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焉耆盆地绿洲农田不同类型土壤有机碳空间分布特征及储量估算 被引量:6
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作者 史常明 柳洋 +3 位作者 张富荣 赵云飞 肖锦锦 汪霞 《干旱区研究》 CSCD 北大核心 2021年第3期672-681,共10页
土壤有机碳(SOC)是生态系统稳定性和农业生产力的基础,充分了解焉耆盆地绿洲不同土壤类型SOC分布特征,对实现农业系统可持续发展具有重要意义。以新疆焉耆盆地绿洲长期定点试验的监测数据为基础,利用生物地球化学模型(DNDC)进行模拟试验... 土壤有机碳(SOC)是生态系统稳定性和农业生产力的基础,充分了解焉耆盆地绿洲不同土壤类型SOC分布特征,对实现农业系统可持续发展具有重要意义。以新疆焉耆盆地绿洲长期定点试验的监测数据为基础,利用生物地球化学模型(DNDC)进行模拟试验,研究在当前的田间管理和气候模式下,焉耆盆地绿洲农田土壤有机碳密度(SOCD)和土壤有机碳储量(SOCS)的空间分布特征,并探究了在不同的土壤类型下SOCD和SOCS的差异性。结果表明:(1)DNDC模型能够很好的模拟该区域下SOC及其动态变化,模型相关系数(r)>92.75%,相对误差(E)介于2.98%~4.12%,<5%,模型的可靠性较高。(2)2018年焉耆盆地绿洲农田0~20 cm SOCD介于12000~28000 kg·hm^(-2),SOCS为2414 Gg,不同区域之间的差异较为明显。(3)不同的土壤类型之间,SOCD和SOCS差异明显,其中沼泽土的SOCD最大,为25136 kg·hm^(-2);石质土的SOCD最小,为13335 kg·hm^(-2)。 展开更多
关键词 土壤有机碳 DNDC模型 焉耆盆地绿洲 土壤类型 有机碳储量 农田土壤
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Comparison of Prairie and Eroded Agricultural Lands on Soil Organic Carbon Retention (South Dakota)
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作者 K. R. Olson A. N. Gennadiyev +1 位作者 R. G. Kovach T. E. Schumacher 《Open Journal of Soil Science》 2014年第4期136-150,共15页
The primary objective of this research was to predict changes in soil organic carbon (SOC) and total soil nitrogen (TSN) stocks as a result of land use change from prairie to agricultural land if the mesic-frigid temp... The primary objective of this research was to predict changes in soil organic carbon (SOC) and total soil nitrogen (TSN) stocks as a result of land use change from prairie to agricultural land if the mesic-frigid temperature line moved north in the US and the former frigid soils were cultivated. The conversion of prairie to agricultural use, as a result of climate shift, would release SOC to atmosphere and enhance greenhouse gas emissions. The SOC and TSN differences between the prairie site and agricultural land were compared in South Dakota. The agricultural land had 18% less SOC and 16% less TSN or only half of the expected loss from prairie levels. An attempt was made to document the land use history of the prairie site to understand why SOC and TSN losses were less than anticipated. The fly ash concentration levels on prairie side slopes suggested that the prairie was historically disturbed and eroded. Intensive grazing and burning contributed to the disturbance. The SOC and TSN stock losses appear to represent the minimal change that would occur in the next 100-year time period if a prairie was shifted to agricultural use as a result of climate shift and the mesic-frigid temperature line in US was to move north. 展开更多
关键词 oil organic carbon FLY ASH Erosion PRAIRIE Cultivation GRAZING
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