[1] 刘转年, 金奇庭, 周安宁. 废水的吸附法处理[J]. 水处理技术,2003, 29(6): 318-322.
[2] Crini G. Recent developments in polysaccharide-based materialsused as adsorbents in wastewater treatment [J]. Prog. Polym. Sci.,2005, 30: 38-70.
[3] 袁鹏, 吴大清. 硅藻土在一些高附加值产品中的应用及其基础研究[J]. 矿物岩石, 2000, 20(1): 101-104.
[4] 杨宇翔, 王鹏, 陈荣三. 硅藻土比表面的研究[J]. 南京大学学报,1991, 27(4): 706-714.
[5] Ramakrishna K R, Viraraghavan T. Dye removal using low cost adsorbents[J]. Water Sci. Technol., 1997, 36(2): 189-196.
[6] 杨宇翔, 张亚匡, 吴介达, 等. 硅藻土脱色机理及其在印染废水中应用的研究[J]. 工业水处理, 1999, 19(1): 15-17.
[7] 彭书传. 硅藻土复合净水剂处理印染废水[J]. 环境科学与技术,1998(1): 24-25.
[8] Shawabkeh R A, Tutunji M F. Experimental study and modeling ofbasic dye sorption by diatomaceous clay[J]. Applied Clay Science,2003, 24: 111-120.
[9] Al-Ghouti M A, Khraisheh M A M, Allen S J. The removal of dyesfrom textile wastewater: a study of the physical characteristics and adsorption mechanisms of diatomaceous earth[J]. Journal of EnvironmentalManagement, 2003, 69: 229-238.
[10] Al-Ghouti M A, Khraisheh M A M, Ahmad M N M. Thermodynamic behaviour and the effect of temperature on the removal ofdyes from aqueous solution using modified diatomite: A kineticstudy[J]. Journal of Colloid and Interface Science, 2005, 287: 6-13.
[11] Khraisheh M A M, Al-Ghouti M A, Allen S J. The effect of pH,temperature, and molecular size on the removal of dyes from textileeffluent using manganese oxides-modified diatomite [J]. Water Environment Research, 2004, 76(7): 2 655-2 663.
[12] Khraisheh M A M, Al-Ghouti M A, Allen S J. Effect of OH and silanol groups in the removal of dyes from aqueous solution using diatomite[J]. Water Research, 2005, 39: 922-932.
[13] 李门楼. 改性硅藻土处理含锌电镀废水的研究[J]. 湖南科技大学学报, 2004, 19(3): 81-84.
[14] 刘频, 赵黔榕, 袁朗白, 等. 改性硅藻土对Pb(Ⅱ)的吸附作用[J].云南化工, 2003, 30(5): 11-13.
[15] 沈岩柏, 朱一民, 魏德洲. 硅藻土对锌离子的吸附特性[J]. 东北大学学报(自然科学版), 2003, 24(9): 907-910.
[16] Degs Y A, Khraisheh M A M, Tutunji M F. Sorption of Lead Ions on Diatomite and Manganese Oxides Modified Diatomite[J]. Water Research, 2001, 35(15): 3 724-3 728.
[17] Khraisheh M A M. Remediation of wastewater containing heavy metals using raw and modified diatomite[J]. Chemical EngineeringJournal, 2004, 99: 177-184.
[18] Cdantas T N D. Removal of chromium from aqueous solutions by diatomite treated with micro-emulsion [J]. Water Research, 2001, 35(9): 2 219-2 224.
[19] Murathan A, Benli S. Removal of Cu2+, Pb2+ and Zn2+ from aqueous solutions on diatomite via adsorption in fixed bed [J]. Fresenius Environmental Bulletin, 2005, 14(6): 468-472.
[20] Al-Ghouti M A. Flow injection potentiometric stripping analysis for study of adsorption of heavy metal ions onto modified diatomite[J].Chemical Engineering Journal, 2004, 104: 83-91.
[21] 朱利中, 魏林. 有机黏土吸附处理水中苯酚的性能及应用[J].水处理技术, 1996, 22(2): 107-112.
[22] 张红. 改性硅藻土对污水中有机污染物(苯酚)吸附性能的研究[D]. 北京: 北京工业大学, 2001.
[23] 温彦平. 硅藻土对饮用水中微量卤代烃吸附性能的研究[J]. 太原理工大学学报, 2002, 33(5): 547-550.
[24] Huttenloch P, Roehl K E, Czurda K. Sorption of nonpolar aromatic contaminants by chlorosilane surface modified natural minerals[J].Environmental Science &Technology, 2001, 35(21): 4 260-4 264.
[25] 沈岩柏, 朱一民, 魏德洲, 等. 硅藻土对诺卡氏菌的吸附作用[J].东北大学学报(自然科学版), 2005, 26(2): 183-185.
[26] 翁焕新, 沈忠悦. 硅藻土改性对工业废水降氟效果的影响研究[J]. 硅酸盐学报, 2002, 30(3): 366-371, 389. |