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基于稳定同位素技术的土壤碳循环研究进展 被引量:22
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作者 许文强 陈曦 +1 位作者 罗格平 冯异星 《干旱区地理》 CSCD 北大核心 2014年第5期980-987,共8页
植物和土壤是陆地生态系统的重要碳库,而碳同位素技术对各碳库中碳元素的迁移具有很好的指示作用,能够为碳转化研究提供有力证据。以往研究土壤碳循环主要是针对有机碳,较少考虑无机碳的作用,但干旱区土壤无机碳在区域碳循环过程中的贡... 植物和土壤是陆地生态系统的重要碳库,而碳同位素技术对各碳库中碳元素的迁移具有很好的指示作用,能够为碳转化研究提供有力证据。以往研究土壤碳循环主要是针对有机碳,较少考虑无机碳的作用,但干旱区土壤无机碳在区域碳循环过程中的贡献日益显著,因此干旱区土壤碳循环研究必须同时考虑土壤有机碳和无机碳的行为。基于碳稳定同位素技术的土壤有机碳循环研究和土壤无机碳动态及其碳同位素研究进展,探讨土壤无机碳与有机碳的转化关系,并对干旱区土壤碳循环研究进行展望,期望从稳定同位素生态学的角度探讨干旱区土壤有机碳和无机碳的转化关系,以推动干旱区土壤碳循环研究,揭示干旱区碳循环过程及其在全球碳循环中的作用。 展开更多
关键词 碳稳定同位素 c3和c4植被 δ13c富集 发生性碳酸盐 土壤cO2
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天山北坡土壤有机碳δ^13C组成随海拔梯度的变化 被引量:3
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作者 许文强 罗格平 +2 位作者 陈曦 冯异星 李超凡 《同位素》 CAS 2016年第3期140-145,共6页
本文选择天山北坡三工河流域作为研究区,基于碳稳定同位素技术,分析土壤有机碳(SOC)δ^(13)C值随降雨量的变化,研究不同海拔梯度土壤剖面δ^(13)C值随采样深度的变化。结果显示,三工河流域降雨量在300mm以下的采样点,SOCδ^(13)C值随降... 本文选择天山北坡三工河流域作为研究区,基于碳稳定同位素技术,分析土壤有机碳(SOC)δ^(13)C值随降雨量的变化,研究不同海拔梯度土壤剖面δ^(13)C值随采样深度的变化。结果显示,三工河流域降雨量在300mm以下的采样点,SOCδ^(13)C值随降雨量的增加呈递减趋势(R2=0.97),而降雨量在300mm^500mm的采样点,δ^(13)C值随降雨量变化不明显(R2=0.04);三工河流域纯C3植物采样点土壤剖面δ^(13)C值随采样深度呈现明显的富集效应,即土壤剖面下层δ^(13)C值大于上层,其平均差值为1.01‰,与其他相关区域研究结果一致;而沙质荒漠和土质荒漠采样点剖面下层与上层SOCδ^(13)C平均差值为4.33‰,其变化趋势与纯C3植物采样点相反,且其表层δ^(13)C值接近C4植物来源,底层接近C3植物来源,推断其地上历史植被可能经历了由C3到C4的演替过程。 展开更多
关键词 碳同位素 δ^13c c3和c4植物 δ^13c富集效应 三工河流域
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Unexpectedly low δ^(13)C in leaves,branches,stems and roots of three acacia species growing in hyper-arid environments
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作者 Daphna Uni Elli Groner +7 位作者 Elaine Soloway Amgad Hjazin Spencer Johnswick Gidon Winters Efrat Sheffer Ido Rog Yael Wagner Tamir Klein 《Journal of Plant Ecology》 SCIE CSCD 2021年第1期117-131,共15页
Aims In plant eco-physiology,less negative(enriched)carbon 13(^(13)C)in the leaves indicates conditions of reducing leaf gas exchange through stomata,e.g.under drought.In addition,^(13)C is expected to be less negativ... Aims In plant eco-physiology,less negative(enriched)carbon 13(^(13)C)in the leaves indicates conditions of reducing leaf gas exchange through stomata,e.g.under drought.In addition,^(13)C is expected to be less negative in non-photosynthetic tissues as compared with leaves.However,these relationships inδ^(13)C from leaves(photosynthetic organs)to branches,stems and roots(non-photosynthetic organs)are rarely tested across multiple closely related tree species,multiple compartments,or in trees growing under extreme heat and drought.Methods We measured leaf-to-root^(13)C in three closely related desert acacia species(Acacia tortilis,A.raddiana and A.pachyceras).We measuredδ^(13)C in leaf tissues from mature trees in southern Israel.In parallel,a 7-year irrigation experiment with 0.5,1.0 or 4.0 L day1 was conducted in an experimental orchard.At the end of the experiment,growth parameters andδ^(13)C were measured in leaves,branches,stems and roots.Important Findings Theδ^(13)C in leaf tissues sampled from mature trees was ca.-27‰,far more depleted than expected from a desert tree growing in one of the Earth's driest and hottest environments.Across acacia species and compartments,δ^(13)C was not enriched at all irrigation levels(-28‰to ca.-27‰),confirming our measurements in the mature trees.Among compartments,leafδ^(13)C was unexpectedly similar to branch and rootδ^(13)C,and surprisingly,even less negative than stemδ^(13)C.The highly depleted leafδ^(13)C suggests that these trees have high stomatai gas exchange,despite growing in extremely dry habitats.The lack ofδ^(13)C enrichment in nonphotosynthetic tissues might be related to the seasonal coupling of growth of leaves and heterotrophic tissues. 展开更多
关键词 stable isotope δ^(13)c enrichment DESERT tree drought resistance Acacia raddiana Acacia tortilis
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