[1] Arshadi M., Soleymanzadeh M., Salvacion J. W. L., et al. Nanoscale Zero-Valent Iron (NZVI) supported on sineguelas waste for Pb(II) removal from aqueous solution: Kinetics, thermodynamic and mechanism. Journal of Colloid and Interface Science, 2014, 426: 241-251
[2] Luo Shenglian, Xu Xiangli, Zhou Guiyin, et al. Amino siloxane oligomer-linked graphene oxide as an efficient adsorbent for removal of Pb (II) from wastewater. Journal of Hazardous Materials, 2014, 274: 145-155
[3] Hosseini-Bandegharaei A., Karimzadeh M., Sarwghadi M., et al. Use of a selective extractant-impregnated resin for removal of Pb(II) ion from waters and wastewaters: Kinetics, equilibrium and thermodynamic study. Chemical Engineering Research and Design, 2014, 92(3): 581-591
[4] Zhao Qingchun, Ren Lin, Zhou Haiou, et al. Enhanced adsorption of Pb(II) by Al(OH)3/(PAA-CO-PAM) sub-microspheres with three-dimensional interpenetrating network structure. Chemical Engineering Journal, 2014, 250: 6-13
[5] Jamshidi Gohari R., Lau W. J., Matsuura T., et al. Adsorptive removal of Pb(II) from aqueous solution by novel PES/HMO ultrafiltration mixed matrixmembrane. Separation and Purification Technology, 2013, 120: 59-68
[6] Yan Yubo, Dong Xiaoli, Sun Xiaolei, et al. Conversion of waste FGD gypsum into hydroxyapatite for removal of Pb2+ and Cd2+ from wastewater. Journal of Colloid and Interface Science, 2014, 429: 68-76
[7] Aliabadi M., Irani M., Ismaeili J., et al. Design and evaluation of chitosan/hydroxyapatite composite nanofiber membrane for the removal of heavy metal ions from aqueous solution. Journal of the Taiwan Institute of Chemical Engineers, 2014, 45(2): 518-526
[8] Sahu M. K., Mandal S., Dash S. S, et al. Removal of Pb(II) from aqueous solution by acid activated red mud. Journal of Environment Chemical Engineering, 2013, 1(4): 1315-1324
[9] Ghasemi M., Naushad M., Ghasemi N., et al. Adsorption of Pb (II) from aqueous solution using new adsorbents prepared from agricultural waste: Adsorption isotherm and kinetic studies. Journal of Industrial and Engineering Chemistry, 2014, 20(4): 2193-2199
[10] Liu Dagang, Li Zehui, Zhu Yi, et al. Recycled chitosan nanofibril as an effective Cu(II), Pb (II) and Cd(II) ionic chelating agent: Adsorption and desorption performance. Carbohydrate Polymers, 2014, 111: 469-476
[11] Cao Fujun, Yin Ping, Zhang Jiang, et al. Nanoplates of cobalt phosphonate with two-dimensional structure and its competitive adsorption of Pb(II) and Hg(II) ions from aqueous solutions. Journal of Industrial and Engineering Chemistry, 2014, 20(4): 2568-2573
[12] Jiang Tianyu, Xu Renkou, Gu Tianxia, et al. Effect of Crop-straw derived biochars on Pb (II) adsorption in two variable charge soils. Journal of Integrative Agriculture, 2014, 13(3): 507-516
[13] He Manchao, Zhao Jian, Wang Shuangxi. Adsorption and diffusion of Pb (II) on the kaolinite (001) surface: A density-functional theory study. Applied Clay Science, 2013, 85: 74-79
[14] Cui Limei, Xu Weiying, Guo Xiaoyao, et al. Synthesis of strontium hydroxyapatite embedding ferroferric oxide nano-composite and its application in Pb2+ adsorption. Journal of Molecular Liquids, 2014, 197: 40-47
[15] He Mao, Shi Hui, Zhao Xinyue, et al. Immobilization of Pb and Cd in Contaminated Soil Using Nano-Crystallite Hydroxyapatite. Procedia Environmental Sciences, 2013, 18: 657-665
[16] Xu Huanyan, Yang Lei, Wang Peng, et al. Kinetic research on the sorption of aqueous lead by synthetic carbonate hydroxyapatite. Journal of Environmental Management, 2008, 86(1): 319-328
[17] Safavi A., Momeni S. Highly efficient degradation of azo dyes by palladium/hydroxyapatite/Fe3O4 nanocatalyst. Journal of Hazardous Materials, 2012, 201-202: 125-131
[18] 唐文清, 曾荣英, 冯泳兰, 等. 合成碳羟基磷灰石对水中双酚A的吸附性能研究. 环境工程学报, 2009, 3(11): 1961-1964 Tang Wengqing, Zeng Rongying, Feng Yonglan, et al. Study on adsorption characteristic of carbonate hydroxylapatite for biphenol-A from aqueous solution. Chinese Journal of Environmental Engineering, 2009, 3(11): 1961-1964(in Chinese)
[19] 唐文清, 曾荣英, 李小明, 等. 合成碳羟基磷灰石对水中苯胺的吸附机理. 硅酸盐学报, 2010, 38(11): 2167-2171 Tang Wenqing, Zeng Rongying, Li Xiaoming, et al. Adsorption characteristic of carbonate hydroxylapatite for aniline from aqueous solution. Journal of the Chinese Ceramic Society, 2010, 38(11): 2167-2171(in Chinese)
[20] Li Songnan, Bai Hongbin, Wang Jun, et al. In situ grown of nano-hydroxyapatite on magnetic CaAl-layered double hydroxides and its application in uranium removal. Chemical Engineering Journal, 2012, 193-194: 372-380
[21] Salah T. A., Mohammad A. M., Hassan M. A., et al. Development of nano-hydroxyapatite/chitosan composite for cadmium ions removal in wastewater treatment. Journal of the Taiwan Institute of Chemical Engineers, 2014, 45(4): 1571-1577
[22] Bazargan-Lari R., Zafarani H. R., Bahrololoom M. E., et al. Removal of Cu(II) ions from aqueous solutions by low-cost natural hydroxyapatite/chitosan composite: Equilibrium, kinetic and thermodynamic studies. Journal of the Taiwan Institute of Chemical Engineers, 2014, 45(4): 1642-1648
[23] Kong Jiaojiao, Yue Qinyan, Sun Shenglei, et al. Adsorption of Pb (II) from aqueous solution using keratin waste-hide waste: Equilibrium, kinetic and thermodynamic modeling studies. Chemical Engineering Journal, 2014, 241: 393-400
[24] Boroumand Jazi M., Arshadi M., Amiri M. J., et al. Kinetic and thermodynamic investigations of Pb(II) and Cd(II) adsorption on nanoscale organo-functionalized SiO2-Al2O3. Journal of Colloid and Interface Science, 2014, 422: 16-24
[25] Wei Wei, Sun Rong, Jin Zhu, et al. Hydroxyapatite-gelatin nanocomposite as a novel adsorbent for nitrobenzene removal from aqueous solution. Applied Surface Science, 2014, 292: 1020-1029