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Simultaneous recovery of ammonium and phosphate from simulated treated wastewater effluents by activated calcium and magnesium zeolites

机译:活性钙镁分子筛同时回收模拟处理后的废水中的铵和磷酸盐

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摘要

BACKGROUND\ud\udIn this study a sodium zeolite synthesized from coal fly ash (NaP1-NA) was modified to calcium and magnesium forms (Ze-Ca, Ze-Mg) as sorbent materials for simultaneous recovery of ammonium and phosphate from simulated treated wastewater effluents.\udRESULTS\ud\udIncreasing the temperature during the modification step to magnesium form improved the zeolite conversion. The maximum sorption capacities obtained were 123.1±9.1 mg NH4 g-1 and 119.5±7.5 mg PO4 g-1 in an ammonium/phosphate binary system for Ze-Ca, while 55.2±2.4/ 60.5 ±14.1 and 32.3±4.4/ 23.9±3.4 were obtained for Ze-Mg1 and Ze-Mg2, respectively. The sorption process is faster for Ze-Mg zeolites and the sorption mechanism that controls the overall process, for both zeolites, is diffusion into the particle according to the HPDM and SPM models.\udCONCLUSIONS\ud\udSalt modification improved the performance of zeolites towards phosphate sorption. The sorption mechanism involves both ammonium exchange to the Mg and Ca ions, and precipitation of Ca and Mg phosphates or mixed ammonium-magnesium phosphate minerals such as brushite (CaHPO4.H2O) and struvite (MgNH4PO4). © 2017 Society of Chemical Industry
机译:背景\ ud \ ud在这项研究中,将粉煤灰(NaP1-NA)合成的钠沸石改性为钙和镁形式(Ze-Ca,Ze-Mg)作为吸附剂材料,用于从模拟处理后的废水中同时回收铵和磷酸盐\ udRESULTS \ ud \ ud在改性步骤中将温度升高至镁形式可以提高沸石的转化率。在Ze / Ca铵/磷酸盐二元体系中,最大吸附容量为123.1±9.1 mg NH4 g-1和119.5±7.5 mg PO4 g-1,而55.2±2.4 / 60.5±14.1和32.3±4.4 / 23.9± Ze-Mg1和Ze-Mg2分别获得3.4。根据HPDM和SPM模型,Ze-Mg沸石的吸附过程更快,并且控制整个过程的吸附机理(对于两种沸石)都是扩散到颗粒中。\ ud结论\ ud \ ud盐改性提高了沸石的性能磷酸盐吸附。吸附机理包括铵交换成Mg和Ca离子,以及沉淀Ca和Mg磷酸盐或混合的铵-镁磷酸盐矿物,如透钙磷石(CaHPO4.H2O)和鸟粪石(MgNH4PO4)。 ©2017化学工业协会

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