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草灌植被恢复提高坡地土壤水稳性团聚体和碳、氮含量的有效性:退耕年限的影响 被引量:15
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作者 刘文祥 李勇 于寒青 《植物营养与肥料学报》 CAS CSCD 北大核心 2016年第1期164-170,共7页
【目的】退耕还林还草是防治我国西部土壤侵蚀、恢复土壤肥力的最重要措施。本研究选择陕北黄土高原的神木、吴旗典型丘陵退耕还林还草区,研究不同退耕年限草(苜蓿)灌(沙棘)植被提高0—10 cm表层土壤有机碳、速效氮和全氮储量和各级土... 【目的】退耕还林还草是防治我国西部土壤侵蚀、恢复土壤肥力的最重要措施。本研究选择陕北黄土高原的神木、吴旗典型丘陵退耕还林还草区,研究不同退耕年限草(苜蓿)灌(沙棘)植被提高0—10 cm表层土壤有机碳、速效氮和全氮储量和各级土壤水稳性团聚体含量分布的有效性,旨在揭示退耕还林工程提高坡耕地土壤质量的有效性机理,为我国坡耕地土壤肥力提高措施的选择提供科学依据。【方法】应用空间替代时间的方法,选择土壤类型和坡度一致的三个不同退耕年限的全坡地景观(包括坡上部、坡中部和坡下部),采集土壤样品,分析有机碳等指标。【结果】草灌植被提高土壤有机碳、速效氮和全氮储量及土壤水稳性团聚体含量的效应随退耕年限的增加而增加;种植5年的沙棘林坡地土壤有机碳、全氮和速效氮储量相对于退耕前分别提高了1.4、0.5、0.3倍,种植10年以上沙棘林地分别提高了6.6、2.4、1.5倍;种植5年苜蓿使坡耕地土壤有机碳、全氮和速效氮储量分别提高了0.4、0.1、5.0倍,种植10年以上苜蓿地分别提高了0.7、0.3、5.2倍。种植5年和10年以上的沙棘林提高坡耕地土壤总有机碳的效应分别是种植5年和10年以上苜蓿的3.4和9.5倍;种植5年和10年以上的沙棘林提高坡地土壤全氮储量的效应分别比种植5年和10年以上苜蓿大9倍以上。坡耕地种植5年苜蓿提高土壤速效氮的效应是种植5年沙棘林的19.2倍,种植10年以上的苜蓿提高土壤速效氮的效应是种植10年以上沙棘林的3.4倍。沙棘林对土壤有机碳和全氮的提高效应显著大于苜蓿,而苜蓿对土壤速效氮含量的增加效应显著大于沙棘林。沙棘和苜蓿在提高坡地土壤有机碳和全氮储量的差异大小与退耕前坡地土壤有机碳和全氮储量水平有关,而土壤速效氮储量的差异与其根系的固氮功能差异密切相关,苜蓿根系固氮作用大于沙棘林,显著提高了土壤速效氮含量。种植5年和10年以上沙棘林使坡地土壤>0.25 mm水稳性团聚体含量分别增加了41%和56%,退耕还林植被提高>0.25 mm粒级土壤水稳性团聚体含量主要是对粒径为0.25 2 mm水稳性团聚体含量的增加效应。【结论】草灌植被在提高侵蚀坡地土壤有机碳、氮储量和稳定土壤结构方面具有重要作用,在选择提高我国坡耕地土壤肥力的措施时应该考虑这一作用。 展开更多
关键词 退耕还林还草 植被恢复年限 土壤碳、氮储量 水稳性团聚体 黄土高原
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Analysis on Variation of Soil Organic Carbon and Total Nitrogen Content and Carbon Storage in the Oasis Cotton Field of Manas River Valley
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作者 雷军 雷子莹 +1 位作者 林海荣 赵瑞海 《Agricultural Science & Technology》 CAS 2014年第3期499-502,共4页
Objective] The research aimed to study soil organic carbon and total ni-trogen distribution in oasis cotton farmland. [Method] With the oasis cotton field of Manas River Val ey in Tianshan Mountains as the research ar... Objective] The research aimed to study soil organic carbon and total ni-trogen distribution in oasis cotton farmland. [Method] With the oasis cotton field of Manas River Val ey in Tianshan Mountains as the research area and abandoned farmland as a control, the distribution characteristics of soil organic carbon and total nitrogen content in the cotton field of Manas River Val ey in the last 23 years were investigated by using geographic methods. [Result] Presenting vertical distribution, cotton soil organic carbon and total nitrogen content in Manas River Val ey de-creased with the increase of soil depth, and those in 0-30 cm soil layer was sig-nificantly higher than those in soil layer of below 30 cm, while organic carbon stor-age showed the trend of increase. Also in vertical distribution, soil organic carbon and total nitrogen decreased significantly with the increase of soil depth, and soil organic carbon content in abandoned farmland decreased month by month. Howev-er, cotton soil organic carbon storage firstly decreased and then increased in the oasis cotton field that in the early growth of cotton, soil organic carbon in the layers of 0-30 and 30-100 cm decreased to the lowest in the bloom stage, and then or-ganic carbon increased with the reproductive growth of cotton into the later stages. However, due to no input of plant litter in the abandoned farmland, the soil organic carbon storage decreased month by month. There were significantly differences be-tween oasis cotton field and abandoned farmland in organic carbon contents. [Con-clusion] The soil organic carbon content and total nitrogen content in oasis cotton field were significantly higher than those in the abandoned farmland. The soil organ-ic carbon storage increased in the layer of 0-30 cm, while there was no significant change of soil organic carbon and total nitrogen content in the layer of 30-100 cm, which was consistent with the previous study on the distribution characteristics of soil organic carbon and total nitrogen content profile. 展开更多
关键词 Oasis cotton field Soil organic carbon Total nitrogen content Soil or-ganic carbon storage
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Carbon and Nitrogen Storage in Inner Mongolian Grasslands: Relationships with Climate and Soil Texture 被引量:7
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作者 HE Nian-Peng WANG Ruo-Meng +1 位作者 ZHANG Yun-Hai CHEN Quan-Sheng 《Pedosphere》 SCIE CAS CSCD 2014年第3期391-398,共8页
Understanding the spatial variability of soil carbon (C) storage and its relationship with climate and soil texture is critical for developing regional C models and for predicting the potential impact of climate cha... Understanding the spatial variability of soil carbon (C) storage and its relationship with climate and soil texture is critical for developing regional C models and for predicting the potential impact of climate change on soil C storage. On the basis of soil data from a transect across the Inner Mongolian grasslands, we determined the quantitative relationships of C and nitrogen (N) in bulk soil and particle-size fractions (sand, silt, and clay) with climate and soil texture to evaluate the major factors controlling soil C and N storage and to predict the effect of climate changes on soil C and N storage. The contents of C and N in the bulk soil and the different fractions in the 0 20 and 20 40 cm soil layers were positively correlated with the mean annum precipitation (MAP) and negatively correlated with the mean annual temperature (MAT). The responses of C storage in the soil and particle-size fractions to MAP and MAT were more sensitive in the 0-20 cm than in the 2(~40 cm soil layer. Although MAP and MAT were both important factors influencing soil C storage, the models that include only MAP could well explain the variation in soil C storage in the Inner Mongolian grasslands. Because of the high correlation between MAP and MAT in the region, the models including MAT did not significantly enhance the model precision. Moreover, the contribution of the fine fraction (silt and clay) to the variation in soil C storage was rather small because of the very low fine fraction content in the Inner Mongolian grasslands. 展开更多
关键词 mean annual precipitation mean annual temperature native grassland particle-size fraction soil organic matter
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