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Adsorption properties of poly(carboxylate ether) to negatively charged surfaces in high-salt conditions

机译:聚(羧酸醚)的吸附性能在高盐条件下带负电荷的表面

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Interaction forces between negatively charged surfaces in high-salt solutions with three commercial cement dispersants, poly(carboxylate ether)-based (PCE) superplasticizer consisting of a carboxylic backbone and grafted poly(ethylene glycol) (PEG) side chains, were directly measured with subnanometer resolution using a surface forces apparatus. Low molecular weight PCE adsorbed onto mica from 0.1 M K2SO4 due to K+ ion chelation by PEG chains. Surprisingly, higher molecular weight PCEs did not. Moreover, none of the PCEs adsorbed onto mica from either pore solution conditions of 0.1 M K2SO4 with saturated Ca(OH)(2) or high-calcium conditions of 0.1 M Ca(NO3)(2). In addition, low molecular weight PCE did not adsorb onto silica from pore solution conditions. These findings are attributed to the complex interplay of ion chelation by PEG chains, electrostatic binding and screening interactions with charged surfaces in the presence of monovalent and divalent counterions, and suggest a role for non-adsorbed PCE polymer in cement paste workability.
机译:用三种商业水泥分散剂的高盐溶液中带负电荷表面的相互作用力,基于羧基骨架和接枝聚(乙二醇)(PEG)侧链组成的聚(PCE)超塑料剂(PCE)超塑性剂(PEG)侧链。使用表面力装置的亚风速分辨率。由于PEG链的K +离子螯合,低分子量PCE吸附到云母上,从0.1M K 2 SO 4螯合。令人惊讶的是,更高的分子量PCE没有。此外,没有饱和0.1M k2SO4的孔溶液条件与0.1M Ca(2)的高钙条件(2)的高饱和Ca(2)或高钙条件的浊溶液中的任何斑。此外,低分子量PCE不会从孔溶液条件下吸附到二氧化硅上。这些发现归因于通过PEG链,静电结合和筛选相互作用在单价和二价抗衡离子存在下与带电表面的复杂相互作用,并表明在水泥浆料可加工性中的非吸附性PCE聚合物的作用。

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