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利用粉煤灰合成沸石同时固定水溶液中的铵和磷。

Simultaneous immobilization of ammonium and phosphate from aqueous solution using zeolites synthesized from fly ashes.

机构信息

Key Laboratory of Soil and Water Conservation & Desertification Combat, Beijing Forest University, Ministry of Education, Beijing 100083, China.

出版信息

Water Sci Technol. 2013;67(6):1324-31. doi: 10.2166/wst.2013.690.

DOI:10.2166/wst.2013.690
PMID:23508158
Abstract

Zeolites were synthesized from silica-rich (SF-Z) and calcium-rich (CF-Z) fly ashes, respectively, and their performance in immobilizing ammonium and phosphate was investigated through batch experiments. The cation exchange capacity and phosphate immobilization capacity of SF-Z were identified as 2.79 meq/g and 12.97 mg/g while those of CF-Z were 0.69 meq/g and 87.41 mg/g, respectively. The mixture of SF-Z and CF-Z (MSC-Z) immobilized simultaneously ammonium and phosphate, and the ratio of SF-Z to CF-Z depended on the ammonium and phosphate concentrations in wastewater and the discharge standard. The adsorption processes of ammonium and phosphate on MSC-Z followed Ho's pseudo-second-order model and the intra-particle diffusion was a rate-controlling step. The Langmuir model produced better suitability to the equilibrium data. The thermodynamic study revealed that the adsorption of both ammonium and phosphate on MSC-Z was an endothermic reaction. After treatment by MSC-Z, the ammonium and phosphate concentrations in wastewater from a sewage treatment plant decreased from 7.45 and 1.42 mg/L to 2.06 and 0.51 mg/L, respectively, and met Surface Water Environment Quality Standard in China δ. These results show that the immobilization of ammonium and phosphate in wastewater can be achieved by the combination of zeolites synthesized from silica-rich and calcium-rich fly ashes.

摘要

沸石分别由硅丰富(SF-Z)和钙丰富(CF-Z)飞灰合成,并通过批量实验研究了其固定铵和磷酸盐的性能。SF-Z 的阳离子交换容量和磷酸盐固定容量分别为 2.79 meq/g 和 12.97 mg/g,而 CF-Z 的阳离子交换容量和磷酸盐固定容量分别为 0.69 meq/g 和 87.41 mg/g。SF-Z 和 CF-Z 的混合物(MSC-Z)同时固定铵和磷酸盐,SF-Z 和 CF-Z 的比例取决于废水中的铵和磷酸盐浓度以及排放标准。铵和磷酸盐在 MSC-Z 上的吸附过程均遵循 Ho 的拟二级模型,内扩散是速率控制步骤。Langmuir 模型对平衡数据具有更好的适用性。热力学研究表明,MSC-Z 上铵和磷酸盐的吸附均为吸热反应。经过 MSC-Z 处理后,污水处理厂废水中的铵和磷酸盐浓度从 7.45 和 1.42 mg/L 分别降低到 2.06 和 0.51 mg/L,达到中国地表水环境质量标准δ。这些结果表明,通过硅丰富和钙丰富飞灰合成的沸石的组合可以实现废水中铵和磷酸盐的固定。

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