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机构地区:[1]郑州大学化工与能源学院,河南郑州450001
出 处:《郑州大学学报(工学版)》2013年第4期81-84,共4页Journal of Zhengzhou University(Engineering Science)
基 金:河南省科技攻关计划资助项目(082102350003)
摘 要:针对猪场废水传统脱氮除磷生物处理工艺中碳源不足、氮含量过高等问题,采用磷酸铵镁(MAP)结晶法回收猪场废水中的部分氮、磷,目的在于提高废水中碳氮比,为后续生物处理奠定基础.在选择投加MgCl2.6H2O和Na3PO4.12H2O为镁源和磷源时,试验结果表明:MAP法回收猪场废水中氮磷的最优反应条件为n(Mg)∶n(N)∶n(P)=1.2∶1∶0.9;此条件下回收的沉淀物中N的含量约4.1%,P2O5的含量约40.77%,MgO的含量约15.85%,是一种高品质缓释性肥料;经回收后的废水pH能维持在8.5左右,n(BOD5)∶n(N)∶n(P)=95∶5∶1,余氮浓度在170 mg/L左右,余磷浓度在20 mg/L左右,适合用生物法继续处理.In view of the problems of shortage of carbon source and excess of nitrogen content in traditional ni- trogen and phosphorus removal, this paper adopts the method of magnesium ammonium phosphate (MAP) crystallization to recover a part of N and P to increase the ratio of carbon to nitrogen, which is beneficial for following biological treatment. The results show that the optimal reaction condition, the molar ratio of n(Mg) : n(N): n(P) = 1.2: 1:0.9, was obtained through single factor experiment when choosing MgC12 · 6H_O Na_3 PO_4 · 12H_20 as magnesium source and phosphorus source. In this condition, the content of N, P205 and MgO of the sediment, slow-release organic fertilizer, recovered is 4.1% , 40.77% and 15.85% , respectively. Af- ter recovering, the pH of the wastewater is about 8.5, the ratio of n( BOD5 ) : n(N) : n(P) almost 95: 5: 1, the concentration of residual nitrogen and phosphorus approximately 170 mg/L and 20 mg/L,it can be reduced by with by microorganism treatment.
关 键 词:猪场废水 磷酸铵镁 Na3PO4.12H2O
分 类 号:X713[环境科学与工程—环境工程]
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