土壤碳
腐蚀
自行车
环境科学
土壤科学
水槽(地理)
碳循环
土壤流失
总有机碳
通用土壤流失方程
碳纤维
碳汇
水文学(农业)
土壤水分
环境化学
地质学
气候变化
生态学
化学
地貌学
林业
数学
地理
岩土工程
海洋学
生物
算法
地图学
生态系统
复合数
标识
DOI:10.1016/j.envsoft.2018.01.005
摘要
The soil erosion and associated lateral movement of eroded carbon (C) have been identified as a possible mechanism explaining the elusive terrestrial C sink of ca. 1.7–2.6 PgC yr−1. Here we evaluated the SWAT-C model for simulating long-term soil erosion and associated eroded C yields. Our method couples the CENTURY carbon cycling processes with a Modified Universal Soil Loss Equation (MUSLE) to estimate C losses associated with soil erosion. The results show that SWAT-C is able to simulate well long-term average eroded C yields, as well as correctly estimate the relative magnitude of eroded C yields by crop rotations. We also evaluated three methods of calculating C enrichment ratio in mobilized sediments, and found that errors associated with enrichment ratio estimation represent a significant uncertainty in SWAT-C simulations. Furthermore, we discussed limitations and future development directions for SWAT-C to advance C cycling modeling and assessment.
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