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Evaluation of the adsorption of ammonium-nitrogen and phosphate on a granular composite adsorbent derived from zeolite

机译:评价铵 - 氮气和磷酸盐对沸石颗粒复合吸附剂的吸附

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摘要

To remove the extra ammonium-nitrogen (NH3-N) and phosphorus (P) from contaminated water, a novel granular adsorbent (GAZCA) was fabricated with zeolite powders and Al-Mn binary oxide (AMBO) via the compression method. The SEM-EDS and mapping and XRD results illustrated the microstructure of GAZCA: the homogeneous aggregation of zeolite and AMBO nanoparticles with their crystal integrity and the uniform distribution of Al/Mn/Si/O elements on the adsorbent surface. FTIR and XPS results demonstrated the existence of impregnated sodium cations and hydroxyl groups, which were responsible for the removal of NH3-N and P, respectively. The results of BET analysis and compression tests exhibited a high surface area (14.4m(2)/g) and a satisfactory mechanical strength of GAZCA. Kinetic adsorption results showed a fast adsorption rate for NH3-N and P, and mutual inference was not observed between the adsorption kinetics of NH3-N and P in the bi-component system. The adsorption isotherm results demonstrated that the maximum adsorption capacities of NH3-N and P were calculated as 12.9mg/g and 9.3mg/g via the Langmuir model, respectively. In the bi-component system, the adsorption capacities of NH3-N and P were maintained at low and moderate concentrations and decreased at high concentrations due to the blockage effects of NH4MnPO4H2O precipitates. The removal efficiency of NH3-N could be maintained in a wide pH range of 4 similar to 10, while P adsorption was inhibited at alkali conditions. The solution of sodium bicarbonate (0.4M) was used for the regeneration of saturated adsorbents, which permitted GAZCA to keep 98% and 78% of its adsorption capacity for NH3-N and P even after three regeneration and reuse cycles. Dynamic experiments illustrated that a satisfactory performance was obtained for the in situ treatment of simulated N- and P-contaminated water by using a column reactor packed with GAZCA, thus further confirming its great potential for the control of eutrophication.
机译:除了污染水中的额外铵 - 氮(NH3-N)和磷(P),通过压缩方法用沸石粉末和Al-Mn二进制氧化物(AMBO)制备新的颗粒状吸附剂(GAZCA)。 SEM-EDS和映射和XRD结果示出了GAZCA的微观结构:沸石和AMBO纳米粒子的均匀聚集在其晶体完整性和吸附表面上Al / Mn / Si / O元素的均匀分布。 FTIR和XPS结果表明存在浸渍钠阳离子和羟基,其分别负责去除NH 3-N和P. BET分析和压缩试验的结果表现出高表面积(14.4M(2)/ g)和GAZCA的令人满意的机械强度。动力学吸附结果显示了NH3-N和P的快速吸附速率,并且在双组分系统中NH3-N和P的吸附动力学之间未观察到互相推断。吸附等温线的结果表明,NH 3-N和P的最大吸附容量分别通过Langmuir模型计算为12.9mg / g和9.3mg / g。在双组分系统中,由于NH4MNPO4H2O沉淀物的堵塞效应,NH 3-N和P的吸附容量保持在低且中等浓度,并以高浓度降低。 NH 3-N的去除效率可以保持在4的宽pH范围内,同样为10,而P在碱条件下抑制P吸附。碳酸氢钠(0.4M)的溶液用于饱和吸附剂的再生,即允许GAZCA保持98%和78%的吸附能力,即使在三次再生和再使用循环后也可以保持NH3-N和P的吸附能力。动态实验表明,通过使用与GAZCA填充的柱反应器的柱反应器对模拟的N-和P污染水的原位处理获得了令人满意的性能,从而进一步证实了控制富营养化的巨大潜力。

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