[1] |
张翠玲, 常青, 张家利, 等. 天然沸石对农田退水中氨氮的去除[J]. 环境化学, 2012, 31(7): 1063-1068.
ZHANG C L, CHANG Q, ZHANG J L, et al. Removal of ammonium-nitrogen from irrigation drainage by the natural zeolite[J]. Environmental chemistry, 2012, 31(7): 1063-1068(in Chinese).
|
[2] |
LEI L, LI X, ZHANG X. Ammonium removal from aqueous solutions using microwave-treated natural Chinese zeolite[J]. Separation and Purification Technology, 2008, 58(3): 359-366.
|
[3] |
张瑛洁, 陈雷, 马军, 等. 微波强化NaCl改性沸石的除氨氮效果研究[J]. 中国给水排水, 2009, 25(1): 72-74.
ZHANG Y J,CHEN L,MA J, et al. Study on ammonia nitrogen removal using modified zeolites by microwave[J].China Water and Wastewater.,2009, 25(1): 72-74(in Chinese).
|
[4] |
佟小薇, 朱义年. 沸石改性及其去除水中氨氮的实验研究[J]. 环境工程学报, 2009, 3(4): 635-638.
TONG X W, ZHU Y N. Experimental study on the modification of natural stllerite and its removal of ammonia nitrogen from water[J]. Chinese Journal of Environmental Engineering, 2009, 3(4): 635-638(in Chinese).
|
[5] |
江乐勇,林海.盐热改性沸石去除氨氮的性能研究[J]. 水处理技术,2010,36(8):25-32.
JIANG L Y, LIN H. Performance study of NH4+-N removal by using salt and thermal modified zeolite[J].Technology of Water Treatment,2010,36(8):25-32(in Chinese).
|
[6] |
丁真贞, 孟绫, 董建勋, 等. 改性斜发沸石处理高浓度氨氮废水[J]. 环境化学, 2012, 31(8), 1233-1237.
DING Z Z, MENG L, DONG J X, et al. Removal of ammonnia-nitrogen in simulated NH4+-N wastewater with modified clinoptilolite[J]. Environmental chemistry, 2012, 31(8), 1233-1237(in Chinese).
|
[7] |
孙同喜, 郑萌璐, 蒋轶锋, 等. NaCl改性沸石对氨氮吸附性能的研究[J]. 环境污染与防治, 2010, (10): 46-50. SUN T X, ZHENG M L,JIANG Y F, et al. Effect of NaCl modification on ammonia-nitrogen adsorption property of zeolite[J]. Environmental Pollution & Control, 2010
, (10): 46-50(in Chinese).
|
[8] |
LIN L, LEI Z, WANG L, et al. Adsorption mechanisms of high-levels of ammonium onto natural and NaCl-modified zeolites[J]. Separation and purification technology, 2013, 103: 15-20.
|
[9] |
张道方, 王瑞璞, 吕娟, 等. 改性沸石生物滤池处理中水景观污染水体实验研究[J]. 水资源与水工程学报, 2008, 19(5): 1-5.
ZHANG D F,WANG R P,LV J,et al.Experiment on polluted scenic reclaimed-water by modif ied zeol ite and biof ilm system[J].Journal of Water Resources & Water Engineering,2008,19(5):1-5(in Chinese).
|
[10] |
陈和谦, 吴志超, 黄友谊. 沸石联合生物吸附再生工艺可行性研究[J]. 环境污染治理技术与设备, 2005, 6(8): 26-29.
CHEN H Q, WU Z C, HUANG Y Y. Research on the feasibility of zeolite coupled contact-stabilization activated sludge process[J].Techniques and Equipment Environmental Pollution Control, 2005, 6(8): 26-29(in Chinese).
|
[11] |
李云辉, 安莹. 吸铵饱和沸石的生物再生性能[J]. 净水技术, 2013, 32(1): 60-63.
LI Y H, AN Y. Performance of biological regeneration capacity for clinoptilolite with ammonium-saturated[J].Water Purification Technology, 2013, 32(1): 60-63(in Chinese).
|
[12] |
BOWMAN R S, HAGGERTY G M, HUDDLESTON R G, et al. Sorption of nonpolar organic compounds, inorganic cations, and inorganic oxyanions by surfactant-modified zeolites[C]. ACS symposium series (USA). 1995, 594: 54-64.
|
[13] |
温东辉. 天然沸石吸附——生物再生技术及其在滇池流域暴雨径流污染控制中的试验与机理研究[M].北京: 中国环境科学出版社, 2003. WEN D H. Experiment and mechanism study on the adsorption-bioregeneration technology of natural zeolite applied in the pollution control of the storm runoff in Dianchi Basin[M].Beijing: China Environmental Science Press,2003(in Chinese).
|
[14] |
TSITSISHVILI G V, ANDRONIKASHVILI T G. Natural zeolites[M]. Chichester, England: Ellis Horwood Limited, 1992.
|