用作延缓交联剂的多重乳液热稳定性研究

Oilfield Chemistry(2005)

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Abstract
拟用作聚合物水基凝胶延缓交联剂的多重乳液按下述方法制备:1.5%醋酸铬水溶液与加入3%油包水乳化剂的柴油按体积比70∶30混合,制成W1/O乳液,后者与加有1%水包油乳化剂的矿化度32 g/L的模拟地层水按体积比70∶30混合,制成(W1/O)/W2多重乳液.用电导率法测定乳液静置30天析出水相中醋酸铬含量并计算乳液破裂率,结果表明多重乳液的稳定性远小于相应的W1/O乳液,使用油包水乳化剂T161(HLB值3.8)和水包油乳化剂Tween20(16.7)的多重乳液的稳定性好于使用Span80(4.3)和Tween20的多重乳液,30℃、50℃、70℃破裂率分别为11.5%,17.8%,28.0%和21.0%,56.0%,67.3%.加入T161的柴油与模拟地层水之间的界面剪切粘度ηs大于加入Span80时的相应值,表面活性剂加量0.3%时,30℃,50℃,70℃下60 min ηs值(mN·s/m)分别为0.112,0.100,0.096和0.0442,0.0349,0.0257.在水相中加入0.02%和0.10%Tween20使加入3.0%T161的柴油与模拟地层水之间30℃、60 min ηs值降低14.3%和27.3%,油包水乳化剂为Span80时则降低34.9%和65.4%.用T161/Tween20制备的多重乳液稳定性较好的原因,是油水界面的T161分子不易被Tween20分子顶替.图9表3参9.
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Key words
Aqueous polymer gelling fluids,Emulsifiers,Interfacial shear viscosity,Multiple emulsions,Redardative crosslinker,Slow release chemical,Stability
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