formation damage in porous media containing swelling clays[J]. Langmuir, 1997, 13(10):2863-2872.
    [14]
    RITTER A J, GÉRAUT R. New optimization drilling fluid programs for reactive shale formations[C]//SPE Annual Technical Conference and Exhibition. Society of Petroleum Engineers, 1985.
    [15]
    SHI X, BÁNYAI I, LESNIAK W G, et al. Capillary electrophoresis of polycationic poly (amidoamine) dendrimers[J]. Electrophoresis, 2005, 26(15):2949-2959.
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