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Ammonia nitrogen removal from acetylene purification wastewater from a PVC plant by struvite precipitation

机译:鸟粪石沉淀法去除聚氯乙烯装置乙炔纯化废水中的氨氮

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Acetylene purification wastewater (APW) usually contains high concentrations of ammonia nitrogen (NH4-N), which is generated during the production of acetylene in a polyvinylchloride manufacturing plant. In this study, a struvite precipitation method was selected to remove NH4-N from the APW. Laboratory-scale batch experiments were performed to investigate the effects of the initial APW pH, phosphate (PO43-) concentration, magnesium (Mg2+) concentration, and sources of PO43- and Mg2+ on NH4-N removal. The results indicated that the initial APW pH had a significant effect on the removal of NH4-N, while the other factors had relatively minor effect. The NH4-N could be effectively removed at an optimum initial APW pH of 9.5, when Na2HPO4 center dot 12H(2)O and MgSO4 center dot 7H(2)O were both applied to NH4-N at a ratio of 1.2. Under these conditions, the efficiency of removal of NH4-N, total nitrogen and chemical oxygen demand were 85%, 84% and 18%, respectively. The X-ray diffraction analysis indicated that the precipitates were dominated by struvite. The scanning electron microscopy analysis of the precipitates showed a typical morphology of stick-like and prismatic crystals with coarse surface. The energy dispersive spectroscopy analysis indicated that the precipitates contained P, O, Mg and Ca.
机译:乙炔净化废水(APW)通常包含高浓度的氨氮(NH4-N),这是在聚氯乙烯生产厂生产乙炔的过程中产生的。在这项研究中,选择了鸟粪石沉淀法从APW中去除NH4-N。进行了实验室规模的分批实验,以研究初始APW pH,磷酸盐(PO43-)浓度,镁(Mg2 +)浓度以及PO43-和Mg2 +的来源对NH4-N去除的影响。结果表明,初始APW pH对NH4-N的去除有显着影响,而其他因素影响相对较小。当将Na2HPO4中心点12H(2)O和MgSO4中心点7H(2)O均以1.2的比例施用于NH4-N时,可以在9.5的最佳初始APW pH值下有效去除NH4-N。在这些条件下,NH4-N的去除效率,总氮和化学需氧量分别为85%,84%和18%。 X射线衍射分析表明,沉淀物以鸟粪石为主。沉淀物的扫描电子显微镜分析显示出具有粗糙表面的棒状和棱柱状晶体的典型形态。能量色散光谱分析表明,沉淀物中含有P,O,Mg和Ca。

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