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负载于白云母/沸石复合材料(粉末、颗粒和整体材料)上的铁/锰(羟基)氧化物纳米颗粒:从城市废水到土壤的磷载体

Fe/Mn (Oxy)Hydroxide Nanoparticles Loaded onto Muscovite/Zeolite Composites (Powder, Pellets and Monoliths): Phosphate Carriers from Urban Wastewater to Soil.

作者信息

Guaya Diana, Maza Luz, Angamarca Adriana, Mendoza Eda, García Luis, Valderrama César, Cortina José Luis

机构信息

Department of Chemistry, Universidad Técnica Particular de Loja, Loja 100107, Ecuador.

Department of Chemical Engineering, Polytechnic University of Catalonia-BarcelonaTech (UPC), 08019 Barcelona, Spain.

出版信息

Nanomaterials (Basel). 2022 Oct 31;12(21):3848. doi: 10.3390/nano12213848.

Abstract

The development of an efficient adsorbent is required in tertiary wastewater treatment stages to reduce the phosphate-phosphorous content within regulatory levels (1 mg L total phosphorous). In this study, a natural muscovite was used for the preparation of muscovite/zeolite composites and the incorporation of Fe/Mn (oxy)hydroxide nanoparticles for the recovery of phosphate from synthetic wastewater. The raw muscovite MC and the obtained muscovite/sodalite composite LMC were used in the powder form for the phosphate adsorption in batch mode. A muscovite/analcime composite was obtained in the pellets PLMCT and monolith SLMCT forms for the evaluation in fixed-bed mode for continuous operation. The effect of pH, equilibrium and kinetic parameters on phosphate adsorption and its further reuse in sorption-desorption cycles were determined. The characterization of the adsorbents determined the Fe and Mn incorporation into the muscovite/zeolite composite's structure followed the occupancy of the extra-framework octahedral and in the framework tetrahedral sites, precipitation and inner sphere complexation. The adsorbents used in this study (MC, LMC, PLMCT and SLMCT) were effective for the phosphate recovery without pH adjustment requirements for real treated wastewater. Physical (e.g., electrostatic attraction) and chemical (complexation reactions) adsorption occurred between the protonated Fe/Mn (oxy)hydroxy groups and phosphate anions. Higher ratios of adsorption capacities were obtained by powder materials (MC and LMC) than the pellets and monoliths forms (PLMCT and SLMCT). The equilibrium adsorption of phosphate was reached within 30 min for powder forms (MC and LMC) and 150 min for pellets and monoliths forms (PLMCT and SLMCT); because the phosphate adsorption was governed by the diffusion through the internal pores. The adsorbents used in this study can be applied for phosphate recovery from wastewater treatment plants in batch or fixed-bed mode with limited reusability. However, they have the edge of environmentally friendly final disposal being promissory materials for soil amendment applications.

摘要

在三级废水处理阶段,需要开发一种高效吸附剂,以将磷酸盐中的磷含量降低到规定水平(总磷1毫克/升)。在本研究中,天然白云母被用于制备白云母/沸石复合材料,并引入铁/锰(羟基)氧化物纳米颗粒,用于从合成废水中回收磷酸盐。原始白云母MC和所得的白云母/方钠石复合材料LMC以粉末形式用于分批模式下的磷酸盐吸附。制备了颗粒PLMCT和整体式SLMCT形式的白云母/方沸石复合材料,用于固定床模式下的连续运行评估。确定了pH值、平衡和动力学参数对磷酸盐吸附的影响及其在吸附-解吸循环中的进一步再利用情况。吸附剂的表征确定了铁和锰掺入白云母/沸石复合材料结构中,遵循了骨架外八面体和骨架四面体位置的占据、沉淀和内球络合。本研究中使用的吸附剂(MC、LMC、PLMCT和SLMCT)对于实际处理后的废水无需调节pH值即可有效回收磷酸盐。质子化的铁/锰(羟基)基团与磷酸根阴离子之间发生了物理(如静电吸引)和化学(络合反应)吸附。粉末材料(MC和LMC)比颗粒和整体式形式(PLMCT和SLMCT)获得了更高的吸附容量比。粉末形式(MC和LMC)在30分钟内达到磷酸盐的平衡吸附,颗粒和整体式形式(PLMCT和SLMCT)在150分钟内达到平衡吸附;因为磷酸盐吸附受内部孔隙扩散控制。本研究中使用的吸附剂可用于废水处理厂以分批或固定床模式回收磷酸盐,但可再利用性有限。然而,它们具有环境友好的最终处置优势,是用于土壤改良应用的有前途的材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e42/9654169/541149a02a47/nanomaterials-12-03848-g001.jpg

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