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首页> 外文期刊>ACS Omega >Effective Sequestration of Phosphate and Ammonium Ions by the Bentonite/Zeolite Na–P Composite as a Simple Technique to Control the Eutrophication Phenomenon: Realistic Studies
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Effective Sequestration of Phosphate and Ammonium Ions by the Bentonite/Zeolite Na–P Composite as a Simple Technique to Control the Eutrophication Phenomenon: Realistic Studies

机译:通过膨润土/沸石Na-P复合材料有效地螯合磷酸盐和铵离子作为控制富营养化现象的简单技术:现实研究

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A bentonite/Zeolite-P (BE/ZP) composite was synthesized by controlled alkaline hydrothermal treatment of bentonite at 150 °C for 4 h for effective sequestration of phosphate and ammonium pollutants. The composite is of 512 m~(2)/g surface area, 387 meq/100 g ion-exchange capacity, and 5.8 nm average pore diameter. The experimental investigation reflected the strong effect of the pH value in directing the uptake behavior and the best results were attained at pH 6. The kinetic properties showed an excellent agreement for phosphate and ammonium adsorption results with the pseudo-second-order model showing equilibrium intervals of 600 and 360 min, respectively, and maximum experimental capacities of 170 and 155 mg/g, respectively. Additionally, their equilibrium modeling confirmed excellent fitness with the Langmuir hypothesis, signifying homogeneous and monolayer uptake processes with a theoretical q _(max) of 179.4 and 166 mg/g for phosphate and ammonium, respectively. Moreover, the calculated Gaussian adsorption energies of phosphate (0.8 kJ/mol) and ammonium (0.72 kJ/mol) suggested physisorption for them with mechanisms close to the zeolitic ion-exchange process or the coulumbic attractive forces. This was supported by the assessed thermodynamic parameters which also suggested spontaneous uptake by endothermic reaction for phosphate and exothermic reaction for ammonium. The BE/ZP composite is of excellent reusability and used for eight recyclability runs achieving removal percentages of 61.5 and 74.5% for phosphate and ammonium, respectively, in run 8. Finally, the composite was applied in the purification of sewage water and groundwater, achieving complete removal for phosphate from sewage water and ammonium from groundwater and reduction of the ammonium ions in the sewage water to 2.3 mg/L.
机译:通过在150℃下的膨润土的受控碱水热处理合成膨润土/沸石-P(BE / ZP)复合物,使4小时合成4小时,以有效地依赖磷酸盐和铵污染物。复合材料为512m〜(2)/ g表面积,387meq / 100g离子交换能力和5.8nm平均孔径。实验研究反映了pH值引导摄取行为的强烈效果,pH6达到了最佳结果。动力学性能显示出磷酸盐和铵吸附结果的良好协议,伪二阶模型显示均衡间隔分别为600和360分钟,分别为170和155mg / g的最大实验容量。另外,它们的平衡模型证实了具有琅勃勃假设的优异的健康,分别与磷酸盐和铵的理论 q _(max)表示均质和单层吸收过程,分别为179.4和166mg / g。此外,磷酸盐(0.8kJ / mol)和铵(0.72kJ / mol)的计算的高斯吸附能量提出了与沸石离子交换过程的机制或库铃有吸引力的机制的理由。这是由评估的热力学参数支持,所述热力学参数还通过用于磷酸盐和放热反应的吸热反应来提出自发摄取。 BE / ZP复合材料具有优异的可重复使用性,并且用于分别在运行8中实现磷酸盐和铵的8.5和74.5%的八个可回收性的耐可率为61.5和74.5%。最后,将复合材料应用于污水和地下水的净化,实现从地下水中从污水和氨基中磷酸盐完全去除,并将污水水中的铵离子还原为2.3mg / L.

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