首页> 外文期刊>Pedosphere: A Quarterly Journal of Soil Science >Modeling carbon dynamics in paddy soils in Jiangsu Province of China with soil databases differing in spatial resolution.
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Modeling carbon dynamics in paddy soils in Jiangsu Province of China with soil databases differing in spatial resolution.

机译:利用空间分辨率不同的土壤数据库模拟中国江苏省稻田土壤的碳动态。

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A number of process-based models have been developed for quantifying carbon (C) sequestration in agro-ecosystems. The DeNitrification-DeComposition (DNDC) model was used to simulate and quantify long-term (1980-2008) soil organic carbon (SOC) dynamics in the important rice-producing province, Jiangsu, China. Changes in SOC storages were estimated from two soil databases differing in spatial resolution: a county database consisting of 68 polygons and a soil patch-based database of 701 polygons for all 3.7 Mha of rice fields in Jiangsu. The simulated SOC storage with the coarse resolution county database ranged between 131.0-320.6 Tg C in 1980 and 170.3-305.1 Tg C in 2008, respectively, while that estimated with the fine resolution database was 201.6 and 216.2 Tg C in 1980 and 2008, respectively. The results modeled with the soil databases differing in spatial resolution indicated that using the soil input data with higher resolution substantially increased the accuracy of the modeled results; and when lacking detailed soil datasets, the DNDC model, parameterized with the most sensitive factor (MSF) method to cope with attribute uncertainty, could still produce acceptable results although with deviations of up to 60% for the case study reported in this paper.
机译:已经开发了许多基于过程的模型来量化农业生态系统中的碳(C)隔离。使用脱硝分解分解(DNDC)模型来模拟和量化重要的水稻生产省,江苏省的长期(1980-2008)土壤有机碳(SOC)动态。 SOC储量的变化是通过空间分辨率不同的两个土壤数据库估算出来的:江苏所有3.7 Mha稻田的县数据库(包含68个多边形)和基于土壤斑块的701个多边形的数据库。粗分辨率县级数据库的模拟SOC储量范围分别在1980年的131.0-320.6 Tg C和2008年的170.3-305.1 Tg C之间,而用高分辨率的数据库估计的SOC储量在1980年和2008年分别为201.6 Tg C和216.2 Tg C 。使用空间分辨率不同的土壤数据库进行建模的结果表明,使用分辨率更高的土壤输入数据会大大提高建模结果的准确性;当缺乏详细的土壤数据集时,使用最敏感因子(MSF)方法进行参数化处理以解决属性不确定性的DNDC模型仍然可以产生可接受的结果,尽管本文报道的案例研究的偏差高达60%。

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