[1] Li Wenting,Shang Chunli,Li Xue.A one-step thermal decomposition method to prepare anatase TiO2 nanosheets with improved adsorption capacities and enhanced photocatalytic activities[J].Applied Surface Science,2015,357:2223-2233.
[2] Geng Haoran,Miao Shanshan,Jin Shefeng,et al.A newly developed molecularly imprinted polymer on the surface of TiO2 for selective extraction of triazine herbicides residues in maize,water,and soil[J].Anal Bioanal Chem,2015,407:8803-8812.
[3] Sun Zhenya,He Xiaojun,Du Jianhua,et al.Synergistic effect of photocatalysis and adsorption of nano-TiO2 self-assembled onto sulfanyl/activated carbon composite[J].Environ Sci Pollut Res,2016,23:21733-21740.
[4] Garza-Arévalo J I,García-Montes I,Reyes M H,et al.Fe doped TiO2 photocatalyst for the removal of As(Ⅲ) under visible radiation and its potential application on the treatment of As-contaminated groundwater[J].Materials Research Bulletin,2016,73:145-152.
[5] Mohamed A H,Zeid A A,Ahmed M E,et al.Synthesis and application of Fe3O4@SiO2@TiO2 for photocatalytic decomposition of organic matrix simultaneously with magnetic solid phase extraction of heavy metals prior to ICP-MS analysis[J].Talanta,2016,154:539-547.
[6] Zhong J S,Wang Q Y,Liang H,et al.Improving the visible light photocatalytic activity of TiO2 nanotubes upon decoration with Sb2S3 microcrystalline[J].Materials Characterization,2015,109:95-99.
[7] Liu Shuaishuai,Wang Na,Zhang Yuchang,et al.Efficient removal of radioactive iodide ions from water by three-dimensional Ag2O-Ag/TiO2 composites under visible light irradiation[J].Journal of Hazardous Materials,2015,284:171-181.
[8] Sui Guozhe,Li Jinlong,Liu Tao,et al.Preparation and photocatalyticper formance of a Pr-SiO2-TiO2 nanocomposite for degradation of aqueous dye wastewater[J].Mater Express,2016,6(1):1-9.
[9] Giovannetti R,D’Amato C A,Zannotti M,et al.Visible light photoactivity of Polypropylene coated Nano-TiO2 for dyes degradation in water[J].Photochem Photobiol Sci,2016,15:920-927.
[10] Wang Lingling,Han Changseok,Mallikarjuna N N,et al.An innovative zinc oxide-coated zeolite adsorbent for removal ofhumic acid[J].Journal of Hazardous Materials,2016,313:283-290.
[11] André E N,Amanda S G,Arquiminio B S N,et al.CuO synthesized by solvothermal method as a high capacityadsorbent for hexavalent chromium[J].Colloids and Surfaces A:Physico-chem Eng Aspects,2016,498:161-167.
[12] Sher Bahadar Khan,Fayaz Ali,Tahseen Kamal,et al.CuO embedded chitosan spheres as antibacterial adsorbent for dyes[J].International Journal of Biological Macromolecules,2016,88:113-119.
[13] Amene Nezam,Saffar-Teluri A,Hassanzadeh-Tabrizi S A.The high efficiency of Al2O3-SiO2-CuO nanocomposites as an adsorbent:synthesis and dye removal efficiency[J].Res Chem Intermed,2016,42:4999-5011.
[14] Zheng Tong,Sun Yanlong,Lin Yongdong,et al.Study on preparation of microwave absorbing MnOx/Al2O3 adsorbent and degradation of adsorbed glyphosate in MW-UV system[J].Chemical Engineering Journal,2016,298:68-74.
[15] Subbaiah Muthu Prabhu,S S D Elanche Zhiyan,Giehyeon Lee,et al.Defluoridation of water by graphene oxide supported needle-like complex adsorbents[J].J Inorg Organomet Polym,2016,26:834-844.
[16] Hamid Rashidi Nodeh,Wan Aini Wan Ibrahim,Imran Ali,et al.Development of magnetic graphene oxide adsorbent for the removal and preconcentration of As(Ⅲ) and As(Ⅴ) species from environmental water samples[J].Environ Sci Pollut Res,2016,23:9759-9773.
[17] Kumar Santhana Krishna A,Jiang Shiuh-Jen.Chitosan-functionalized graphene oxide:a novel adsorbent an efficient adsorption of arsenic from aqueous solution[J].Journal of Environmental Chemical Engineering,2016(4):1698-1713.
[18] Kumar Santhana Krishna A,Jiang Shiuh-Jen,Tseng Wei-Lung.Facile synthesis and characterization of thiol-functionalized graphene oxide as effective adsorbent for Hg(Ⅱ)[J].Journal of Environmental Chemical Engineering,2016(4):2052-2065.
[19] Ayse Z A,Guler S.The synthesis of silica-coated magnetic nanoparticles and using as adsorbent[J].Polym Bull,2016,73:2353-2372.
[20] Sarita Kango,Rajesh Kumar,et al.Low-cost magnetic adsorbent for As(Ⅲ) removal from water:ads-orption kinetics and isotherms[J].Environ Monit Assess,2016,188:60-73.
[21] Soumya D,Hendry M J.Adsorption of molybdate by synthetic hematite under alkaline conditions:effects of aging[J].Applied Geochemistry,2013,28:194-201.
[22] Soumya D,Essilfie-Dughan J,Hendry M J.Arsenate adsorption onto hematite nanoparticles under alkaline conditions:effects of aging[J].J Nanopart Res,2014,16:2490-2501.
[23] Ge Hao,Huang Hailong,Xu Min,et al.Cellulose/poly(ethylene imine) composites as efficient andreusable adsorbents for heavy metal ions[J].Cellulose,2016,23:2527-2537.
[24] Bahareh Baheri,Raziyeh Ghahremani,Mohammad Peydayesh,et al.Dye removal using 4A-zeolite/polyvinyl alcohol mixed matrix membrane adsorbents:preparation,characterization,adsorption,kinetics,and thermodynamics[J].Res Chem Intermed,2016,42:5309-5328.
[25] Zhao Yingnan,Nidadavolu Koteswara Rao,Leon Lefferts.Adsorbed species on Pd catalyst during nitrite hydrogenation approaching complete conversion[J].Journal of Catalysis,2016,337:102-110.
[26] Yu Tianlin,Liu Siqi,Xu Min,et al.Synthesis of novel aminated cellulose microsphere adsorbent for efficient Cr(Ⅵ) removal[J].Radiation Physics and Chemistry,2016,125:94-101.
[27] Shahid Ali Khan,Sher Bahadar Khan,Tahseen Kamal,et al.Antibacterial nanocomposites based on chitosan/Co-MCM as aselective and efficient adsorbent for organic dyes[J].International Journal of Biological Macromolecules,2016,91:744-751.
[28] Shadpour Mallakpour,Maryam Madani.Functionalized-MnO2/chitosan nanocomposites:a promising adsorbent for the removal of lead ions[J].Carbohydrate Polymers,2016,147:53-59.
[29] Jia Xiaoyu,Gong Dirong,Wang Jiani,et al.Arsenic speciation in environmental waters by a new specific phosphine modified polymer microsphere preconcentration and HPLC-ICP-MS determination[J].Talanta,2016,160:437-443.
[30] Zhang Kaisheng,Wu Shibiao,He Junyong,et al.Development of a nanosphere adsorbent for the removal of fluoride from water[J].Journal of Colloid and Interface Science,2016,475:17-25.
基金资助
国家自然科学基金项目(21376127);黑龙江省自然科学基金(B201312)