石油化工高等学校学报
石油化工高等學校學報
석유화공고등학교학보
JOURNAL OF PETROCHEMICAL UNIVERSITIES
2014年
1期
90-96
,共7页
曲占庆%何利敏%王冰%李侠清
麯佔慶%何利敏%王冰%李俠清
곡점경%하리민%왕빙%리협청
疏水%支撑剂%表面活性剂%压裂
疏水%支撐劑%錶麵活性劑%壓裂
소수%지탱제%표면활성제%압렬
Hydrophobic%Proppant%Surfactant%Fracture
对支撑剂表面进行疏水处理可以使其在支撑裂缝、防砂的同时起到降低油田产出水的目的。疏水表面处理方法共分为普通疏水及超疏水两大类。普通疏水表面制备方法分为表面活性剂、有机硅材料、含氟材料3个方面;超疏水表面制备方法分为溶胶-凝胶法、电纺法、模版法、层层自组装法和刻蚀法。对其处理结果等进行对比,结合现场已有的抑水支撑剂应用情况,提出将疏水表面制备方法应用于支撑剂。使用表面活性剂对石英表面进行疏水性改造实验,发现阳离子表面活性剂十六烷基三甲基溴化铵(CTAB)的效果最好,接触角由13.7°增大到73.2°。此时表面张力为48.88 m N/m ,吸附量为0.292 m g/g。
對支撐劑錶麵進行疏水處理可以使其在支撐裂縫、防砂的同時起到降低油田產齣水的目的。疏水錶麵處理方法共分為普通疏水及超疏水兩大類。普通疏水錶麵製備方法分為錶麵活性劑、有機硅材料、含氟材料3箇方麵;超疏水錶麵製備方法分為溶膠-凝膠法、電紡法、模版法、層層自組裝法和刻蝕法。對其處理結果等進行對比,結閤現場已有的抑水支撐劑應用情況,提齣將疏水錶麵製備方法應用于支撐劑。使用錶麵活性劑對石英錶麵進行疏水性改造實驗,髮現暘離子錶麵活性劑十六烷基三甲基溴化銨(CTAB)的效果最好,接觸角由13.7°增大到73.2°。此時錶麵張力為48.88 m N/m ,吸附量為0.292 m g/g。
대지탱제표면진행소수처리가이사기재지탱렬봉、방사적동시기도강저유전산출수적목적。소수표면처리방법공분위보통소수급초소수량대류。보통소수표면제비방법분위표면활성제、유궤규재료、함불재료3개방면;초소수표면제비방법분위용효-응효법、전방법、모판법、층층자조장법화각식법。대기처리결과등진행대비,결합현장이유적억수지탱제응용정황,제출장소수표면제비방법응용우지탱제。사용표면활성제대석영표면진행소수성개조실험,발현양리자표면활성제십륙완기삼갑기추화안(CTAB)적효과최호,접촉각유13.7°증대도73.2°。차시표면장력위48.88 m N/m ,흡부량위0.292 m g/g。
Proppant hydrophobic surface treatment can make proppant reduce oil field produced water while support fracture , control sand .The hydrophobic surface treatment method in terms of both ordinary hydrophobic and superhydrophobic was summed up .The ordinary hydrophobic surface preparation method is divided into three aspects of surface active agent ,organic silicon material , fluorine-containing material ;the superhydrophobic surface preparation method is divided into the sol-gel method ,electrospinning method ,template method ,layers of self-assembly and etching method .Those preparation methods was compared ,combined with the situation that water suppression proppant was applied to the field ,proposed the hydrophobic surface preparation method was applied to the proppant .Using surfactant hydrophobic modification experiments on quartz surface ,the effect of the cationic surfactant CTAB is best ,contact angle on the surface of the quartz from 13 .7° increases to 73 .2° ,the Surface tension is 48 .88 mN/m ,the adsorption capacity of 0 .292 mg/g .Finally ,it is conceived that hydrophobic surface modification methods was applied to other oilfield areas .