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风沙区樟子松容器育苗技术
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作者 付志芬 《陕西林业》 2001年第1期22-22,共1页
樟子松是风沙区造林的优良针叶树种之一。其适应性强,根系发达,抗风沙,沙地上根系生长能随着风蚀而向地下土壤扎根,并形成支柱根,以防风倒,能耐-40℃以下的低温和干旱瘠薄的土壤。适应樟子松幼苗正常生长的PH值为4.5~5.5,但切忌盐碱地。
关键词 风沙区造林 樟子松 客器育苗 整地 苗期管理 播种
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武威北部沙区“2次挖穴3次灌水”造林技术
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作者 连世俭 黄俊英 《中文科技期刊数据库(全文版)农业科学》 2021年第11期282-283,共2页
采用“2次挖穴3次灌水”技术补墒造林,能明显提高干旱风沙区造林成活率。文章对“2次挖穴3次灌水”造林技术关键环节和主要措施、适用条件及相关措施进行了详细介绍。
关键词 风沙区造林 2次挖穴3次灌水 技术措施
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Change of Soil Organic Carbon after Cropland Afforestation in ′Beijing-Tianjin Sandstorm Source Control′ Program Area in China 被引量:6
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作者 ZENG Xinhua ZHANG Wanjun +6 位作者 LIU Xiuping CAO Jiansheng SHEN Huitao ZHAO Xin ZHANG Nan-nan BAI Yuru Yi Mei 《Chinese Geographical Science》 SCIE CSCD 2014年第4期461-470,共10页
Land use change is one of the major factors that affect soil organic carbon (SOC) variation and global carbon balance. However, the effects of land use change on SOC are always variable. In this study, using a serie... Land use change is one of the major factors that affect soil organic carbon (SOC) variation and global carbon balance. However, the effects of land use change on SOC are always variable. In this study, using a series of paired-field experiments, we estimated the effects of revegetation types and environmental conditions on SOC stock and vertical distribution after replacement of cropland with poplar (Populus tomentosa) and korshinsk peashrub (Caragana korshinskt'i) in three climate regions (Chifeng City, Fengning City and Datong City of the 'Beijing-Tianjin Sandstorm Source Control' (BTSSC) program area. The results show that SOC sequestration rate ranges from 0.15 Mg/(ha-yr) to 3.76 Mg/(ha-yr) in the soil layer of 0-100 cm in early stage after cropland afforestation in the BTSSC program area. The SOC accumulation rates are the highest in Fengning for both the two vegetation types. Compared to C. korshinskii, P tomentosa has greater effects on SOC accumulation in the three climate regions, but significantly greater effect only appears in Datong. The SOC density increases by 20%-111% and 15%-59% for P. tomentosa and 9%-63% and 0-73% for C. korshinskii in the 0-20 cm and 20-100 cm soil layers, respectively. Our results indicate that cropland afforestation not only affects SOC stock in the topsoil, but also has some effects on subsoil carbon. However, the effect of cropland afforestation on SOC accumulation varied with climate regions and revegetation types. Considering the large area of revegetation and relatively high SOC accumulation rate, SOC sequestration in the BTSSC program should contribute significantly to decrease the CO2 concentration in the atmosphere. 展开更多
关键词 soil organic carbon (SOC) cropland afforestation soil profile carbon sequestration Beijing-Tianjin Sandstorm SourceControl program
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