Volume 3 Issue 1
Jan.  2013
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QIAN Feng, SONG Yong-hui, XIANG Lian-cheng, ZHANG Dong-na, GONG Ai-jun, WANG Si-yu. Nutrients Removal from Swine Wastewater by Natural Na-type Mordenite[J]. Journal of Environmental Engineering Technology, 2013, 3(1): 59-64. doi: 10.3969/j.issn.1674-991X.2013.01.011
Citation: QIAN Feng, SONG Yong-hui, XIANG Lian-cheng, ZHANG Dong-na, GONG Ai-jun, WANG Si-yu. Nutrients Removal from Swine Wastewater by Natural Na-type Mordenite[J]. Journal of Environmental Engineering Technology, 2013, 3(1): 59-64. doi: 10.3969/j.issn.1674-991X.2013.01.011

Nutrients Removal from Swine Wastewater by Natural Na-type Mordenite

doi: 10.3969/j.issn.1674-991X.2013.01.011
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  • Corresponding author: SONG Yong-hui E-mail: songyh@craes.org.cn
  • Received Date: 2012-06-04
  • Rev Recd Date: 2012-07-20
  • Publish Date: 2013-01-20
  • Taking Na-type mordenite as the experimental material, batch experiments were carried out to investigate the influence of mordenite dosage, reaction time, pH, Ca2+ concentration and Mg2+ concentration on simultaneous removals of nitrogen and phosphorus from actual swine wastewater. It showed that under the conditions of mordenite dosage of 300 mg/L, pH of 8.0~9.0 and adsorption duration of 4 h, the removal efficiencies of high-concentration ammonia and phosphate by mordenite could reach 92% and 86%, respectively. With the increase of pH, the removal efficiency of ammonia and phosphate increased firstly and then decreased. However, the removal efficiency of ammonia reached the highest value around 90% at pH of 8.0, with phosphorus removal efficiency reaching the highest value of 85% at pH of 9.0. The effect of Ca2+ concentration on ammonia removal was not obvious, but was significant for phosphate removal. At P: Ca molar ratio of 1:6 and pH of 9.0, the removal efficiency of phosphate could reach 88%. The effect of Mg2+ concentration was significant for ammonia and phosphate removal. At P:Mg molar ratio of 1:4 and pH of 10.0, the removal efficiencies of ammonia and phosphate could reach 93% and 91%, respectively.

     

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