1Eveliina Repo, Jolanta K Warchol, Amit Bhatnagar, et al. Heavy metals adsorption by novel EDTA-modified chitosan-silica hybrid materials [ J ] .Journal of Colloid and Interface Science, 2011,358( 1 ) :261-267. 被引量:1
2M M D Zulkali,A L Ahmad,N H Norulakmal.Oryza sativa L husk as heavy metal adsorbent: Optimization with lead as model solution [ J ].Bioresource Technology, 2006,97 ( 1 ) :21-25. 被引量:1
3Junkal, Landaburu- Aguirrea, EvaPongracz, et al. Micellar- enhanced ultrafiltration for the removal of cadmium and zinc : Use of response surface methodology to improve understanding of process performance and optimization [ J ] . Journal of Hazardous Materials,2010,180( 1-3 ) :524-534. 被引量:1
4Malihe Amini ,Habibollah Younesi, Nader Bahramifar,et al. Application of response surface methodology for optimization of lead biosorption in an aqueous solution by Aspergillus niger [ J ]. Journal of Hazardous Materials ,2008,154( 1-3 ) :694-702. 被引量:1
5Yi-Chao Lee, Shui-Ping Chang, et al.The biosorption of heavy metals from aqueous solution by Spirogyra and Cladophora filamentous macroalgae [ J ] . Bioresource Technology, 2011,102 (9) :5297-5304. 被引量:1
6Rajesh Singh, Rout Chadetrik, Rajender Kumar, et al. Biosorption optimization of lead ( II ), cadmium ( II ) and copper (II) using response surface methodology and applicability in isotherms and thermodynamics modeling[ J] .Journal of Hazardous Materials ,2010,174 ( 1-3 ) :623-634. 被引量:1