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首页> 外文期刊>Journal of Petroleum Science & Engineering >Nontoxic low-cost amines as wettability alteration chemicals in carbonates
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Nontoxic low-cost amines as wettability alteration chemicals in carbonates

机译:无毒的低成本胺作为碳酸盐中润湿性改变的化学物质

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It is possible to improve the oil recovery from low temperature, oil-weteutal-wet, fractured carbonate reservoirs by spontaneous imbibition of water using nontoxic low-cost primary amines, R-NH_2, as wettability alteration chemicals added to the injection water. The present paper discusses possible limitations in the performance of the chemicals such as solubility, pH, carbonate dissolution, and temperature effects. It was observed that C_(10)-amine was compatible with high salinity brine at pH < 7 in the temperature range of 20-70 deg C, but C_(12)-amine was insolvable at similar conditions. C_(10)-amine (1.0 wt%) was dissolved in brine at pH = 6.5 and imbibed spontaneously into oil-wet reservoir dolomite cores at 20 and 40 deg C. The oil recovery varied between 50% and 75% of original-oin-in-place (OOIP) depending on the core properties. The mechanism for the wettability alteration using C_(10)-amine is believed to be similar to the previously studied C12TAB system i.e., desorption of strongly adsorbed carboxylates from the carbonate surface by the formation of ion-pairs. At 70 deg C, C_(10)-amine appeared to fail as a wettability-modifying chemical, probably due to the dissolution of carbonate rock. The concentration of the active component C_(10)NH_3~+ in the aqueous phase of the pores decreases in this dissolution process. Advancing contact angle measurements on oil-treated calcite crystals confirmed the potential of the C_(10)-amine solution to make the surface strongly water-wet at pH = 6.5 in the temperature range of 20-90 deg C.
机译:通过使用无毒的低成本伯胺R-NH_2自发吸水,可以提高低温,油湿/中湿裂缝性碳酸盐岩油的采收率,因为可湿性改变剂会添加到注入水中。本文讨论了化学品性能的可能限制,例如溶解度,pH,碳酸盐溶解和温度影响。观察到C_(10)-胺在20-70℃的温度范围内与pH <7的高盐度盐水相容,但是C_(12)-胺在相似条件下不可溶。将C_(10)-胺(1.0 wt%)溶解在pH = 6.5的盐水中,并在20和40℃自吸到油湿储层白云岩岩心中。采油率在原始油的50%到75%之间变化就地(OOIP),取决于核心属性。据信使用C_(10)-胺改变润湿性的机理与先前研究的C12TAB体系相似,即通过离子对的形成从碳酸盐表面解吸强吸附的羧酸盐。在70摄氏度时,C_(10)-胺似乎无法作为可润湿性改良剂而失效,这可能是由于碳酸盐岩的溶解所致。在该溶解过程中,孔的水相中活性成分C_(10)NH_3〜+的浓度降低。在经过油处理的方解石晶体上进行的先进接触角测量证实了C_(10)-胺溶液在20-90摄氏度的温度范围内在pH = 6.5时使表面强水润湿的潜力。

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