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首页> 外文期刊>Journal of Colloid and Interface Science >The role of mineral surface chemistry in modified dextrin adsorption
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The role of mineral surface chemistry in modified dextrin adsorption

机译:矿物表面化学在改性糊精吸附中的作用

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摘要

The adsorption of two modified dextrins (phenyl succinate dextrin - PS Dextrin; styrene oxide dextrin - SO Dextrin) on four different mineral surfaces has been studied using X-ray photoelectron spectroscopy (XPS), in situ atomic force microscopy (AFM) imaging, and captive bubble contact angle measurements. The four surfaces include highly orientated pyrolytic graphite (HOPG), freshly cleaved synthetic sphalerite (ZnS), and two surfaces produced through surface reactions of sphalerite: one oxidized in alkaline solution (pH 9, 1h immersion); and one subjected to metal ion exchange between copper and zinc (i.e. copper activation: exposed to 1×10~(-3)M CuSO_4 solution for 1h). XPS measurements indicate that the different sphalerite surfaces contain varying amounts of sulfur, zinc, oxygen, and copper, producing substrates for polymer adsorption with a range of possible binding sites. AFM imaging has shown that the two polymers adsorb to a similar extent on HOPG, and that the two polymers display very different propensities for adsorption on the three sphalerite surface types, with freshly cleaved sphalerite encouraging the least adsorption, and copper activated and oxidized sphalerite encouraging significantly more adsorption. Contact angle measurements of the four surfaces indicate that synthetic sphalerite has a low contact angle upon fracture, and that oxidation on the timescale of one hour substantially alters the hydrophobicity. HOPG and copper-activated sphalerite were the most hydrophobic, as expected due to the carbon and di/poly-sulfide rich surfaces of the two samples, respectively. SO Dextrin is seen to have a significant impact on the wettability of HOPG and the surface reacted sphalerite samples, highlighting the difficulty in selectively separating sphalerite from carbonaceous unwanted minerals in flotation. PS Dextrin has the least effect on the hydrophobicity of the reacted sphalerite surfaces, whilst still significantly increasing the wettability of graphite, and thus has more potential for use as a polymer depressant in this separation.
机译:使用X射线光电子能谱(XPS),原位原子力显微镜(AFM)成像和俘获气泡接触角的测量。四个表面包括高度定向的热解石墨(HOPG),刚裂解的合成闪锌矿(ZnS),以及两个通过闪锌矿的表面反应生成的表面:一个在碱性溶液中氧化(pH 9,浸入1h);一个在碱性溶液中被氧化。另一个在铜和锌之间进行金属离子交换(即铜活化:暴露于1×10〜(-3)M CuSO_4溶液中1h)。 XPS测量表明,不同的闪锌矿表面含有不同数量的硫,锌,氧和铜,从而产生了具有多种可能结合位点的聚合物吸附基质。原子力显微镜成像表明,两种聚合物在HOPG上的吸附程度相似,并且两种聚合物在三种闪锌矿表面类型上的吸附倾向非常不同,其中新鲜裂解的闪锌矿的吸附最少,而铜活化和氧化的闪锌矿的吸附率最低。明显更多的吸附。四个表面的接触角测量表明,合成闪锌矿在断裂时具有低接触角,并且在一小时的时间尺度上的氧化作用实质上改变了疏水性。如预期的那样,HOPG和铜活化闪锌矿的疏水性最高,这分别是由于两个样品的富含碳和二/多硫化物的表面。 SO糊精被认为对HOPG和表面闪锌矿样品的润湿性有重大影响,突出了在浮选过程中将闪锌矿与含碳有害矿物选择性分离的困难。 PS糊精对反应的闪锌矿表面的疏水性影响最小,同时仍显着提高了石墨的润湿性,因此具有更大的潜力用作这种分离中的聚合物抑制剂。

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