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微藻除磷机理及其工艺模式的研究进展 被引量:1
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作者 安余梁 祁峰 +1 位作者 母锐敏 马桂霞 《工业水处理》 北大核心 2025年第2期10-17,共8页
向水环境排放过多的磷会危害环境和人体健康,同时导致磷资源的浪费。微藻除磷作为一种可以回收资源的污水深度处理方式,受到了国内外学者的广泛关注。然而,目前的研究还未揭开微藻除磷机理的全貌,也未开发出微藻的全部除磷潜力。对微藻... 向水环境排放过多的磷会危害环境和人体健康,同时导致磷资源的浪费。微藻除磷作为一种可以回收资源的污水深度处理方式,受到了国内外学者的广泛关注。然而,目前的研究还未揭开微藻除磷机理的全貌,也未开发出微藻的全部除磷潜力。对微藻除磷的优势进行了综述,基于现有研究成果论述了微藻除磷的机理,重点阐明了微藻除磷过程中“磷库”状态和“磷流”方向,并总结了微藻各种培养方式在除磷方面的优势与弱点。微藻除磷从机理上看,是生物质合成、化学沉淀、过量吸收和表面吸附这4种除磷机制共同作用和互相竞争的结果;从工艺模式上看,藻菌共生模式及光合兼养的营养模式是当前污水微藻除磷工艺的较佳选择。 展开更多
关键词 污水处理 微藻除磷 培养方式 生物燃料 除磷机理
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Characterization of Microcystis Aeruginosa immobilized in complex of PVA and sodium alginate and its application on phosphorous removal in wastewater 被引量:7
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作者 李飞 毛文娟 +4 位作者 李雪 王晓钰 肖智华 周耀渝 曾光明 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期95-102,共8页
Based on ecological niche theory, Microcystis Aeruginosa(MA) immobilized in the complex of polyvinyl alcohol(PVA)and sodium alginate(SA) crosslinked by CaCl2, was treated as a new kind of special species, and its prop... Based on ecological niche theory, Microcystis Aeruginosa(MA) immobilized in the complex of polyvinyl alcohol(PVA)and sodium alginate(SA) crosslinked by CaCl2, was treated as a new kind of special species, and its properties were investigated.Chlorophyll a was used to characterize the bioactivity of the immobilized MA. Results reveal that the gel beads have mechanical strength and chemical stability even under non-sterile harsh conditions, which may be attributed to the rarely seen structure(including three different layers: dense surface, tubular-shaped divergent structure and honeycomb crystal lattice layer) of the immobilized MA determined by scanning electron microscope(SEM). SEM also displays that more quantity of MA is attached to the inwall after cultivation, which demonstrates that the MA within beads maintains high bioactivity. Removal capacities on phosphorous(P) removal in wastewater in the presence and absence of the BG-11 medium were examined, and the removal ratios are 80.3% and76.7%, respectively, which indicates that the beads without providing ample nutrients still have high capacity of P removal. In addition, control experiment, utilizing polyvinyl alcohol and sodium alginate(PVA-SA) beads without immobilized MA,demonstrates that MA within beads plays the key role in absorbing P. 展开更多
关键词 eutrophication immobilized Microcystis Aeruginosa(MA) bioactivity phosphorous removal
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