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Diurnal variation of nitric oxide emission flux from a mangrove wetland in Zhangjiang River Estuary, China

机译:张江河口红树林湿地一氧化氮排放通量的日变化

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摘要

The diurnal variation of nitric oxide (NO) emission fluxes from a Kandelia obovata and Avkennia marina mangrove wetland were studied in the Zhangjiang River Estuary Mangrove National Nature Reserve using a dynamic chamber-based technique and a chemiluminescent analyzer. Results from field experiments show that NO emission from K. obovata and A. marina sampling sites reached maximal values of 1.07 ngNm~(-2)2s~(-1) and 1.23 ngNm ~2s~ 1, respectively after the night tide. Meanwhile NO emission maintained at a steady lower level in daytime for both wetland sites. In laboratory experiments, NO emission from the mangrove wetland soil samples treated with simulated tides in the darkness exhibited higher values than those in the light, therefore it seems that tides and darkness could increase NO emission from mangrove wetlands, while intensive light, high temperature, and dryness in the daytime decreased NO emission. Compared with K. obovata soil samples, the diurnal average NO emission rate of the A. marina site was significantly higher, which was closely related to relatively higher diurnal average CO_2 emission rate, soil available nitrogen content and soil net nitrification rate of the A. marina site. Moreover, soil samples of the A. marina site were more responsive to simulated tides and the addition of nitrogen than those of the K. obovata site.
机译:使用基于动态室的技术和化学发光分析仪,在张江河口红树林国家级自然保护区研究了阔叶红藻和Avkennia滨海红树林湿地中一氧化氮(NO)排放通量的日变化。田间试验结果表明,夜潮后,卵圆线虫和滨海曲霉采样点的NO排放量分别达到1.07 ngNm〜(-2)2s〜(-1)和1.23 ngNm〜2s〜1的最大值。同时,两个湿地的白天NO排放均维持在稳定的较低水平。在实验室实验中,在黑暗中用模拟潮汐处理过的红树林湿地土壤样品中的NO排放值要高于在光照下的值,因此,潮汐和黑暗似乎可以增加红树林湿地中NO的排放,而强光,高温,白天的干燥减少了NO的排放。与圆柏土壤样品相比,滨海土壤点的日平均NO排放量明显更高,这与相对较高的日平均CO_2排放量,土壤有效氮含量和土壤净硝化率有关。码头站点。此外,滨海土壤杆菌站点的土壤样品比拟卵阔叶拟南芥站点的土壤样品对模拟潮汐和氮的添加更为敏感。

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  • 来源
    《Estuarine Coastal and Shelf Science》 |2010年第4期|p.212-220|共9页
  • 作者单位

    Key Laboratory for Subtropical Wetland Ecosystem Research of Ministry of Education of China, Xiamen University, Xiamen 361005, PR China,School of Life Sciences, Xiamen University, Xiamen 361005, PR China;

    Key Laboratory for Subtropical Wetland Ecosystem Research of Ministry of Education of China, Xiamen University, Xiamen 361005, PR China,School of Life Sciences, Xiamen University, Xiamen 361005, PR China;

    School of Life Sciences, Xiamen University, Xiamen 361005, PR China,Center for Environmental Monitoring, Xiamen Environmental Protection Agency, Xiamen 361005, PR China;

    Key Laboratory for Subtropical Wetland Ecosystem Research of Ministry of Education of China, Xiamen University, Xiamen 361005, PR China,School of Life Sciences, Xiamen University, Xiamen 361005, PR China;

    Key Laboratory for Subtropical Wetland Ecosystem Research of Ministry of Education of China, Xiamen University, Xiamen 361005, PR China,School of Life Sciences, Xiamen University, Xiamen 361005, PR China;

    Center for Environmental Monitoring, Xiamen Environmental Protection Agency, Xiamen 361005, PR China;

    Center for Environmental Monitoring, Xiamen Environmental Protection Agency, Xiamen 361005, PR China;

    Central Grasslands Research Extension Center, North Dakota State University, Streeter, ND 58483, USA;

    Department of Biology, Duke University, Durham, NC, USA,School of Life Sciences, Xiamen University, Xiamen 361005, PR China;

    Key Laboratory for Subtropical Wetland Ecosystem Research of Ministry of Education of China, Xiamen University, Xiamen 361005, PR China,School of Life Sciences, Xiamen University, Xiamen 361005, PR China,State Key Laboratory of Marine Environmental Science, Xiamen University, Xiamen 361005, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    estuaries; nitrogen; mangroves; tides; wetlands; ZhangJiang river estuary;

    机译:河口氮;红树林;潮汐湿地张江河口;

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