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Losses of Soil Organic Carbon and Nitrogen and Their Mechanisms in the Desertification Process of Sandy Farmlands inHorqin Sandy Land 被引量:3
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作者 SU Yong-zhong and ZHAO Ha-lin(Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences,Lanzhou 730000 , P. R. China) 《Agricultural Sciences in China》 CAS CSCD 2003年第8期890-897,共8页
Soil organic carbon(SOC)and total nitrogen(N)concentrations from bulk soils and soil particle size fractions in the different extent of desertified farmlands(potential, light, medium, severe, and most severe desertifi... Soil organic carbon(SOC)and total nitrogen(N)concentrations from bulk soils and soil particle size fractions in the different extent of desertified farmlands(potential, light, medium, severe, and most severe desertified farmlands)were examined to quantitatively elucidate losses of carbon and nitrogen and its mechanisms in the desertification process. Particle size fractions(2 -0.1 mm, 0.1 - 0.05 mm, <0.05 mm)were obtained by granulometric wet sieving from 30 sandy soils(0 - 15cm depth)of different desertified extent. It was shown that soil physical stability index(St)in most severe desertified farmlands was 5 -7% and St in other farmlands was less than 5 %, which contributed to very low soil organic matter content. This was the intrinsic cause that sandy farmlands in Horqin sandy land was subject to risk of desertification. Desertification resulted in considerable losses of SOC and N. Regression analysis indicated that SOC and N content reduced 0.169 g kg-1 and 0.0215 g kg-1 respectively with one percent loss of soil silt and clay content. Losses of SOC and N were mostly the removal of fine particle size fractions(silt and clay, and a less extent very fine sand)from the farmlands by wind erosion, which were rich in organic matter and nutrients, as well as the depletion of organic C and N associated with coarse particles(>0. 05 mm)in desertification process. The concentrations of C and N associated with sand(2 - 0.1 mm and 0.1 - 0.05 mm)significantly decreased with increase of desertified extent. Silt and clay associated C and N concentrations, however, were less changed, and in contrast, were higher in soils under most severe desertified extent than in soils under potential and severe desertified extent. The percentage of distribution in sand(>0.05 mm)associated C and N significantly increased with increase of desertified extent, suggesting that stability of SOC decreased in the desertification process. 展开更多
关键词 farmland desertification soil organic carbon total nitrogen mechanisms of losses
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农田沙漠化过程中土壤有机碳和氮的衰减及其机理研究 被引量:74
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作者 苏永中 赵哈林 《中国农业科学》 CAS CSCD 北大核心 2003年第8期928-934,共7页
测定了科尔沁沙地不同沙化程度农田 0~ 15cm耕层土壤粒级分布、有机碳 (SOC)和全氮 (N)含量 ,并应用土壤粒级物理分组方法对农田土壤各粒级组分 (2~ 0 .1、0 .1~ 0 .0 5、<0 .0 5mm)中SOC和氮的含量、富集系数、分配比例进行了研... 测定了科尔沁沙地不同沙化程度农田 0~ 15cm耕层土壤粒级分布、有机碳 (SOC)和全氮 (N)含量 ,并应用土壤粒级物理分组方法对农田土壤各粒级组分 (2~ 0 .1、0 .1~ 0 .0 5、<0 .0 5mm)中SOC和氮的含量、富集系数、分配比例进行了研究 ,以揭示沙漠化过程中碳、氮衰减的机理。结果表明 ,沙地农田土壤物理稳定性指数大都低于5 % ,是土壤易发生风蚀沙化的内因。沙漠化过程中SOC和氮衰减的机理 ,一方面是与粘粉粒和部分极细沙结合的稳定态的有机碳和氮直接被吹蚀 ,粘粉粒吹蚀 1% ,SOC和全氮含量分别下降 0 .16 9g·kg-1和 0 .0 2 15g·kg-1;另一方面是与沙粒结合的颗粒有机碳 (ParticulateOrganicCarbon ,POC)形成量减少 ,沙漠化程度每增加 1级 ,POC、全氮含量分别下降 0 .4 3g·kg-1和 0 .0 5 9g·kg-1。 展开更多
关键词 农田沙漠化 土壤有机质 衰减机理 科尔沁沙地 耕层土壤 粒级分布
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典型岩溶区不同退耕还林地对土壤有机碳和氮素积累的影响 被引量:10
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作者 唐夫凯 周金星 +2 位作者 崔明 刘玉国 雷荣刚 《北京林业大学学报》 CAS CSCD 北大核心 2014年第2期44-50,共7页
为揭示岩溶区不同退耕还林地对土壤有机碳和氮素积累的影响,在花江峡谷地区采集典型坡耕地(Ⅰ)、撂荒地(Ⅱ)、坡耕地退耕后种植车桑子(Ⅲ)、油桐(Ⅳ)和椿树(V)5类样地的土壤剖面样品,对有机碳、全氮的含量与密度进行了研究... 为揭示岩溶区不同退耕还林地对土壤有机碳和氮素积累的影响,在花江峡谷地区采集典型坡耕地(Ⅰ)、撂荒地(Ⅱ)、坡耕地退耕后种植车桑子(Ⅲ)、油桐(Ⅳ)和椿树(V)5类样地的土壤剖面样品,对有机碳、全氮的含量与密度进行了研究。结果表明:1)研究区表层土壤有机碳和全氮含量均表现为:椿树林地和油桐林地含量差异不显著(P〉0.05),椿树和油桐林地显著高于车桑子林地、撂荒地及坡耕地(P〈0.01);2)土壤有机碳、全氮含量及其密度均随土层深度增加而降低,0~20cm层土壤有机碳和全氮密度分别占整个剖面的36.84%~46.01%和35.63%~44.50%,表现出明显的表聚性;3)研究区有机质分解较为容易、氮素矿质化作用明显,土壤C/N介于9.79~13.59之间,C/N水平总体偏低,并且表现为除坡耕地外,4种退耕还林地C/N均随土层深度增加而降低;4)5种土地利用类型土壤有机碳、全氮含量均与碱解氮、全磷和速效钾含量呈极显著正相关(P〈0.01),土壤有机碳、全氮含量与pH值呈负相关(P〉0.05)。植被类型和人类活动是影响有机碳和全氮含量的关键因子,研究区坡耕地退耕后土壤有机碳、全氮的含量和密度均增加,表现了退耕还林还草促进土壤碳库和氮库积累的作用。 展开更多
关键词 岩溶石漠化 高原峡谷 退耕还林 有机碳 全氮 碳氮比
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