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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Effect of salinity on adsorption of sodium hexametaphosphate and hydrophobically-modified polyacrylamide flocculant on kaolinite Al-OH surface
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Effect of salinity on adsorption of sodium hexametaphosphate and hydrophobically-modified polyacrylamide flocculant on kaolinite Al-OH surface

机译:盐度对六偏磷酸钠和疏水性改性聚丙烯酰胺絮凝剂对高岭土Al-OH表面吸附的影响

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Solution salinity is critical for the inhibition effect of sodium hexametaphosphate on different mineral surfaces, further affecting the separation of minerals in aqueous solution. In this work, the effect of K+ and Ca2+ on adsorption of sodium hexametaphosphate (SHMP) and hydrophobically modified polyacrylamide, poly(AM-NaAA-C(16)DMAAC) (HMPAM), on alumina surface (i.e., kaolinite Al-OH surface) were investigated using quartz crystal microbalance with dissipation (QCM-D). The deposition layer on alumina surface with the effect of adding 1 mM SHMP in 10 mM of CaCl2 solution were examined by glancing angle X-ray diffraction (GAXRD), scanning electron microscope (SEM) and X-ray photoelectron spectroscopy (XPS). The 100 mM KCl solution promoted the adsorption of both HMPAM and SHMP on alumina surface, which would be mainly caused by the molecular configuration change. The more flexible and coiled configuration of HMPAM and SHMP in 100 mM KCl solution could be helpful for increasing the adsorption sites on alumina surface. Moreover, the intermolecular hydrophobic interaction between the alkane chains of HMPAM would lead to the multilayer adsorption of HMPAM instead of adsorbing directly onto alumina surface. Alternatively, 1 mM and 10 mM CaCl2 solutions lead to a lower adsorption amount of HMPAM on alumina surface, which is most likely caused by the suppressed electrostatic attraction and condensed conformation of HMPAM. The adsorption layer of SHMP formed on alumina surface could prevent the adsorption of HMPAM through different mechanisms in KCl and CaCl2 solutions at different concentrations. Interestingly, scattered micro-spheres were found to adsorb on alumina surface with 1 mM SHMP in 10 mM CaCl2 solution, mainly in forms of calcium hydrogen phosphate hydrate. Our work provides fundamental insights into the effect of adding dispersant (e.g., SHMP) and polymer flocculant (e.g., HMPAM) during selective flocculation of kaolinite, with helpful guidance for clay-involved mineral processing.
机译:溶液盐度对于六偏磷酸钠对不同矿物表面的抑制作用至关重要,进一步影响水溶液中矿物的分离。在这项工作中,K +和Ca2 +对六偏磷酸钠(SHMP)和疏水改性的聚丙烯酰胺吸附的影响,在氧化铝表面上的聚(AM-NaA-C(16)DMAAc)(HMPAM)(即高岭石Al-OH表面使用石英晶体微稳定进行研究,耗散(QCM-D)。通过透明角X射线衍射(GAXRD),扫描电子显微镜(SEM)和X射线光电子谱(XPS),检查氧化铝表面上的氧化铝表面的沉积层。 100mM KCl溶液促进了HMPAM和SHMP对氧化铝表面的吸附,这主要是由分子配置变化引起的。在100mM KCl溶液中更柔软且卷曲的HMPAM和SHMP的配置可能有助于增加氧化铝表面上的吸附位点。此外,HMPAM的烷烃链之间的分子间疏水相互作用将导致HMPAM的多层吸附,而不是直接吸附在氧化铝表面上。或者,1mm和10mM CaCl 2溶液导致氧化铝表面上的HMPAM的较低吸附量,这是由由抑制的静电吸引和HMPAM的浓缩构象引起的。在氧化铝表面形成的SHMP的吸附层可以防止HMPAM通过不同浓度的KCl和CaCl2溶液中的不同机制吸附。有趣的是,发现分散的微球在10mM CaCl 2溶液中用1mm SHMP吸附氧化铝表面,主要以磷酸钙水合物的形式。我们的作品为在高岭石的选择性絮凝过程中添加了分散剂(例如,SHMP)和聚合物絮凝剂(例如,HMPAM)的效果,为粘土矿物加工的有用指导提供了根本的洞察力。

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