Modeling dissolved organic carbon in temperate forest soils: TRIPLEX-DOC model development and validation

溶解有机碳 生物地球化学循环 环境科学 温带森林 浸出(土壤学) 土壤水分 生态系统 陆地生态系统 森林生态学 温带雨林 碳循环 水生生态系统 森林地面 土壤碳 环境化学 土壤科学 生态学 化学 生物
作者
Haibin Wu,Changhui Peng,Tim R. Moore,Hua Dong,C. Li,Qiuan Zhu,Matthias Peichl,M. Altaf Arain,Zhengtang Guo
出处
期刊:Geoscientific Model Development [Copernicus Publications]
卷期号:7 (3): 867-881 被引量:50
标识
DOI:10.5194/gmd-7-867-2014
摘要

Abstract. Even though dissolved organic carbon (DOC) is the most active carbon (C) cycling in soil organic carbon (SOC) pools, it receives little attention from the global C budget. DOC fluxes are critical to aquatic ecosystem inputs and contribute to the C balance of terrestrial ecosystems, but few ecosystem models have attempted to integrate DOC dynamics into terrestrial C cycling. This study introduces a new process-based model, TRIPLEX-DOC, that is capable of estimating DOC dynamics in forest soils by incorporating both ecological drivers and biogeochemical processes. TRIPLEX-DOC was developed from Forest-DNDC, a biogeochemical model simulating C and nitrogen (N) dynamics, coupled with a new DOC process module that predicts metabolic transformations, sorption/desorption, and DOC leaching in forest soils. The model was validated against field observations of DOC concentrations and fluxes at white pine forest stands located in southern Ontario, Canada. The model was able to simulate seasonal dynamics of DOC concentrations and the magnitudes observed within different soil layers, as well as DOC leaching in the age sequence of these forests. Additionally, TRIPLEX-DOC estimated the effect of forest harvesting on DOC leaching, with a significant increase following harvesting, illustrating that land use change is of critical importance in regulating DOC leaching in temperate forests as an important source of C input to aquatic ecosystems.
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