长江流域资源与环境 >> 2020, Vol. 29 >> Issue (3): 687-695.doi: 10.11870/cjlyzyyhj2020030015

• 生态环境 • 上一篇    下一篇

宝天曼自然保护区土壤有机碳异质性及其影响因素

李理,朱文博,刘俊杰,张俊华,朱连奇*    

  1. (河南大学环境与规划学院,河南 开封,475004)

  • 出版日期:2020-03-20 发布日期:2020-03-20

Soil Organic Carbon Heterogeneity and Its Influencing Factors in Baotianman Nature Reserve

LI Li, ZHU Wen-bo, LIU Jun-jie, ZHANG Jun-hua, ZHU Lian-qi   

  1. (College of Environment and Planning, Henan University, Kaifeng 475004,China)

  • Online:2020-03-20 Published:2020-03-20

摘要: 摘要: 自然界中,土壤碳库对于维持生态系统碳平衡起决定性作用,而土壤有机碳又是碳库中不可或缺的一员,研究土壤有机碳对于全球生态系统碳平衡具有十分重大的意义。因此,基于宝天曼土壤有机碳实测数据并运用半方差函数、克里格插值分析山地土壤有机碳垂直性特征及空间分异程度,利用地理探测器对影响土壤有机碳分布的环境因子进行相关分析,结果表明:(1)宝天曼土壤有机碳介于0.31~7.7 g/kg,属于较低水平,最高值(7.70 g/kg)出现在北坡987 m处;(2)不同土层深度的半方差函数模型不同,0~20和40~60 cm 对高斯模型拟合效果更明显、20~40 cm对球状模型拟合效果较好,而线性模型对于60~80和80~100 cm 土层深度拟合效果较佳,克里格插值表明 0~20和20~40 cm空间分异特征相似,呈西南向东北增加的趋势,而40~60 cm土壤有机碳空间分异呈现东北高、西南低;(3)宝天曼不同土层深度受单个环境因子影响程度不同,解释力介于0.127~0.407,其中NDVI对0~20 cm土壤有机碳解释力最显著(0.407)、高程对40~60 cm土壤有机碳解释力最高(0.373),交互探测结果表明NDVI与坡度解释力最高、高程与其他因子交互探测后解释力显著增大,表明宝天曼土壤有机碳受多种环境因子共同影响,而非单一因素起决定性作用。

Abstract: Abstract:Soil carbon pool plays a decisive role in maintaining the carbon balance of the ecosystem, and soil organic carbon is an indispensable part of the carbon pool in nature. Therefore, the study of soil organic carbon is of great significance for the carbon balance of the global ecosystem. This paper uses semi-variance function and kriging interpolation to analyze the vertical characteristics and spatial differentiation of mountain soil organic carbon, and uses geographical detector to conduct correlation analysis on the environmental factors affecting the distribution of soil organic carbon based on the measured data of soil organic carbon in Baotianman. The results showed that: ① the soil organic carbon of Baotianman is between 0.31 and 7.7 g/kg, which is a low level. The highest value (7.70 g/kg) appears at 987 m of the north slope; ② for different soil depth of semivariance function model, 0-20 cm and 40-60 cm of gaussian model fitting effect is more apparent, 20-40 cm of the spherical model fitting effect is good, and the linear model for 60-80 cm and 80-100-cm soil depth better fitting effect. Kriging interpolation showed that the depths of 0-20 cm and 20-40 cm share similar space differentiation characteristics,increasing from the southwest to the northeast, and 40 to 60 cm around space differentiation in soil organic carbon is low in the southwest and high in the northeast;③ different soil depths in Baotianman are influenced by a single environmental factor in a different degree. The explanatory power is between 0.127 to 0.407, in which the NDVI shows the most significant explanatory power of soil organic carbon (0.407) in soil depth between 0-20 cm and elevation in soil depth between 40-60 cm (0.373). Interaction detection results show that the NDVI and slope explanatory power topped the list, elevation and and other factors increased significantly after interaction detection, indicating that soil organic carbon in Baotianman is influenced by many environmental factors, rather than a single factor.

No related articles found!
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] 解晓南,许朋柱,秦伯强. 太湖流域苏锡常地区地面沉降若干问题探析[J]. 长江流域资源与环境, 2005, 14(1): 125 -131 .
[2] 刘丙军,邵东国,阳书敏,曹卫锋. 基于灰关联熵的汉江中下游地区水资源分配模型和方法研究[J]. 长江流域资源与环境, 2005, 14(6): 699 -703 .
[3] 彭长青,冯金飞,卞新民. 基于遗传算法和GIS的县域水田种植制度空间布局优化[J]. 长江流域资源与环境, 2006, 15(1): 66 -70 .
[4] 王学雷,许厚泽,蔡述明. 长江中下游湿地保护与流域生态管理[J]. 长江流域资源与环境, 2006, 15(5): 564 -568 .
[5] 邹 君| 谢小立. 亚热带丘岗区地表水资源脆弱性评估及其管理——以衡阳盆地为例[J]. 长江流域资源与环境, 2007, 16(3): 303 .
[6] 刘传江,朱劲松. 三峡库区土地资源承载力现状与可持续发展对策[J]. 长江流域资源与环境, 2008, 17(4): 522 .
[7] 聂 坚, 白永平, 孙 克, 王世金. “红三角”地区城镇体系结构分形研究[J]. 长江流域资源与环境, 2008, 17(5): 673 .
[8] 罗专溪,朱波,汪涛,唐家良,王冬,辛伟. 紫色土坡地泥沙养分与泥沙流失的耦合特征[J]. 长江流域资源与环境, 2008, 17(3): 379 .
[9] 李 生,张守攻,姚小华,任华东. 黔中石漠化地区不同土地利用方式对土壤环境的影响[J]. 长江流域资源与环境, 2008, 17(3): 384 .
[10] 张盼盼,胡远满. 喀斯特石漠化及其景观生态学研究展望[J]. 长江流域资源与环境, 2008, 17(5): 808 .