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    • 5. 发明申请
    • WELL TREATMENT
    • 井治疗
    • WO0240827A8
    • 2004-04-08
    • PCT/GB0105087
    • 2001-11-19
    • STATOIL ASAKOTLAR HANS KRISTIANSELLE OLAV MARTINAUNE ODDVAR ARNFINNKILAAS LARSDYRLI ANNE DALAGERCOCKBAIN JULIAN
    • KOTLAR HANS KRISTIANSELLE OLAV MARTINAUNE ODDVAR ARNFINNKILAAS LARSDYRLI ANNE DALAGER
    • C09K8/536C09K8/92E21B37/06E21B33/138E21B43/25
    • C09K8/92C09K8/536Y10S507/902Y10S507/939
    • The invention provides a method for the treatment of a hydrocarbon well which method comprises administering down said well polymeric particles impregnated with a well treatment chemical or precursor or generator thereof (e.g. a scale inhibitor), said particles having a pore volume of at least 20 %, and being prepared by a process which comprises preparing in a first step an aqueous dispersion of polymer particles containing from 0.05 to 10 times by volume, based on the polymer, of one or more materials having a water-solubility of g/l and having a molecular weight of 5000 g/mol (herein referred to as Substance I) said Substance I not being an oligomer of the polymer forming the particles and being non-crystalline at the temperature at which it is incorporated into the particles and is in liquid form at the temperature at which Substance II is introduced in a second step, and in said second step adding a partly water-soluble material (herein referred to as Substance II) having a water-solubility of at least ten times that of Substance I under conditions which prevent or hinder transport of Substance I through the aqueous phase, whereby Substance II diffuses into the polymer particles swelled with Substance I and increases the volume of said particles by from 20 to 1000 times, based on the polymer.
    • 本发明提供了一种用于处理烃井的方法,该方法包括向所述浸渍有井处理化学品或其前体或发生器(例如防垢剂)的所述井聚合物颗粒施用,所述颗粒具有至少20%的孔体积, 并且通过一种方法制备,该方法包括在第一步中制备聚合物颗粒的水分散体,其含有基于聚合物0.05至10倍体积的一种或多种水溶性为 g / l,分子量为5000g / mol(本文称为物质I))所述物质I不是形成颗粒的聚合物的低聚物,并且在其结合的温度下是非结晶的 在第二步中引入物质II的温度下为液体形式,在第二步中加入部分水溶性物质(本文称为物质II) 在防止或阻碍物质I运输通过水相的条件下,至少是物质I的10倍的水溶性,其中物质II扩散到用物质I溶胀的聚合物颗粒中,并将所述颗粒的体积增加20 至1000倍,基于聚合物。