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上海主要经果林生态系统碳储量及其分布格局

郭雪艳1,蔡婷1,段秀文1,韩玉洁2,黄丹2,达良俊1,3,4**   

  1. 1华东师范大学环境科学系, 上海 200241; 2上海市林业总站, 上海 200072; 3上海市城市化生态过程与生态修复重点实验室, 上海 200241; 4浙江天童森林生态系统国家野外科学观测研究站, 浙江宁波 315114)
  • 出版日期:2013-11-10 发布日期:2013-11-10

Carbon storage and distribution pattern in main economic fruit forest ecosystems in Shanghai, East China.

GUO Xue-yan1, CAI Ting1, DUAN Xiu-wen1, HAN Yu-jie2, HUANG Dan2, DA Liang-jun1,3,4**   

  1. (1Department of Environmental Science, East China Normal University, Shanghai 200241, China; 2Shanghai Forestry Station, Shanghai 200072, China; 3Shanghai Key Lab for Urban Ecological Processes and EcoRestoration, East China Normal University, Shanghai 200241, China; 4Tiantong Forest Ecosystem National Research Station, Ningbo 315114, Zhejiang, China)
  • Online:2013-11-10 Published:2013-11-10

摘要:

经果林作为重要经济林林种,约占上海林地总面积1/5,在上海森林生态系统碳汇评价中占有重要地位。以上海分布面积较大的桃园和桔园生态系统为研究对象,构建了两个主要树种生物量和生产力方程,并对其植被层碳储量、土壤碳储量以及乔木层年净固碳量进行估测。结果表明,两个树种基径与生物量和生产力方程拟合效果均较好(R2>0.9);桃园与桔园生态系统平均碳密度分别为118.31和86.31 t· hm-2,年平均净生产力分别为4.87和6.51 t·hm-2·a-1,其中乔木层碳储量分别占13.4%和27.3%;草本层碳储量分别占1.0%和1.3%,土壤层碳储量(0~60 cm)分布分别占85.6%和71.4%。
 

关键词: 氧同位素, 耳石, 碳同位素, 四川裂腹鱼

Abstract: As an important part of commercial forest, economic fruit forest occupies nearly onefifth of Shanghai’s total forest land area, playing an important role in the evaluation of carbon sink of forest ecosystems in Shanghai. Taking the peach orchard and citrus orchard ecosystems with large distribution areas in Shanghai as the objects, and based on the biomass investigation, the biomass and net productivity equations for the two main tree species in the orchard ecosystems were established, and the carbon storage in the vegetation layers and soil as well as the annual net carbon sequestration in tree layer was calculated. There was a good fitting effect of the established equations on the basal diameter of the two main tree species (R2>0.9). In the peach orchard and citrus orchard ecosystems, the carbon storage was averagely 118.31 and 86.31 t·hm-2, and the annual net productivity was averagely 4.87 and 6.51 t·hm-2·a-1, respectively. Among the carbon storage in the peach orchard and citrus orchard ecosystems, tree layer accounted for 13.4% and 27.3%, herb layer accounted for 1.0% and 1.3%, and soil accounted for 85.6% and 71.4%, respectively.

Key words: otolith, carbon stable isotope, Schizothorax kozlovi, oxygen stable isotope.