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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Adhesion between hydrocarbon particles and silica surfaces with different degrees of hydration as determined by the AFM colloidal probe technique
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Adhesion between hydrocarbon particles and silica surfaces with different degrees of hydration as determined by the AFM colloidal probe technique

机译:通过AFM胶体探针技术确定的不同水合度的烃类颗粒与二氧化硅表面之间的粘附力

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Adhesion between oily contaminants and soil particles is a key factor controlling oil release during soil decontamination using wet separation processes. Previous research reports showed that hydration of the soil components, mainly silica particles, governs the oil release efficiency. In this work, the adhesion force between polyethylene particles and silica surfaces with different degrees of hydration obtained by thermal treatment and silanation was measured in an aqueous environment using the atomic force microscopy colloidal probe technique. The adhesion force increases significantly with dehydration of the silica surface and the subsequent increase in hydrophobicity. It was found that experimental adhesion forces measured in the polyethylene-water-silica system are in good agreement with the values calculated theoretically using the Lifshitz/van derWaals-Lewis acid/base interaction theory for highly hydrophobic silica substrates. This agreement is less satisfactory for hydrophilic and slightly hydrophobized silica. It is hypothesized that a thin film of water is strongly adsorbed to the silanol groups on the silica surface and protects the silica surface against its "dry contact" with the polyethylene particle during the atomic force microscopy surface force measurements. [References: 64]
机译:油污污染物和土壤颗粒之间的粘附力是使用湿法分离过程控制土壤去污过程中油脂释放的关键因素。先前的研究报告表明,土壤成分(主要是二氧化硅颗粒)的水化作用决定了油的释放效率。在这项工作中,使用原子力显微镜胶体探针技术在水性环境中测量了通过热处理和硅烷化获得的具有不同水合度的聚乙烯颗粒与二氧化硅表面之间的粘附力。粘附力随着二氧化硅表面的脱水以及随后疏水性的增加而显着增加。已经发现,在聚乙烯-水-二氧化硅体系中测得的实验粘合力与使用Lifshitz / van derWaals-Lewis酸/碱相互作用理论对高疏水性二氧化硅基材的理论计算值相符。对于亲水性和略疏水化的二氧化硅,该协议不太令人满意。据推测,在原子力显微镜表面力测量过程中,水的薄膜强烈吸附在二氧化硅表面的硅烷醇基团上,并保护二氧化硅表面免受其与聚乙烯颗粒的“干接触”。 [参考:64]

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