[1] 沈渊玮,陆善忠.活性炭在水处理中的应用[J].工业水处理, 2007,27(4):13-16.
[2] 孙蔚青,胡学伟,宁平,等. 溶解性微生物产物在水处理领域中的研究进展[J]. 水处理技术,2011,37(12):5-9.
[3] 赵振国. 苯的衍生物在活性炭/水界面上的吸附标准自由能及与其分子结构的关系[J]. 环境科学学报,2001,21(1):29-33.
[4] Kunwar P,Singh A M,Sarita S,et al. Liquid-phase adsorption of phenols using activated carbons derived from agricultural waste material[J]. Journal of Hazardous Materials,2008,150(3):626-641.
[5] 何文杰,谭浩强,韩宏大,等. 粉末活性炭对水中农药的吸附性能研究[J]. 环境工程学报,2010,4(8):1692-1696.
[6] Carmona M,De Lucas A, Valverde J L,et al. Combined adsorption and ion exchange equilibrium of phenol on Amberlite IRA-420[J]. Chemical Engineering Journal,2006,117(2):155-160.
[7] 张婧怡,石宝友,解建坤,等. 活性炭物化性质对吸附天然水体中有机污染物的影响[J]. 环境科学,2011,32(2):494-500.
[8] Li Qilin,Snoeyink V L,Marias B J,et al. Elucidating competitive adsorption mechanisms of atrazine and NOM using model compoun-ds[J]. Water Research,2003,37(4):773-784.
[9] Li Qilin,Snoeyink V L,Marias B J,et al. Pore blockage effect of NOM on atrazine adsorption kinetics of PAC:the role of PAC pore size distribution and NOM molecular weight[J]. Water Research,2003, 37(20):4863-4872.
[10] Naoya A, Yoshihiko M,Ryuji K,et al. Comparison of natural organic matter adsorption capacities of super-powdered activated Carbon and powdered activated Carbon[J]. Water Research,2010,44(14):4127-4136.
[11] Naoya A,Yoshihiko M,Taku M,et al. Direct observation of solid-ase adsorbate concentration profile in powdered activated carbon particle to elucidate mechanism of high adsorption capacity on super-powdered activated carbon[J]. Water Research,2011,45(2):761-767.
[12] Yoshihiko M,Naoya A,Hiroshi S,et al. Branched pore kinetic model analysis of geosmin adsorption on super-powdered activated carbon[J]. Water Research,2009,43(12):3095-3103.
[13] Baalousha M,Motelica-Heino M,Coustumer P L,et al. Conforma-tion and size of humic substances:effects of majorcation concentration and type,pH,salinity,and residence time[J]. Colloids and Surfaces A:Physicochemical and Engineering Aspects,2006,272 (1/2):48-55. |