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碳素纤维改性及其在富营养化水体中的挂膜实验 被引量:13
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作者 李兰 索帮成 +1 位作者 常布辉 姚磊 《中国农村水利水电》 北大核心 2013年第3期53-57,61,共6页
目前关于活性碳纤维处理污水的试验大多集中在小型处理装置系统的碳素纤维吸附试验,其挂膜效果与其在自然水体差别很大。通过将碳素纤维活化改性,并进行挂膜试验确定最佳活化条件,研究碳素纤维固化技术,研制成不同类型的碳素纤维净水产... 目前关于活性碳纤维处理污水的试验大多集中在小型处理装置系统的碳素纤维吸附试验,其挂膜效果与其在自然水体差别很大。通过将碳素纤维活化改性,并进行挂膜试验确定最佳活化条件,研究碳素纤维固化技术,研制成不同类型的碳素纤维净水产品。为了验证改性碳素纤维净水产品的可行性,将改性前后的碳素纤维分别在塑料桶、金鱼缸、地埋雨污处理系统、东湖、排水渠、官桥湖等不同水体观测其生物挂膜的生物相结构。并应用于武汉东湖主湖建立自主产品1 000m2面积的示范工程,同时与日本苏恩公司碳素纤维示范工程进行了富营养化示范工程的比较试验。试验结果显示:2个试验场水域经过4d的净水处理,示范区水质从劣Ⅴ类上升为IV类,同样实现了刚毛藻藻场和沉水植物的自我修复,达到了日本相关产品的富营养化控制功能。 展开更多
关键词 碳素纤维 微生物膜修复 富营养化 湖泊治理
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Marine Bacterial Biofilms in Bioremediation of Polycyclic Aromatic Hydrocarbons(PAHs) Under Terrestrial Condition in a Soil Microcosm 被引量:10
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作者 Neelam MANGWANI Supriya KUMARI Surajit DAS 《Pedosphere》 SCIE CAS CSCD 2017年第3期548-558,共11页
Polycyclic aromatic hydrocarbons (PAHs) in soil retain for a quite long period due to their hydrophobicity and aggregation properties. Biofilm-forming marine bacterial consortium (named as NCPR), composed of Steno... Polycyclic aromatic hydrocarbons (PAHs) in soil retain for a quite long period due to their hydrophobicity and aggregation properties. Biofilm-forming marine bacterial consortium (named as NCPR), composed of Stenotrophomonas acidaminiphila NCW702, Alcaligenes faecalis NCW402, Pseudomonas mendocina NR802, Pseudornonas aeruginosa N6P6, and Pseudomonas pseudoalcaligenes NP103, was used for the bioremediation of PAHs in a soil microcosm. Phenanthrene and pyrene were used as reference PAHs. Parameters that can affect PAH degradation, such as chemotaxis, solubility of PAHs in extracellular polymeric substances (EPS), and catechol 2,3-dioxygenase (C230) activity, were evaluated. P. aeruginosa N6P6 and P. pseudoalcaligenes NP103 showed chemotactic movement towards both the reference PAHs. The solubility of both the PAHs was increased with an increase in EPS concentration (extracted from all the 5 selected isolates). Significantly (P 〈 0.001) high phenanthrene (70.29%) and pyrene (55.54%) degradation was observed in the bioaugmented soil microcosm. The C230 enzyme activity was significantly (P 〈 0.05) higher in the bioaugmented soil mi- crocosm with phenanthrene added at 173.26 ± 2.06 nmol rain-1 mg-1 protein than with pyrene added at 61.80 ± 2.20 nmol min-1 mg-1 protein. The C230 activity and gas chromatography-mass spectrometer analyses indicated catechol pathway of phenanthrene metabolism. However, the metabolites obtained from the soil microcosm added with pyrene revealed both the catechol and phthalate pathways for pyrene degradation. 展开更多
关键词 catechol 2 3-dioxygenase activity chemotactic movement degradation extracellular polymeric substances PYRENE ~he-nanthrene
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