The Millennial model: in search of measurable pools and transformations for modeling soil carbon in the new century

被引:139
|
作者
Abramoff, Rose [1 ]
Xu, Xiaofeng [2 ]
Hartman, Melannie [3 ]
O'Brien, Sarah [4 ,5 ]
Feng, Wenting [6 ]
Davidson, Eric [7 ]
Finzi, Adrien C. [8 ,9 ]
Moorhead, Daryl [10 ]
Schimel, Josh [11 ]
Torn, Margaret [1 ]
Mayes, Melanie A. [12 ,13 ]
机构
[1] Lawrence Berkeley Natl Lab, Climate & Ecosyst Sci Div, 1 Cyclotron Rd, Berkeley, CA 94720 USA
[2] San Diego State Univ, Dept Biol, San Diego, CA 92182 USA
[3] Colorado State Univ, Nat Resource Ecol Lab, Ft Collins, CO 80523 USA
[4] Argonne Natl Lab, Biosci Div, 9700 C Cass Ave, Argonne, IL 60439 USA
[5] Univ Illinois, Dept Biol Sci, 845 W Taylor St,MC 066, Chicago, IL 60607 USA
[6] Univ Oklahoma, Dept Microbiol & Plant Biol, 101 David L Boren, Norman, OK 73019 USA
[7] Univ Maryland, Appalachian Lab, Ctr Environm Sci, 301 Braddock Rd, Frostburg, MD 21529 USA
[8] Boston Univ, Dept Biol, 5 Cummington St, Boston, MA 02215 USA
[9] Boston Univ, PhD Program Biogeosci, 5 Cummington St, Boston, MA 02215 USA
[10] Univ Toledo, Dept Environm Sci, 2801 W Bancroft, St Toledo, OH 43606 USA
[11] Univ Calif Santa Barbara, Dept Ecol Evolut & Marine Biol, 1108 Noble Hall, Santa Barbara, CA 93106 USA
[12] Oak Ridge Natl Lab, Div Environm Sci, POB 2008, Oak Ridge, TN 37830 USA
[13] Oak Ridge Natl Lab, Climate Change Sci Inst, POB 2008, Oak Ridge, TN 37830 USA
关键词
Modeling; Soil carbon; Organic matter; Microbial activity; Decomposition; Global change; DISSOLVED ORGANIC-CARBON; MICHAELIS-MENTEN KINETICS; EARTH SYSTEM MODELS; MICROBIAL CARBON; MATTER DYNAMICS; EXTRACELLULAR ENZYMES; LITTER DECOMPOSITION; SELF-ORGANIZATION; USE EFFICIENCY; FOREST;
D O I
10.1007/s10533-017-0409-7
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Soil organic carbon (SOC) can be defined by measurable chemical and physical pools, such as mineral-associated carbon, carbon physically entrapped in aggregates, dissolved carbon, and fragments of plant detritus. Yet, most soil models use conceptual rather than measurable SOC pools. What would the traditional pool-based soil model look like if it were built today, reflecting the latest understanding of biological, chemical, and physical transformations in soils? We propose a conceptual model-the Millennial model-that defines pools as measurable entities. First, we discuss relevant pool definitions conceptually and in terms of the measurements that can be used to quantify pool size, formation, and destabilization. Then, we develop a numerical model following the Millennial model conceptual framework to evaluate against the Century model, a widely-used standard for estimating SOC stocks across space and through time. The Millennial model predicts qualitatively similar changes in total SOC in response to single factor perturbations when compared to Century, but different responses to multiple factor perturbations. We review important conceptual and behavioral differences between the Millennial and Century modeling approaches, and the field and lab measurements needed to constrain parameter values. We propose the Millennial model as a simple but comprehensive framework to model SOC pools and guide measurements for further model development.
引用
收藏
页码:51 / 71
页数:21
相关论文
共 50 条
  • [1] The Millennial model: in search of measurable pools and transformations for modeling soil carbon in the new century
    Rose Abramoff
    Xiaofeng Xu
    Melannie Hartman
    Sarah O’Brien
    Wenting Feng
    Eric Davidson
    Adrien Finzi
    Daryl Moorhead
    Josh Schimel
    Margaret Torn
    Melanie A. Mayes
    [J]. Biogeochemistry, 2018, 137 : 51 - 71
  • [2] Soil carbon saturation: Linking concept and measurable carbon pools
    Stewart, Catherine E.
    Plante, Alain F.
    Paustian, Keith
    Conant, Richard T.
    Six, Johan
    [J]. SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 2008, 72 (02) : 379 - 392
  • [3] Improving Soil Carbon Estimates by Linking Conceptual Pools Against Measurable Carbon Fractions in the DAYCENT Model Version 4.5
    Dangal, Shree R. S.
    Schwalm, Christopher
    Cavigelli, Michel A.
    Gollany, Hero T.
    Jin, Virginia L.
    Sanderman, Jonathan
    [J]. JOURNAL OF ADVANCES IN MODELING EARTH SYSTEMS, 2022, 14 (05)
  • [4] Calibration of the Rothamsted organic carbon turnover model (RothC ver. 26.3), using measurable soil organic carbon pools
    Skjemstad, JO
    Spouncer, LR
    Cowie, B
    Swift, RS
    [J]. AUSTRALIAN JOURNAL OF SOIL RESEARCH, 2004, 42 (01): : 79 - 88
  • [5] Modelling soil carbon and nitrogen dynamics using measurable and conceptual soil organic matter pools in APSIM
    Luo, Zhongkui
    Wang, Enli
    Fillery, Ian R. P.
    Macdonald, Lynne M.
    Huth, Neil
    Baldock, Jeff
    [J]. AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 2014, 186 : 94 - 104
  • [6] AggModel: A soil organic matter model with measurable pools for use in incubation studies
    Segoli, M.
    De Gryze, S.
    Dou, F.
    Lee, J.
    Post, W. M.
    Denef, K.
    Six, J.
    [J]. ECOLOGICAL MODELLING, 2013, 263 : 1 - 9
  • [7] Procedures for Initializing Soil Organic Carbon Pools in the DSSAT-CENTURY Model for Agricultural Systems
    Basso, Bruno
    Gargiulo, Osvaldo
    Paustian, Keith
    Robertson, G. Philip
    Porter, Cheryl
    Grace, Peter R.
    Jones, James W.
    [J]. SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 2011, 75 (01) : 69 - 78
  • [8] Modeling soil organic carbon dynamics in Oxisols of Ibiruba (Brazil) with the Century Model
    Tornquist, Carlos Gustavo
    Mielniczuk, Joao
    Pellegrino Cerri, Carlos Eduardo
    [J]. SOIL & TILLAGE RESEARCH, 2009, 105 (01): : 33 - 43
  • [9] SYSTEMS-MODEL OF CARBON TRANSFORMATIONS IN SOIL SUBSIDENCE
    BROWDER, JA
    VOLK, BG
    [J]. ECOLOGICAL MODELLING, 1978, 5 (04) : 269 - 292
  • [10] ICBM regional model for estimations of dynamics of agricultural soil carbon pools
    Olof Andrén
    T. Kätterer
    T. Karlsson
    [J]. Nutrient Cycling in Agroecosystems, 2004, 70 : 231 - 239