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水体/底泥生物基城市河道富营养化水体修复试验研究
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作者 周慧华 宋晓光 +1 位作者 吴革 谢鑫源 《环境科学》 CAS CSCD 北大核心 2013年第10期3879-3887,共9页
针对城市水体富营养化现状,自主研发了水体生物基、底泥生物基和微动力涡轮水循环曝气系统.水体生物基对水体中COD、NH+4-N和TP的去除效果,平均去除率分别为82.33%、98.00%和54.73%;底泥生物基在投加5 d内可达到20%以上的底泥减量率,... 针对城市水体富营养化现状,自主研发了水体生物基、底泥生物基和微动力涡轮水循环曝气系统.水体生物基对水体中COD、NH+4-N和TP的去除效果,平均去除率分别为82.33%、98.00%和54.73%;底泥生物基在投加5 d内可达到20%以上的底泥减量率,上覆水曝气可有效缓解由底泥有机质降解而引起的营养盐释放;由水体/底泥生物基相结合并辅以微动力涡轮水循环曝气系统的组合技术,在中试试验中表现出较好的水体营养盐去除及底泥有机质降解效果,COD、NH+4-N、TP的去除率分别为52.0%、33.6%、23.4%,河道底泥中有机质成分由试验前的38.20%降至试验结束时的12.20%. 展开更多
关键词 水体生物基 底泥生物 城市水体 富营养 生态修复
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Genetic Analysis of a Biomass Mutant in Oryza sativa 被引量:12
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作者 廖子荣 黄东益 +2 位作者 牛杰 李俏 吴安迪 《Agricultural Science & Technology》 CAS 2008年第2期63-66,共4页
[ Objective ] The study aimed to reveal the genetic model of a biomass mutant in Oryza sativa. [ Method ] In the process of screening and identification of Bar-transgenic rice, a biomass mutant was found in 10 lines o... [ Objective ] The study aimed to reveal the genetic model of a biomass mutant in Oryza sativa. [ Method ] In the process of screening and identification of Bar-transgenic rice, a biomass mutant was found in 10 lines of T1 progenies. The mutant was investigated for genetic analysis and agronomic traits by herbicide spraying and PCR amplification. [ Result] The segregation ratio is consistent with mendelian law(3:1). The mutant assumed not only higher plant height, wider straw and earlier florescence, but also more tillers, bigger spikes and resultantly higher biomass. PCR detections indicated that no co-segregation was observed between mutant traits and target gene(Bar) in the T-DNA inserted, proving that the mutant is not caused by the insertion of T-DNA containing target gene (Bar). [ Conclusion] Our study may avail to understand the cloning of mutant gene and the mechanism of the mutant gene on biomass. 展开更多
关键词 Oryza sativa BIOMASS MUTANT Genetic analysis
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Photodegradation of methylmercury in the water body of the Three Gorges Reservoir 被引量:3
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作者 Rongguo Sun Dingyong Wang +3 位作者 Wen Mao Shibo Zhao Cheng Zhang Xiang Zhang 《Science China Chemistry》 SCIE EI CAS CSCD 2015年第6期1073-1081,共9页
Biogeochemical cycling of mercury in the young Three Gorges Reservoir (TGR), China, is strongly considered. Although methylmercury (MMHg) photodegradation (PD) is an important process involved in mercury cycling... Biogeochemical cycling of mercury in the young Three Gorges Reservoir (TGR), China, is strongly considered. Although methylmercury (MMHg) photodegradation (PD) is an important process involved in mercury cycling in this zone, little is known about this process. In situ incubation experiments were therefore performed to quantify the effect of different wave- length radiations and environmental factors on the PD process of MMHg in the water bodies of TGR. It was found that the ef- fect of solar radiation on MMHg PD was highly dependent on wavelength and water depth. All PD-rate constants resulting from each wavelength range decreased rapidly with water depth. For surface water, UV-A radiation (320-400 nm) was the key driver, accounting for 49%-62% of MMHg PD. For the entire water column, both photosynthetically active radiation (PAR, 400-700 nm) and UV-A were responsible for MMHg PD. MMHg PD fluxes peaked in summer (7.5-18 ng m-2 d-1), followed by spring (3.3-8.0 ng m-2 d-1), autumn (1.0-2.7 ng m-2 d-1), and winter (0.060-0.15 ng m-2 d-1). The annual fluxes of MMHg PD were estimated to be 1.1-2.8 μg m-2 at. Filtering the reservoir water and amending it with chemicals (i.e., CV, NO C, and dissolved organic matter (DOM)) showed significant effects on MMHg PD rate constants. Stepwise regression analysis showed that intensity of solar radiation, suspended particulate matter (SPM), DOM, CI-, and NO3- were involved in the PD process. Path analysis clarified the relationship between MMHg PD rate constants and environmental variables, as well as the comparative strength of direct and indirect relationships among variables. The results are of great importance for understanding MMHg cycling characteristics in TGR and also facilitate the understanding of the underlying process, MMHg PD, in natural waters. 展开更多
关键词 METHYLMERCURY PHOTODEGRADATION influencing factor stepwise regression analysis path analysis Three GorgesReservoir
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