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Linear adsorption of nonionic organic compounds from water onto hydrophilic minerals: Silica and alumina

机译:非离子有机化合物从水中线性吸附到亲水性矿物上:二氧化硅和氧化铝

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摘要

To characterize the linear adsorption phenomena in aqueous nonionic organic solute-mineral systems, the adsorption isotherms of some low-molecular-weight nonpolar nonionic solutes (1,2,3-trichlorobenzene, lindane, phenanthrene, and pyrene) and polar nonionic solutes (1,3-dinitrobenzene and 2,4-dinitrotoluene) from single- and binary-solute solutions on hydrophilic silica and alumina were established. Toward this objective, the influences of temperature, ionic strength, and pH on adsorption were also determined. It is found that linear adsorption exhibits low exothermic heats and practically no adsorptive competition. The solute-solid configuration and the adsorptive force consistent with these effects were hypothesized. For nonpolar solutes, the adsorption occurs presumably by London (dispersion) forces onto a water film above the mineral surface. For polar solutes, the adsorption is also assisted by polar-group interactions. The reduced adsorptive forces of solutes with hydrophilic minerals due to physical separation by the water film and the low fractions of the water-film surface covered by solutes offer a theoretical basis for linear solute adsorption, low exothermic heats, and no adsorptive competition. The postulated adsorptive forces are supported by observations that ionic strength or pH poses no effect on the adsorption of nonpolar solutes while it exhibits a significant effect on the uptake of polar solutes.
机译:为了表征在水性非离子有机溶质-矿物系统中的线性吸附现象,某些低分子量非极性非离子溶质(1,2,3-三氯苯,林丹,菲和pyr)和极性非离子溶质(1分别在亲水性二氧化硅和氧化铝上从单溶质和二溶质溶液中制备了(3-3-二硝基苯和2,4-二硝基甲苯)。为了实现这一目标,还确定了温度,离子强度和pH对吸附的影响。发现线性吸附表现出低的放热热量,并且几乎没有吸附竞争。假设与这些作用一致的溶质-固体构型和吸附力。对于非极性溶质,大概是通过伦敦(分散)力在矿物表面上方的水膜上发生吸附。对于极性溶质,极性基团相互作用也有助于吸附。由于水膜的物理分离以及溶质覆盖的水膜表面的分数低,溶质与亲水性矿物的吸附力降低,为线性溶质吸附,低放热和无吸附竞争提供了理论基础。假定的吸附力得到以下观察结果的支持:离子强度或pH值对非极性溶质的吸附没有影响,而对极性溶质的吸收却具有显着影响。

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