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Novel hydrophilic and hydrophobic amorphous silica : characterization and adsorption of aqueous phase organic compounds

机译:新型亲水和疏水无定形二氧化硅:水相有机化合物的表征和吸附

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摘要

Very few studies have investigated the adsorption performance of hydrophobic and hydrophilic silicas with dissolved organics in water, which is a required final step during produced water treatment. The cost of functionalization also hinders the use of hydrophobic materials as sorbents. Novel hydrophilic silicas, prepared at low temperature and ambient pressure, were characterised by SEM, FTIR and BET analysis, and studied for the adsorption of aqueous phase organic compounds at concentrations below their solubility limits. Adsorption capacities were found to be up to 264 mg/g for benzene and 78.8 mg/g for toluene. Direct comparison is made with the analogous hydrophobic version of one of the silica materials, demonstrating comparable uptakes for benzene concentrations lower than 50 mg/L. This finding supports the hypothesis that, at very low aqueous phase organic concentrations, hydrophobicization has no discernible effect on access of the pollutants to the internal porosity of the material.
机译:很少有研究研究疏水性和亲水性二氧化硅对水中溶解有机物的吸附性能,这是采出水处理过程中必需的最终步骤。官能化的成本还阻碍了疏水材料作为吸附剂的使用。通过SEM,FTIR和BET分析对在低温和环境压力下制备的新型亲水性二氧化硅进行了表征,并研究了在低于其溶解度极限的浓度下对水相有机化合物的吸附。发现苯的吸附容量高达264 mg / g,甲苯的吸附容量高达78.8 mg / g。直接与其中一种二氧化硅材料的疏水性版本进行了直接比较,证明苯浓度低于50 mg / L时具有相当的吸收率。这一发现支持了以下假设:在非常低的水相有机浓度下,疏水化对污染物进入材料内部孔隙率没有明显影响。

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