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温度对几种大型海藻硝氮吸收及其生长的影响

Effects of temperature on nitrogen uptake and growth in several species of macroalgae

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【作者】 李恒李美真曹婧徐智广

【Author】 LI Heng 1,2 LI Mei-zhen 1* CAO Jing 3 XU Zhi-guang 1(1 Alage Research Centre,Mariculture Institute of Shandong Province,Qingdao 266002)(2 College of Chemistry and Chemical Engineering,Ocean University of China,Qingdao 266100)(3 North China Sea Environment Monitoring Center,State Oceanic Administration,Qingdao 266000)

【机构】 山东省海水养殖研究所藻类中心实验室中国海洋大学化学化工学院国家海洋局北海环境监测中心

【摘要】 以大型红藻真江蓠Gracilaria asiatica、脆江蓠Gracilaria chouae、蜈蚣藻Grateloupia filicina大型褐藻鼠尾藻Sargassum thunbergii、海黍子Sargassum pallidum为实验材料,研究了在10~25℃不同温度下这几种海藻对硝氮(NO3-N)的吸收和生长情况。结果表明,几种大型海藻对水体中NO3-N的吸收效果明显,其中真江蓠和脆江蓠的吸收速率15℃时最高,为0.507±0.136和0.448±0.095μmol/g·h,蜈蚣藻和鼠尾藻在20℃时最高,为0.614±0.033和0.289±0.019μmol/g·h,海黍子在25℃时吸收速率最高,为0.748±0.015μmol/g·h。结合去除效率常数来看,海黍子对NO3-N有更好的去除效果。温度变化对大型海藻的生长具有显著的影响,在20℃下大部分海藻相对生长速率达到最高,其中以脆江蓠最高,达到4.79%±0.45%/d。

【Abstract】 A series of experiments were conducted to investigate the effects of nutrient supplement on nitrogen uptake and growth of macroalgae,including Gracilaria asiatica,G.chouae,Grateloupia filicina,Sargassum thunbergii,and S.pallidum.It was found that nitrate absorption of these macroalgae was obvious within certain temperature range.With the rise of temperature,the nitrite uptake rate demonstrated an increasing trend.At 15℃,G.asiatica and G.chouae exhibited a maximal uptake rate of 0.507±0.136 μ mol/g.h and 0.448± 0.095 μ mol/g.h,respectively.At 20℃,G.filicinaand S.thunbergii exhibited a maximal uptake rate of 0.614±0.033 μ mol/g.h and 0.289±0.019 μ mol/g.h.At 25℃,S.pallidumexhibited a maximal uptake rate of 0.748 ±0.015 μ mol/g.h.These findings indicated thatS.pallidumis more efficient than the other species in removing nitrogen.Temperature had a significant impact on macroalgae growth,and at 20℃,the highest growth rate in wet weight occurred in most macroalgae,especially G.chouae,reaching 4.79±0.45%/d.

【基金】 国家海洋公益性行业科研专项经费项目(200905019-2;200905020-2;201105008-2);国家863项目(2012AA10A413;2012AA10A406-2)共同资助
  • 【文献出处】 渔业科学进展 ,Progress in Fishery Sciences , 编辑部邮箱 ,2013年01期
  • 【分类号】S968.43
  • 【被引频次】24
  • 【下载频次】450
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