节点文献

黄土高原区典型植被枯落物蓄积量空间变化特征

Spatial variation of typical plant litters in the Loess Plateau

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 栾莉莉张光辉孙龙刘法王浩

【Author】 Luan Lili;Zhang Guanghui;Sun Long;Liu Fa;Wang Hao;School of Geography,Beijing Normal University;Institute of Soil and Water Conservation Chinese Academy of Science & Minister of Water Resources;

【机构】 北京师范大学地理学与遥感科学学院中国科学院水利部水土保持研究所

【摘要】 为探讨区域尺度上枯落物蓄积量的空间分布特征及其影响因素,在黄土丘陵区按照年降水量梯度,从南到北依次选择7个调查样点,对典型乔木群落、灌木群落和草本群落枯落物蓄积量进行了系统调查。结果表明:3种植被群落枯落物蓄积量差异显著(P<0.05),且乔木群落(440.5~840.1 g/m2)>灌木群落(105.9~217.9 g/m2)>草本群落(12.2~67.6 g/m2);在坡面尺度上,枯落物蓄积量受地形条件影响显著,乔木群落、灌木群落和草本群落阴坡的枯落物比阳坡分别多14.9%,39.3%和27.5%,且坡下大于坡中、大于坡顶;在区域尺度上,从南到北,枯落物蓄积量表现出减小趋势,乔木、灌木和草本群落分别从808.6、145.1、67.6 g/m2减少到478.7、118.6、12.2 g/m2,枯落物蓄积量随年均降水量的增加而增大,且与温度、郁闭度、密度、地上生物量和海拔间存在显著相关关系,拟合的枯落物蓄积量方程效率系数>0.61,能够较好地模拟黄土丘陵区典型植被枯落物蓄积量。

【Abstract】 Severe soil and water loss in the Loess Plateau caused by the most highly erodible soil,inappropriate land use and low vegetation cover,pose a great pressure to the sustainability of agroecosystem and society and economy. Great efforts have been made to restore vegetation cover to reduce soil and water loss in the Loess Plateau over the past several decades. Consequently,the near soil surface characteristics( e. g. soil properties,biomass production,plant litter,and root system) have been changed significantly. Plant litter is effective in reducing soil and water loss by enhancing water infiltration,retarding the velocity of overland flow and increasing the water holding capacity. The weight of accumulated plant litter is of spatial heterogeneity,but so far few studies have been conducted to quantify the distribution of plant litter accumulation among different slope positions and on a regional scale. Therefore,in order to investigate the spatial distribution patterns and influencing factors of weight of accumulated plant litter on a regional scale,seven survey sites were selected from south to north in the Loess Plateau along the decreasing gradient of mean annual precipitation. The mass of accumulated plant litter of typical species of arbor,shrub,and herb among different slope positions were investigated and the influencing factors including mean annual precipitation, mean annual temperature, altitude,aboveground biomass,vegetation density and canopy density were analyzed. The result showed that the differences of the weight of accumulated plant litter among typical species of arbor,shrub,and herb weresignificant with the litter mass ranked as arbor( 440. 5 ~ 840. 1 g / m2) > shrub( 105. 9 ~ 217. 9 g /m2)> herb( 12. 2 ~ 67. 6 g / m2). The weight of accumulated plant litter was significantly affected by the terrain conditions. The weights of accumulated plant litter of arbor,shrub,and herb communities at the shady slope were 14. 9%,39. 3%,and 27. 5% more than that at the sunny slope. The weight of accumulated plant litter in the middle slopes was greater than that in the base and the top of the slopes.The weight of accumulated plant litter showed a decreasing trend with the altitude increasing and the accumulated litterfall of arbor,shrubs,and herbs were reduced from 808. 6 g / m2,145. 1 g /m2,and67. 6 g / m2 to 478. 7 g / m2,118. 6 g /m2,and 12. 2 g /m2,respectively. The weight of accumulated plant litter increased with the mean annual precipitation,and was significantly correlated with the mean annual temperature,canopy density,vegetation density,aboveground biomass and altitude. The fitting equations well predicted the weight of accumulated plant litter of typical plants in the Loess Plateau. The Nash coefficients of the fitting equations were greater than 0. 61. The results are helpful to understanding the spatial distribution patterns of accumulated plant litter and its influencing factors and evaluating the soil and water conservation and ecological benefits of vegetation restoration in the Loess Plateau.

【基金】 国家自然科学基金“输沙对坡面侵蚀的影响及其水动力学机理研究”(41271287);国家自然科学基金创新研究群体项目“地表过程模型与模拟”(41321001);国家自然科学基金重点项目“退耕驱动近地表特性变化对侵蚀过程的影响及其动力机制”(41530858)
  • 【文献出处】 中国水土保持科学 ,Science of Soil and Water Conservation , 编辑部邮箱 ,2015年06期
  • 【分类号】S714
  • 【被引频次】27
  • 【下载频次】395
节点文献中: 

本文链接的文献网络图示:

本文的引文网络