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An investigation of the phosphate removal mechanism by MgFe layered double hydroxides

机译:MgFe层双氢氧化物磷酸盐去除机理研究

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The phosphate adsorption properties including kinetics and uptake pathway of MgxFe layered double hydroxides (LDH) with targeted x values of 2 and 3 and intercalated with nitrate (NO3-) and chloride (Cl-) anions were investigated at a phosphate concentration of 16.31 mgP.L-1 and pH (pH = 5, 7, and 9) similar to wastewater conditions. The synthesized MgxFe-LDH show fast adsorption (90-98%) of the final phosphate removal within 3 h and remove 68-73% of the total phosphate content after 24 h. The pristine MgxFe-LDH and solid products after phosphate exposure were characterized by PXRD, FT-IR, zeta-potential, SEM, and solid-state P-31 MAS NMR spectroscopy to investigate the phosphate removal pathway. Interestingly, the four MgxFe-LDH phase had similar Mg:Fe ratios irrespective of the Mg:Fe ratio of the reactants based on PXRD. The MgxFe-LDH plate-like morphology was preserved after phosphate exposure and no sign of phosphate intercalation were evident by PXRD, FT-IR, and SEM albeit a small amount of the MgxFe LDH was dissolved based on ICP-OES, PXRD and the final pH. Partial dissolution of the LDH was clearly evident by SEM for Mg2Fe-LDH exposed to 200% theoretical P capacity. The FT-IR spectra and zeta-potential values indicated that the phosphate ions are adsorbed by surface complexation. The P-31 MAS NMR spectra of MgxFe-LDH exposed to phosphate has an intense spinning sideband manifold and only minor paramagnetic shifts ( 30 ppm) are observed. Thus, phosphate is in the proximity of iron, but not directly bound to the paramagnetic iron via Fe-O-P bond (inner-sphere complexation or mineralization). Thus, the dominating phosphate uptake pathway by MgxFe-LDH is surface complexation similar to MgAl-LDH and possible the formation of ill-defined magnesium phosphate due to partial dissolution of the MgFe-LDH, especially at high P loading.
机译:在磷酸盐浓度为16.31mgp的磷酸盐浓度下研究了包含2和3的MgXFe层状双氢氧化物(LDH)的动力学和摄取途径(LDH)和氯化物(NO 3-)和氯化物(CL-)阴离子的磷酸盐吸附性能。 L-1和pH(pH = 5,7和9)类似于废水条件。合成的MgXFE-LDH显示出3小时内的最终磷酸盐去除的快速吸附(90-98%),并在24小时后除去68-73%的总磷酸含量。通过PXRD,FT-IR,Zeta电位,SEM和固态P-31MAS NMR光谱表征磷酸盐暴露后的原始MgXFe-LDH和固体产物,以研究磷酸盐去除途径。有趣的是,四个MgxFe-LDH相具有类似的Mg:Fe比率,而不管基于PXRD的反应物的Mg:Fe比率如何。保留磷酸盐暴露后的MgxFe-LDH板状形态,并且PXRD,FT-IR和SEM不明确磷酸盐插入的迹象,尽管少量MgXFe LDH基于ICP-OES,PXRD和最终溶解pH。通过暴露于200%理论上P容量的Mg2Fe-LDH,SEM显然明显明显的LDH的部分溶解。 FT-IR光谱和ζ电位值表明磷酸根离子被表面络合吸附。暴露于磷酸盐的MgxFe-LDH的P-31MAS NMR光谱具有强烈的纺丝边带歧管,并且仅观察到仅次要顺磁移位(<30ppm)。因此,磷酸盐在铁的附近,但不通过Fe-O-P键直接与顺磁铁结合(内球络粘合剂或矿化)。因此,MgXFe-LDH的主导磷酸盐摄取途径是类似于MgAl-LDH的表面络合,并且由于MgFe-LDH的部分溶解而可能形成未定定义的磷酸镁,特别是在高p负载下。

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