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高潜水位煤矿区完整复垦周期的土壤碳演变特征 被引量:7
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作者 李奇超 李新举 闵祥宇 《水土保持学报》 CSCD 北大核心 2018年第4期204-209,215,共7页
在济宁高潜水位矿区的充填复垦区内,分析完整复垦周期的土壤碳演变特征。通过从塌陷地(M1)、复垦年限为0,3年的复垦耕地(M2、M3)以及正常耕地(M4)采集土样并检测土壤全碳(TC)、有机碳(SOC)、有机碳密度(SOCD)、有机碳组分(WDOC、POC、MO... 在济宁高潜水位矿区的充填复垦区内,分析完整复垦周期的土壤碳演变特征。通过从塌陷地(M1)、复垦年限为0,3年的复垦耕地(M2、M3)以及正常耕地(M4)采集土样并检测土壤全碳(TC)、有机碳(SOC)、有机碳密度(SOCD)、有机碳组分(WDOC、POC、MOC、LFOC、HFOC、MBC)及稳定性同位素(δ13C),研究不同复垦周期阶段下土壤碳空间特征的变化情况。研究表明:(1)塌陷地的TC、SOC、SOCD和各有机碳组分含量较低。经过复垦措施期后,SOCD在复垦当年就恢复到正常耕地的水平,TC和SOC含量随着复垦年限不断增加。WDOC、POC、LFOC、MBC等组分恢复速率较快,MOC和HFOC恢复周期较长。(2)TC、SOC、SOCD和各有机碳组分的恢复速率随着土层深度的增加逐渐减缓。(3)复垦土壤的δ13 C均值在不同深度间的差异较小,而标准差和变异系数偏大,说明复垦土壤层次不明显且同一层次间土壤来源混乱。从整个复垦周期来看,复垦工作虽具有"碳汇"作用,但会对土壤层次造成破坏。建议进行塌陷地治理时,尽量采用对土层扰动较小的复垦方式,对表土剥离和回填工序进行优化和监督,从而达到更好的恢复效果。 展开更多
关键词 高潜水位 充填复垦 复垦周期 土壤碳演变
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Temporal Evolution of Carbon Storage in Chinese Tea Plantations from 1950 to 2010 被引量:7
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作者 ZHANG Min CHEN Yonggen +4 位作者 FAN Dongmei ZHU Qing PAN Zhiqiang FAN Kai WANG Xiaochang 《Pedosphere》 SCIE CAS CSCD 2017年第1期121-128,共8页
Tea (Camellia sinensis), an economically important crop grown in mountain regions, has been planted for thousands of years in South China. Tea plantations can potentially act as carbon (C) sink in local agrosystem... Tea (Camellia sinensis), an economically important crop grown in mountain regions, has been planted for thousands of years in South China. Tea plantations can potentially act as carbon (C) sink in local agrosystems due to their high plant biomass and provide soil conservation service. To assess the contribution of tea plantations to C sequestration, the chronosequence variations of C storage were assessed in the plants and soils (0-20 cm) of tea plantations in China from 1950 to 2010, and then the inter-annual and decadal variabilities of total C storage were estimated. TotM C stocks in tea plants and soils in 2010 were 34.4 and 93.45 Tg, respectively. Carbon sequestration from 1950 to 2010 was 30.6 and 39.0 Tg in the plants and soils, respectively. The highest C sequestration happened during the 1980s and the lowest during the 1950s. The decadal average C sequestration rate ranged from 20.4 to 113.9 g m2 year-1 in the standing tea plants, and from 54.6 to 98.8 g m-2 year-1 in soils during the period of 1950 to 2010. The average ratio of C storage in soils to that in plants was 3.00 ± 0.35 before 1970 and 2.44 ±0.18 after 1970. The results suggested that tea plantation ecosystems made an important contribution to the C sinks in Chinese tea-producing regions. 展开更多
关键词 Camellia sinensis carbon sequestration carbon stock economic crop plantation age plant biomass
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