期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
不同水分条件下藏北盐化沼泽湿地土壤碳氮的分布 被引量:9
1
作者 赵慧 刘伟龙 +2 位作者 王小丹 蔡延江 杜子银 《山地学报》 CSCD 北大核心 2014年第4期431-437,共7页
目前,对于高寒湿地土壤碳氮的研究多集中于泥炭沼泽,盐化沼泽土壤的研究相对较少。为了全面认识湿地土壤碳氮的特征以及对未来气候变化的响应,以藏北高原腹地格仁错湖沼湿地为研究区,分析高寒盐化沼泽常年积水、季节性积水和无积水三种... 目前,对于高寒湿地土壤碳氮的研究多集中于泥炭沼泽,盐化沼泽土壤的研究相对较少。为了全面认识湿地土壤碳氮的特征以及对未来气候变化的响应,以藏北高原腹地格仁错湖沼湿地为研究区,分析高寒盐化沼泽常年积水、季节性积水和无积水三种水分条件下土壤剖面(0~50 cm)内有机碳和全氮的垂直分布特征。研究结果表明:随水位梯度的升高,各土层碳氮含量逐渐减少。在无积水区和季节性积水区,有机碳(SOC)和全氮(TN)的分布均表现为表层(0~10 cm)含量最高,沿土壤剖面呈下降趋势;常年积水区各土层间的SOC和TN含量差异很小。其中,无积水区、季节性积水区和常年积水区0~50 cm土层的SOC储量分别为7.60 kg/m2,4.11 kg/m2和2.35 kg/m2,TN储量分别为0.56 kg/m2,0.28 kg/m2和0.19 kg/m2。相对于高寒草甸沼泽土和泥炭沼泽土壤来说,高寒盐化沼泽土是碳氮累积较少的土壤类型,高水位、高盐度和低气温成为盐化沼泽土壤碳氮累积的主要限制条件。 展开更多
关键词 藏北高原 盐化沼泽土壤 水分条件 有机碳 全氮
下载PDF
Denitrification Potential of Marsh Soils in Two Natural Saline-alkaline Wetlands
2
作者 BAI Junhong ZHAO Qingqing +3 位作者 WANG Junjing LU Qiongqiong YE Xiaofei GAO Zhaoqin 《Chinese Geographical Science》 SCIE CSCD 2014年第3期279-286,共8页
Little information is available on denitrification potential of marsh soils in natural saline-alkaline wetlands. The denitrification potentials of an open wetland in the floodplain(Erbaifangzi wetland) and a closed we... Little information is available on denitrification potential of marsh soils in natural saline-alkaline wetlands. The denitrification potentials of an open wetland in the floodplain(Erbaifangzi wetland) and a closed wetland(Fulaowenpao wetland) in backwater areas in Jilin Province of Northeast China were monitored by an anaerobic incubation at 30℃ for 25 days. Our results showed that the relative denitrification index(RDI) increased gradually with incubation time, and showed a rapid increase in the first 5 days of incubation. The RDI values declined quickly from surface soils to subsurface soils and then kept a small change in deeper soils along soil profiles over the incubation time. Denitrification proceeded much faster in the top 20 cm soils of open wetland than in the closed wetland, whereas no significant differences in RDI values were observed in deeper soils between both wetlands. The RDIs were significantly negatively correlated with bulk density and sand content, while a significantly positive correlation with clay content, soil organic matter, total nitrogen and phosphorous. The maximum net NO–3-N loss through denitrification in 1 m depth were higher in the open wetland than the closed wetland with higher soil pH values. Future research should be focused on understanding the influencing mechanisms of soil alkalinity. 展开更多
关键词 relative denitrification index potential net denitrification rate marsh soil saline-alkaline wetland
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部