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嫩江流域湿地变化特征分析
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作者 汪雪格 刘洪超 吕军 《中国水土保持》 2020年第4期59-62,共4页
嫩江流域是我国湿地集中分布区之一,湿地主要分布在嫩江流域的上游及中下游的河流沿岸及尾闾区域。为揭示嫩江流域湿地变化的特征,将研究区划分成17个评价单元,分析各评价单元湿地的面积及其变化,结果发现:湿地的减少主要受人类活动的影... 嫩江流域是我国湿地集中分布区之一,湿地主要分布在嫩江流域的上游及中下游的河流沿岸及尾闾区域。为揭示嫩江流域湿地变化的特征,将研究区划分成17个评价单元,分析各评价单元湿地的面积及其变化,结果发现:湿地的减少主要受人类活动的影响,其主要表现为开垦湿地为耕地,耕地化率为54.6%,主要集中在嫩江中、上游区域;其次是压缩湿地生态需水而导致的湿地退化、盐碱化,退化率和盐碱化率分别为31.8%和2.5%。湿地退化的主要原因为:①人类生活、工业和农业需水量增大,占用了一部分湿地的生态需水;②水利工程的阻隔,减少或切断了河流与湿地的水力联系;③人类开发地下水导致地下水位下降,湿地反补地下水。 展开更多
关键词 湿地 耕地化 退化 盐碱化率 嫩江流域
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Carbon Dioxide and Nitrous Oxide Emissions from Naturally Occurring Sulfate-Based Saline Soils at Different Moisture Contents 被引量:6
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作者 Resham THAPA Amitava CHATTERJEE +1 位作者 Abbey WICK Kirsten BUTCHER 《Pedosphere》 SCIE CAS CSCD 2017年第5期868-876,共9页
Soil salinization may negatively affect microbial processes related to carbon dioxide (CO2) and nitrous oxide (N20) emissions. A short-term laboratory incubation experiment was conducted to investigate the effects... Soil salinization may negatively affect microbial processes related to carbon dioxide (CO2) and nitrous oxide (N20) emissions. A short-term laboratory incubation experiment was conducted to investigate the effects of soil electrical conductivity (EC) and moisture content on CO2 and N20 emissions from sulfate-based natural saline soils. Three separate 100-m long transects were established along the salinity gradient on a salt-affected agricultural field at Mooreton, North Dakota, USA. Surface soils were collected from four equally spaced sampling positions within each transect, at the depths of 0-15 and 15-30 cm. In the laboratory, artificial soil cores were formed combining soils from both the depths in each transect, and incubated at 60% and 90% water-filled pore space (WFPS) at 25 ~C. The measured depth-weighted EC of the saturated paste extract (ECe) across the sampling positions ranged from 0.43 to 4.65 dS m-1. Potential nitrogen (N) mineralization rate and CO2 emissions decreased with increasing soil ECe, but the relative decline in soil CO2 emissions with increasing ECe was smaller at 60% WFPS than at 90% WFPS. At 60% WFPS, soil N20 emissions decreased from 133 g N20-N kg-1 soil at ECe ( 0.50 dS m-1 to 72 μg N20-N kg-1 soil at ECe = 4.65 dS m-1. In contrast, at 90% WFPS, soil N20 emissions increased from 262 g N20-N kg-1 soil at ECe : 0.81 dS m-1 to 849 g N20-N kg-1 soil at ECe : 4.65 dS m-1, suggesting that N20 emissions were linked to both soil ECe and moisture content. Therefore, spatial variability in soil ECe and pattern of rainfall over the season need to be considered when up-scaling N20 and CO2 emissions from field to landscape scales. 展开更多
关键词 electric conductivity C and N mineralization SALINITY sulfate salts soil salinization soil water-filled pore space
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