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首页> 外文期刊>Applied Surface Science >Efficient removal of phosphate from acidified urine using UiO-66 metal- organic frameworks with varying functional groups
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Efficient removal of phosphate from acidified urine using UiO-66 metal- organic frameworks with varying functional groups

机译:使用具有不同官能团的UiO-66金属有机框架从酸化尿液中有效去除磷酸盐

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The removal of phosphate from source-separated urine is an efficient approach to reduce the P-load in receiving waters due to its high P concentration and low volume in wastewater. However, a highly efficient adsorbent is imperative for this purpose. Metal-organic frameworks (MOFs) have recently attracted a lot of attention in adsorption due to their outstanding physicochemical features. In this study, we examined four Zr-based MOFs (UiO-66, UiO-66-NO2, UiO-66-Br and UiO-66-NH2) for the adsorption of phosphate from acidified urine. Our results indicated that the zirconium content, pore size and crystallinity are driving forces for the adsorption process. UiO-66-NH2 displayed the highest adsorption capacity (153.9 mg/g) at 25 degrees C and pH 4. Phosphate in urine could be nearly totally depleted ( > 99% removal) using UiO-66-NH2 at a dosage >= 13.5 g/L. Elevating temperature and lowering pH are effective strategies to enhance the adsorption performance. The reduction of the isoelectric point of UiO-66-NH2 after P uptake, the activation energy of the adsorption process estimated using Arrhenius equation (63.1 kJ/mol), FTIR spectroscopy and XPS suggested that inner-sphere complexation between phosphate and Zr atoms in the MOFs was the key adsorption mechanism. The performance of adsorption-desorption-regeneration using real human urine was verified.
机译:从源头分离的尿液中去除磷酸盐是降低接收水中磷负荷的有效方法,因为其磷浓度高且废水量少。但是,为此目的必须有高效的吸附剂。金属有机骨架(MOF)由于其出色的物理化学特性,最近在吸附方面引起了很多关注。在这项研究中,我们检查了四种基于Zr的MOF(UiO-66,UiO-66-NO2,UiO-66-Br和UiO-66-NH2)对酸化尿液中磷酸盐的吸附。我们的结果表明,锆含量,孔径和结晶度是吸附过程的驱动力。在25°C和pH 4下,UiO-66-NH2表现出最高的吸附容量(153.9 mg / g)。使用UiO-66-NH2,当剂量> = 13.5时,尿液中的磷酸盐几乎可以被完全消耗掉(> 99%去除)。克/升升高温度和降低pH是提高吸附性能的有效策略。吸收P后UiO-66-NH2的等电点降低,使用Arrhenius方程估算的吸附过程的活化能(63.1 kJ / mol),FTIR光谱和XPS表明,磷酸盐和Zr原子之间的内球络合MOFs是关键的吸附机理。验证了使用真实的人类尿液进行吸附-解吸-再生的性能。

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