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KCl/聚合醇协同防塌作用机理研究 被引量:20
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作者 邱正松 韩祝国 +2 位作者 徐加放 于连香 张红星 《钻井液与完井液》 CAS 北大核心 2006年第2期1-3,共3页
借助Zeta/sizer3000胶体电位粒度仪、Novasina水活度仪以及Texas-500界面张力仪,研究了氯化钾与强抑制性聚合醇CXC-1协同作用对钻井液ζ电位、水活度以及油/水界面张力的影响规律,并结合传统的吸附、分散等防塌实验方法,探讨了氯化钾与C... 借助Zeta/sizer3000胶体电位粒度仪、Novasina水活度仪以及Texas-500界面张力仪,研究了氯化钾与强抑制性聚合醇CXC-1协同作用对钻井液ζ电位、水活度以及油/水界面张力的影响规律,并结合传统的吸附、分散等防塌实验方法,探讨了氯化钾与CXC-1的协同防塌作用机理。研究表明,CXC-1具有降低页岩负电性、降低钻井液水活度和油/水界面张力的特性;与KCl复配时,CXC-1浊点降低,在粘土颗粒上的吸附量增加,页岩负电性和钻井液水活度进一步降低,同时仍然保持较低的油/水界面张力,协同防塌效果显著。 展开更多
关键词 聚合醇 井眼稳定 kcl机理 协同作用
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Electrodeposition of Ir on platinum in NaCl-KCl molten salt 被引量:4
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作者 钱建刚 赵天 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第11期2855-2862,共8页
The reduction mechanism of Ir in the NaCl-KCl-IrCl3 molten salt was investigated by cyclic voltammetry and chronopotentiometry, and Ir film was deposited effectively on platinum in potentiostatic mode. The morphology ... The reduction mechanism of Ir in the NaCl-KCl-IrCl3 molten salt was investigated by cyclic voltammetry and chronopotentiometry, and Ir film was deposited effectively on platinum in potentiostatic mode. The morphology and constitution of Ir film were examined by scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS) and X-ray diffraction (XRD). It is found that the reduction mechanism of Ir(III) is a three-electron step and electro reaction is a reversible diffusion controlled process; the diffusion coefficients of Ir(III) at 1083, 1113, 1143 and 1183 K are 1.56×10-4, 2.23×10-4, 2.77×10-4 and 4.40×10-4 cm2/s, respectively, while the activation energy of the electrode reaction is 102.95 kJ/mol. The compacted Ir film reveals that the applied potential greatly affects the deposition of Ir, the thickness of Ir film deposited at the potential of reduction peak is the highest, the temperature of the molten salt also exerts an influence on deposition, the film formed at a lower temperature is thinner, but more micropores would occur on film when the temperature went too high. 展开更多
关键词 IR NaCl-kcl molten salt NaCl-kcl-IrCl3 molten salt ELECTRODEPOSITION reduction mechanism electrode reaction activation energy micro-pores
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