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RELATION BETWEEN WATER TEMPERATURE, WATER EXCHANGE AMOUNT, FEED AND PRAWN DISEASE
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作者 臧维玲 戴习林 +5 位作者 江敏 张建达 黄建华 孙绍永 徐桂荣 李士华 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 1997年第3期212-215,共4页
High temperature is an important factor inducing bacterial disase of the prawn (Penaeus orientalis).Water temperature over 35℃ apparetly stopped tested baculovirus from multiplying. High contents of ammonia-nitrogen ... High temperature is an important factor inducing bacterial disase of the prawn (Penaeus orientalis).Water temperature over 35℃ apparetly stopped tested baculovirus from multiplying. High contents of ammonia-nitrogen and nitrite-nitrogen poison the prawn’s body, weaken its physique and may induce and worsen the disease. 展开更多
关键词 PRAWN temperature REMNANT FEED ammonia-nitrogen nitrite-nitrogen PRAWN DISEASE VIRUS
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Changes in the patterns of inorganic nitrogen and TN/TP ratio and the associated mechanism of biological regulation in the shallow lakes of the middle and lower reaches of the Yangtze River 被引量:14
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作者 WU Shikai XIE Ping WANG Songbo ZHOU Qiong 《Science China Earth Sciences》 SCIE EI CAS 2006年第z1期126-134,共9页
The changes of NH3-N, NO3-N, NO2-N and TN/TP were studied during growth and non-growth season in 33 subtropical shallow lakes in the middle and lower reaches of the Yangtze River. There were significant positive corre... The changes of NH3-N, NO3-N, NO2-N and TN/TP were studied during growth and non-growth season in 33 subtropical shallow lakes in the middle and lower reaches of the Yangtze River. There were significant positive correlations among all nutrient concentrations, and the correlations were better in growth season than in non-growth season. When TP>0.1 mgL-1, NH3-N increased sharply in non-growth season with increasing TP, and NO3-N increased in growth season but decreased in non-growth season with TP. These might be attributed to lower dissolved oxygen and low temperature in non-growth season of the hypereutrophic lakes, since nitrification is more sensitive to dissolved oxygen and temperature than antinitrification. When 0.1 mgL-1>TP>0.035 mgL-1, TN and all kinds of inorganic nitrogen were lower in growth season than in non-growth season, and phytoplankton might be the vital regulating factor. When TP<0.035 mgL-1, inorganic nitrogen concentrations were relatively low and NH3-N, NO2-N had significant correlations with phytoplankton, indicating that NH3-N and NO2-N might be limiting factors to phytoplankton. In addition, TN/TP went down with decline in TP concentration, and TN and inorganic nitrogen concentrations were obviously lower in growth season than in non-growth season, suggesting that decreasing nitrogen (especially NH3-N and NO3-N) was an important reason for the decreasing TN/TP in growth season. The ranges of TN/TP were closely related to trophic level in both growth and non-growth seasons, and it is apparent that in the eutrophic and hypertrophic state the TN/TP ratio was obviously lower in growth season than in non-growth season. The changes of the TN/TP ratio were closely correlated with trophic levels, and both declines of TN in the water column and TP release from the sediment were important factors for the decline of the TN/TP ratio in growth season. 展开更多
关键词 nitrate-nitrogen ammonium-nitrogen nitrite-nitrogen SHALLOW lakes phytoplankton.
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