[1] |
余德辉. 中国湖泊富营养化防治状况及存在的问题. 中国湖泊富营养化及其防治国际学术研讨会专家论文集. 北京: 国家环境保护总局,2000 Yu D. H. The condition and problems of the control of lake eutrophication in China. Proceedings of International Symposium on Lake Eutrophication and Its Control in China. Beijing: State Environmental Protection Administration, 2000 (in Chinese)
|
[2] |
金相灿. 中国湖泊富营养化控制技术. 中国湖泊富营养化及其防治国际学术研讨会专家论文集. 北京: 国家环境保护总局,2000 Jin X. C. The control technology of lake eutrophication in China. Proceedings of International Symposium on Lake Eutrophication and Its Control in China. Beijing: State Environmental Protection Administration, 2000 (in Chinese)
|
[3] |
Travieso L., Benitez F., Weiland P., et al. Experiments on immobilization of microalgae for nutrient removal in wastewater treatments. Bioresource Technology,1996, 55 (3): 181-186
|
[4] |
黄国兰,孙红文,宋志慧,等. 固定化藻类的生理特征和对染料的脱色能力研究. 环境科学学报,2000, 20(4): 445-449 Huang G. L., Sun H. W., Song Z.H., et al. Study on physiological characteristics and dye decolorization ability of immobilized algae. Acta Scientiae Circumstantiae,2000, 20(4): 445-449 (in Chinese)
|
[5] |
沈耀良,黄勇,赵丹. 固定化微生物污水处理技术. 北京: 化学工业出版社,2002
|
[6] |
Prüsse U., Morawsky V., Dierich A., et al. Encapsulation of microscopic catalysts in polyvinyl alcohol hydrogel beads. Studies in Surface Science and Catalysis,1998, 118: 137-146
|
[7] |
Zhang L. S., Wu W. Z., Wang J. L. Immobilization of activated sludge using improved polyvinyl alcohol (PVA) gel. Journal of Environmental Sciences,2007, 19(11): 1293-1297
|
[8] |
Seo J. K., Jung I. H., Kim M. R., et al. Nitrification performance of nitrifiers immobilized in PVA (polyvinyl alcohol) for a marine recirculating aquarium system. Aquacultural Engineering,2002, 24(3): 181-194
|
[9] |
Anselmo A. M., Novais J. M. Degradation of phenol by immobilized mycelium of Fusarium flocciferum in continuous culture. Water Science and Technology,1992, 25(1): 161-168
|
[10] |
王里奥,崔志强,袁辉,等. 固定化微生物处理甲醇废水的包埋条件优化选择. 重庆大学学报(自然科学版),2005, 28(6): 113-117 Wang L. A., Cui Z. Q., Yuan H., et al. Conditions of imbedded immobilization for the treatment of methanol wastewater by immobilized microorganism. Journal of Chongqing University(Natural Science),2005, 28(6): 113-117 (in Chinese)
|
[11] |
李中华,尹华,叶锦韶,等. 固定化菌体吸附矿山废水中重金属的研究. 环境科学学报,2007, 27(8): 1245-1249 Li Z. H., Yin H., Ye J. S., et al. Biosorption of heavy metals from mine wastewater by immobilized bacteria. Acta Scientiae Circumstantiae,2007, 27(8): 1245-1249 (in Chinese)
|
[12] |
张静进,刘云国,张薇,等. 海藻酸钠包埋活性炭与细菌的条件优化及其对Pb2+的吸附特征研究. 环境科学,2010, 31(11): 2684-2690 Zhang J. J., Liu Y. G., Zhang W., et al. Optimization immobilizing activated carbon and bacteria by sodium alginate and its character of adsorption of Pb2+. Environment Science,2010, 31(11): 2684-2690 (in Chinese)
|
[13] |
王海军,王洪铸. 富营养化治理应放宽控氮集中控磷.自然科学进展,2009, 19(6): 599-604 Wang H. J., Wang H. T. Concentrated control of phosphorus and relaxed accused of nitrogen can be the effective measure of eutrophication. Progress in Natural Science,2009, 19(6): 599-604 (in Chinese)
|
[14] |
Bechmann M. E., Berge D., Eggestad H. O., et al. Phosphorus transfer from agricultural areas and its impact on the eutrophication of lakes-two long-term intergrated studies from Norway. Journal of Hydrology,2005, 304(1-4): 238-250
|
[15] |
全国富营养化调查组. 湖泊富营养化调查规范. 北京:中国环境科学出版社,1987. 160-242
|
[16] |
Tamponnet C., Costantino F., Barbotin J. N., et al. Cytological and physiological behaviour of Euglena Gracilis cells entrapped in calcium alginate gel. Physiologia Plantarum, 1985, 63(3): 277-283
|
[17] |
Robinson P. K., Goulding K. H., Dainty A. L., et al. Physiology of alginate-immobilized Chlorella. Enzyme Microbiology Technology, 1985, 7(5): 212-216
|
[18] |
Chevalicr P., Noüe J. Wastewater nutrient removal with microalgae immobilized in carrageenan. Enzyme and Microbial Technology, 1985, 7 (12): 621-624
|
[19] |
林永波,谢新宇,蔡体久. 聚乙烯醇-海藻酸钠凝胶球去除废水中无机磷的研究. 环境科学与技术,2009, 32(10): 25-28 Lin Y. B., Xie X. Y., Cai T. J. Removal of phosphorus in wastewater by polyvinylalcohol-sodium alginate gel beads. Environmental Science & Technology,2009, 32(10): 25-28 (in Chinese)
|
[20] |
何立芳,邱如斌,张夏红,等. 海藻酸钠/聚乙烯醇共混膜制备及对离子吸附性能. 环境科学与技术,2010, 33(1): 48-51 He L. F., Qiu R. B., Zhang X. H., et al. Preparation of blend film of sodium alginate and polyvinyl alcohol and its adsorption for ions. Environmental Science & Technology,2010, 33(1): 48-51 (in Chinese)
|
[21] |
金相灿,李兆春,郑朔方,等. 铜绿微囊藻生长特性研究. 环境科学研究,2004, 17(增刊): 52-61 Jin X. C., Li Z. C., Zheng S. F., et al. Studies on Growth Characteristics of Microcystis aeruginosa. Research of Environmental Sciences,2004, 17(supplement): 52-61 (in Chinese)
|
[22] |
薛凌展,黄种持,林泽,等. 铜绿微囊藻和普通小球藻在不同pH下生长特性及竞争参数计算. 福建农业学报,2010, 25(2): 142-148 Xue L. Z., Huang Z. C., Lin Z., et al. Growth and competitiveness of Microcystis aeruginosa and Chlorella vulgaris at varying pH. Fujian Journal of Agricultural Sciences,2010, 25(2): 142-148 (in Chinese)
|
[23] |
Tredici M. R., Margheri M. C., Chini Zittelli G., et al. Nitrogen and phosphorus reclamation from municipal wastewater through an artifical food-chain system. Bioresource Technology,1992, 42(3): 247-253
|
[24] |
吴珊,张晓萍,张福萍. 2种藻类储磷释磷过程与生长情况对比. 河海大学学报(自然科学版),2010, 38(1): 15-19 Wu S., Zhang X. P., Zhang F. P. Comparative study on phosphorus reserve and release process and growth of two kinds of algae. Journal of Hohai University(Natural Sciences),2010, 38(1): 15-19 (in Chinese)
|
[25] |
易文利,金相灿,储昭升,等. 不同质量浓度的磷对铜绿微囊藻生长及细胞内磷的影响. 环境科学研究,2004, 17(增刊): 58-61 Yi W. L., Jin X. C., Chu Z. S., et al. Effect of different P mass concentrations on growth and P-in-cell of Microcystis aeruginosa. Research of Environmental Sciences,2004, 17(supplement): 58-61 (in Chinese)
|
[26] |
方群,崔莉凤,庞晓辰. 铜绿微囊藻对磷酸盐的代谢及动力学研究. 环境科学与技术,2010, 33(9): 79-81 Fang Q., Cui L. F., Pang X. C. Impact of phosphorus nutrients on metabolism of Microcystis aeruginosa and its kinetic study. Environmental Science & Technology,2010, 33(9): 79-81 (in Chinese)
|