贵州喀斯特地区黄壤有机质及其中胡敏酸的碳同位素组成特征
Stable Carbon Isotope Characteristics of Soil Organic Matter and Humic Acid of Yellow Soil in Karst Region of Guizhou Province
查看参考文献47篇
文摘
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为研究喀斯特地区土壤有机质的来源与演化,对贵州喀斯特地区黄壤剖面中黄土的有机质开展了碳同位素研究。结果表明,随着剖面深度加深,黄壤有机质及其中胡敏酸的δ~(13)C值趋于偏正,且有机质全样的δ~(13)C值高于胡敏酸。另外,胡敏酸超滤组分的δ~(13)C值随着分子量的减少而增大,说明分子量较低的胡敏酸中可能含更多富集~(13)C的组分,而分子量较大的胡敏酸中可能含更多贫~(13)C的组分。黄壤有机质的δ~(13)C值组成差异,反映了黄壤剖面有机质及胡敏酸形成过程中有碳同位素的分馏。 |
其他语种文摘
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In order to study the source and evolution history of soil organic matter(SOM) in Karst region of southwestern China,we studied the stable carbon isotope of SOM in yellow soil profiles of Guizhou Karst region. The results indicate that the δ~(13)C value of SOM and Humic Acid(HA) tend to be more positive with the increasing of soil profile depth,and the δ~(13)C value of SOM is higher than that of HA fractions. Meanwhile,the δ~(13)C values of HA ultrafiltration component increase with the decreasing of molecular weight,suggesting that HA with lower molecular weight may contain more ~(13)C-riched components and HA with more molecular weight may be depleted in ~(13)C. The differences of δ~(13)C value between different SOMs of yellow soils reflect the fractionation of carbon isotope during the formation of SOM and HA in yellow soil profiles. |
来源
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矿物岩石地球化学通报
,2017,36(1):166-170 【核心库】
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DOI
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10.3969/j.issn.1007-2802.2017.01.019
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关键词
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黄壤
;
胡敏酸
;
超滤
;
碳同位素
;
土壤有机物
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地址
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中国科学院地球化学研究所, 环境地球化学国家重点实验室, 贵阳, 550081
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语种
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中文 |
文献类型
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研究性论文 |
ISSN
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1007-2802 |
学科
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地质学 |
文献收藏号
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CSCD:5936093
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参考文献 共
47
共3页
|
1.
Balesdent J. Site-Related δ~(13)C of tree leaves and soil organic matter in a temperate forest.
Ecology,1993,74(6):1713-1721
|
CSCD被引
38
次
|
|
|
|
2.
Balogh K V. A study of the decomposition of reed(Phragmites australis) as a possible source of aquatic humic substances by measuring the natural abundance of stable carbon isotopes.
International Review of Hydrobiology,2006,91(1):15-28
|
CSCD被引
2
次
|
|
|
|
3.
Boutton T W. δ~(13)C values of soil organic carbon and their use in documenting vegetation change in a subtropical savanna ecosystem.
Geoderma,1998,82(1/3):5-41
|
CSCD被引
46
次
|
|
|
|
4.
Ehleringer J R. Carbon isotope ratios in belowground carbon cycle processes.
Ecological Applications,2000,10(2):412-422
|
CSCD被引
52
次
|
|
|
|
5.
Feng X H. A theoretical analysis of carbon isotope evolution of decomposing plant litters and soil organic matter.
Global Biogeochemical Cycles,2002,16(4):66-1-66-11
|
CSCD被引
1
次
|
|
|
|
6.
Heidorn C M. Soil organic matter dynamics in eutrophied grasslands: An application of stable carbon isotope analysis.
Bulletin of the Ecological Society of America,1995,76:114
|
CSCD被引
1
次
|
|
|
|
7.
Kinniburgh D G. Chapter 23-Ion binding to humic substances: Measurements, models,and mechanisms.
Adsorption of Metals by Geomedia: Variables,Mechanisms,and Model Applications,1998:483-520
|
CSCD被引
1
次
|
|
|
|
8.
Kononova M M.
Soil organic matter,1966
|
CSCD被引
2
次
|
|
|
|
9.
Krull E G. Assessment of vegetation change and landscape variability by using stable carbon isotopes of soil organic matter.
Australian Journal of Botany,2005,53(7):651-661
|
CSCD被引
3
次
|
|
|
|
10.
Krull E S. Soil organic matter decomposition and turnover in a tropical Ultisol: Evidence from delta(super 13) C,delta(super 15) N and geochemistry.
Radiocarbon,2002,44(1):93-112
|
CSCD被引
3
次
|
|
|
|
11.
Li T Y. Application of carbon isotope for discriminating sources of soil CO_2 in karst area,Guizhou.
Science in China Series E: Technological Sciences,2001,44(S1):134-137
|
CSCD被引
1
次
|
|
|
|
12.
Lichtfouse E. Unexpected C-13-enrichment of organic components from wheat crop soils: Evidence for the in situ origin of soil organic matter.
Organic Geochemistry,1995,23(9):865-868
|
CSCD被引
6
次
|
|
|
|
13.
Lichtfouse E. Isotope evidence for soil organic carbon pools with distinct turnover rates-Ⅱ. Humic substances.
Organic Geochemistry,1995,23(9):845-847
|
CSCD被引
2
次
|
|
|
|
14.
Macko S A. Microbial alteration of stable nitrogen and carbon isotopic compositions of organic matter.
Organic Geochemistry,1984,6:787-790
|
CSCD被引
9
次
|
|
|
|
15.
Mariotti A. The abundance of natural nitrogen 15 in the organic matter of soils along an altitudinal gradient(Chablais,Haute Savoie,France).
Catena,1980,7(1):293-300
|
CSCD被引
8
次
|
|
|
|
16.
Natelhoffer K J. Controls on natural nitrogen-15 and carbon-13 abundances in forest soil organic matter.
Soil Science Society of America Journal,1988,52(6):1633-1640
|
CSCD被引
41
次
|
|
|
|
17.
Page H J. Studies on the carbon and nitrogen cycles in the soil. V. The origin of the humic matter of the soil.
The Journal of Agricultural Science,1932,22(2):291-296
|
CSCD被引
2
次
|
|
|
|
18.
Park R. Carbon isotope fractionation during photosynthesis.
Geochimica et Cosmochimica Acta,1960,21(1/2):110-126
|
CSCD被引
21
次
|
|
|
|
19.
Pessenda L C R. The use of carbon isotopes(~(13)C,~(14)C) in soil to evaluate vegetation changes during the Holocene in Central Brazil.
Radiocarbon,1996,38(2):191-201
|
CSCD被引
7
次
|
|
|
|
20.
Pessenda L R. Natural radio carbon measurements in Brazilian soils developed on basic rocks.
Radiocarbon,1996,38(2):203-208
|
CSCD被引
1
次
|
|
|
|
|