首页> 外文期刊>Geoderma: An International Journal of Soil Science >Spatial variability of soil total nitrogen and soil total phosphorus under different land uses in a small watershed on the Loess Plateau, China
【24h】

Spatial variability of soil total nitrogen and soil total phosphorus under different land uses in a small watershed on the Loess Plateau, China

机译:黄土高原小流域不同土地利用方式下土壤总氮和总磷的空间变异性

获取原文
获取原文并翻译 | 示例
           

摘要

The spatial variability of soil total nitrogen (STN) and soil total phosphorus (STP) levels, which may be greatly affected by land use, plays an important role in both agriculture and the environment, especially with regard to soil fertility, soil quality, and water-body eutrophication. Little research has been done that addresses the spatial patterns of STN and STP under different land use types at a watershed scale. We collected 689 soil surface (0-20 cm) samples, using a grid sampling design, from the Liudaogou watershed (6.89 km(2)) on the Loess Plateau of North China. Using classical statistical and geostatistical methods, we characterized and compared the spatial heterogeneities of STN and STP under different land use types (farmland, grassland, and shrubland).Concentrations of STN and STP were normally distributed with the exception of STP in grassland, and decreased in the order: farmland > grassland > shrubland. Stepwise multiple regression analysis indicated a strong relationship between STN and soil organic carbon (which was mainly controlled by plant growth and microbial activity), while STP was associated with the content of finer soil particles (which absorb P more readily and whose distribution is related to slope aspect and altitude). Both STN and STP showed moderate variability under different land use types. Nugget ratios for STN showed a moderate spatial dependence and decreased in the order: farmland > grassland > shrubland, whereas STP increased in that order and showed strong, moderate, and weak spatial dependence, respectively. The type of optimal theoretical isotropy models differed for STN and STP as well as for the land use type. We concluded that spatial patterns of STN and STP would change significantly with land use changes currently being implemented to achieve sustainable agriculture development and environmental restoration. Taking land use type into account when considering the spatial variation of STN and STP would increase the accuracy in modeling and prediction of soil nutrient status and nutrient movement at the watershed scale.
机译:土壤总氮(STN)和土壤总磷(STP)水平的空间变异性可能受土地利用的影响很大,在农业和环境中都起着重要作用,尤其是在土壤肥力,土壤质量和土壤质量方面。水体富营养化。关于分水岭规模下不同土地利用类型下的STN和STP的空间格局的研究很少。我们使用网格采样设计从华北黄土高原的六道沟流域(6.89 km(2))收集了689个土壤表面(0-20厘米)样本。我们使用经典的统计和地统计学方法,对不同土地利用类型(农田,草地和灌木丛)下STN和STP的空间异质性进行了表征和比较。顺序为:农田>草地>灌木丛。逐步多元回归分析表明,STN与土壤有机碳之间有很强的关系(主要受植物生长和微生物活性控制),而STP与土壤细颗粒的含量相关(土壤颗粒更容易吸收P,且其分布与土壤有机碳相关)。坡度和高度)。 STN和STP在不同的土地利用类型下均表现出中等的变异性。 STN的金块比显示出中等的空间依赖性,并且依次降低:农田>草地>灌木丛,而STP依次增加,分别显示出强,中和弱的空间依赖性。 STN和STP以及土地利用类型的最佳理论各向同性模型的类型有所不同。我们得出结论,随着目前正在实施的土地利用变化以实现可持续农业发展和环境恢复,STN和STP的空间格局将发生显着变化。在考虑STN和STP的空间变化时考虑到土地利用类型,将提高在模型化和预测中的土壤养分状况和流域尺度上养分运移的准确性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号