Land use affects soil organic carbon of paddy soils: empirical evidence from 6280 years BP to present
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  • 作者:Jin Zhang ; Minyan Wang ; Shengchun Wu ; Karin Müller…
  • 关键词:Buried soil ; Land use change ; Phytolith ; occluded organic carbon ; Stable C isotope ratio ; Urbanization
  • 刊名:Journal of Soils and Sediments
  • 出版年:2016
  • 出版时间:March 2016
  • 年:2016
  • 卷:16
  • 期:3
  • 页码:767-776
  • 全文大小:1,109 KB
  • 参考文献:Atahan P, Itzstein-Davey F, Taylor D, Dodson J, Qin J, Zheng H, Brooks A (2008) Holocene-aged sedimentary records of environmental changes and early agriculture in the lower Yangtze, China. Quat Sci Rev 27:556–570CrossRef
    Batjes NH (1996) Total carbon and nitrogen in the soils of the world. Eur J Soil Sci 47:151–163CrossRef
    Boutton TW (1991) Stable carbon isotope ratios of natural materials: I. Sample preparation and mass spectrometric analysis. Carbon Isot Tech 1:155–171CrossRef
    Bräuer T, Grootes PM, Nadeau MJ (2013) Origin of subsoil carbon in a Chinese paddy soil chronosequence. Radiocarbon 55:1058–1070CrossRef
    Cao Z, Ding J, Hu Z, Knicker H, Kögel-Knabner I, Yang L, Yin R, Lin X, Dong Y (2006) Ancient paddy soils from the Neolithic age in China’s Yangtze River Delta. Naturwissenschaften 93:232–236CrossRef
    Cao Z, Yang L, Lin X, Hu Z, Dong Y, Zhagn G, Lu Y, Yin R, Wu Y, Ding J (2007) Morphological characteristics of paddy fields, paddy soil profile, phytolith and fossil rice grain of the Neolithic age in Yangtze River Delta. Acta Pedologica Sinca 5:838–847
    Carreira RS, Cordeiro LGMS, Oliveira DRP, Baêta A, Wagener ALR (2015) Source and distribution of organic matter in sediments in the SE Brazilian continental shelf influenced by river discharges: an approach using stable isotopes and molecular markers. J Mar Syst 141:80–89CrossRef
    Eswaran H, Van Den Berg E, Reich P (1993) Organic carbon in soils of the world. Soil Sci Soc Am J 57:192–194CrossRef
    Hussain S, Peng S, Fahad S, Khaliq A, Huang J, Cui K, Nie K (2015) Rice management interventions to mitigate greenhouse gas emissions: a review. Environ Sci Pollut Res 22:3342–3360CrossRef
    IUSS Working Group WRB (2006) World reference base for soil resources 2006, 2nd Ed. World Soil Resources Reports No. 103. FAO, Rome
    Kalbitz K, Kaiser K, Fiedler S, Kölbl A, Amelung W, Bräuer T, Cao Z, Don A, Grootes P, Jahn R (2013) The carbon count of 2000 years of rice cultivation. Global Chang Biol 19:1107–1113CrossRef
    Kögel-Knabner I, Amelung W, Cao Z, Fiedler S, Frenzel P, Jahn R, Kalbitz K, Kölbl A, Schloter M (2010) Biogeochemistry of paddy soils. Geoderma 157:1–14CrossRef
    Kölbl A, Schad P, Jahn R, Amelung W, Bannert A, Cao ZH, Fiedler S, Kalbitz K, Lehndorff E, Müller-Niggemann C (2014) Accelerated soil formation due to paddy management on marshlands (Zhejiang Province, China). Geoderma 228:67–89CrossRef
    Liping G, Erda L (2001) Carbon sink in cropland soils and the emission of greenhouse gases from paddy soils: a review of work in China. Chemosphere-Global Change Sci 3:413–418CrossRef
    Mueller-Niggemann C, Bannert A, Schloter M, Lehndorff E, Schwark L, Küsel K (2012) Intra-versus inter-site macroscale variation in biogeochemical properties along a paddy soil chronosequence. Biogeosciences 9:1237–1251CrossRef
    Pan G, Li L, Wu L, Zhang X (2004) Storage and sequestration potential of topsoil organic carbon in China’s paddy soils. Global Chang Biol 10:79–92CrossRef
    Pan GX, Xu XW, Smith P, Pan WN, Lal R (2010) An increase in topsoil SOC stock of China’s croplands between 1985 and 2006 revealed by soil monitoring. Agric Ecosyst Environ 136:133–138CrossRef
    Parr JF, Sullivan LA (2005) Soil carbon sequestration in phytoliths. Soil Biol Biochem 37:117–124CrossRef
    Qin J, Taylor D, Atahan P, Zhang X, Wu G, Dodson J, Zheng H, Itzstein-Davey F (2011) Neolithic agriculture, freshwater resources and rapid environmental changes on the lower Yangtze, China. Quat Res 75:55–65CrossRef
    Qin Z, Huang Y, Zhuang Q (2013) Soil organic carbon sequestration potential of cropland in China. Global Biogeochem Cy 27:711–722CrossRef
    Rajendiran S, Coumar MV, Kundu S, Dotaniya M, Rao AS (2012) Role of phytolith occluded carbon of crop plants for enhancing soil carbon sequestration in agro-ecosystems. Curr Sci 103:911–920
    Rui W, Zhang W (2010) Effect size and duration of recommended management practices on carbon sequestration in paddy field in Yangtze Delta Plain of China: a meta-analysis. Agric Ecosyst Environ 135:199–205CrossRef
    Smith P, Fang C, Dawson JJ, Moncrieff JB (2008) Impact of global warming on soil organic carbon. Adv Agron 97:1–43CrossRef
    Trumbore SE (1997) Potential responses of soil organic carbon to global environmental change. Proc Natl Acad Sci U S A 94:8284–8291CrossRef
    Wissing L, Kölbl A, Vogelsang V, Fu JR, Cao ZH, Kögel-Knabner I (2011) Organic carbon accumulation in a 2000-year chronosequence of paddy soil evolution. Catena 87:376–385CrossRef
    Wissing L, Kölbl A, Schad P, Bräuer T, Cao ZH, Kögel-Knabner I (2014) Organic carbon accumulation on soil mineral surfaces in paddy soils derived from tidal wetlands. Geoderma 228–229:90–103CrossRef
    Wu J (2011) Carbon accumulation in paddy ecosystems in subtropical China: evidence from landscape studies. Eur J Soil Sci 62:29–34CrossRef
    Zhang J, Cornelia MN, Wang M, Cao Z, Luo X, Wong M, Chen W (2013) Change of PAHs with evolution of paddy soils from prehistoric to present over the last six millennia in the Yangtze River Delta region, China. Sci Total Environ 449:328–335CrossRef
    Zong Y, Innes JB, Wang Z, Chen Z (2012a) Environmental change and Neolithic settlement movement in the lower Yangtze wetlands of China. The Holocene 22:659–673CrossRef
    Zong Y, Wang Z, Innes J, Chen Z (2012b) Holocene environmental change and Neolithic rice agriculture in the lower Yangtze region of China: a review. The Holocene 22:623–635CrossRef
    Zuo X, Lü H (2011) Carbon sequestration within millet phytoliths from dry-farming of crops in China. Chinese Sci Bull 56:3451–3456CrossRef
  • 作者单位:Jin Zhang (1) (2)
    Minyan Wang (3)
    Shengchun Wu (1)
    Karin Müller (4)
    Yucheng Cao (1)
    Peng Liang (1)
    Zhihong Cao (5)
    Anna Oi Wah Leung (6)
    Peter Christie (1) (5)
    Hailong Wang (1)

    1. Key Laboratory of Soil Contamination Bioremediation of Zhejiang Province, School of Environmental and Resources Sciences, Zhejiang Agricultural and Forestry University, 88 North Huancheng Road in Lin’an, Hangzhou, 311300, China
    2. Institute of Geosciences, Christian-Albrechts-University, Ludewig-Meyn-Street 10, 24118, Kiel, Germany
    3. Jiyang College, Zhejiang Agricultural and Forestry University, 77 Puyang Road, Zhuji, 311800, China
    4. The New Zealand Institute for Plant and Food Research Ltd., Ruakura Research Centre, Bisley Road, Hamilton, 3214, New Zealand
    5. Institute of Soil Science, Chinese Academy of Sciences, 71 East Beijing Road, Nanjing, 210008, China
    6. Department of Biology, Hong Kong Baptist University, 224 Waterloo Road, Kowloon Tong, Hong Kong
  • 刊物类别:Earth and Environmental Science
  • 刊物主题:Environment
    Soil Science and Conservation
    Environment
    Environmental Physics
  • 出版者:Springer Berlin / Heidelberg
  • ISSN:1614-7480
文摘
Purpose Submerged rice cultivation has been practiced in China for 7000 years. Empirical evidence on changes of soil organic carbon (SOC) contents in paddy soils over this historical time period is scarce. Therefore, a field study was conducted to investigate the effect of submerged rice cultivation on the accumulation and preservation of SOC in paddies.

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