Pular para o conteúdo principal

ETHNOS_APP

Início • Busca • Periódicos • Lista 0

Analysis of Factors Controlling Soil Organic Matter Levels in Great Plains Grasslands

Dados Bibliográficos

ID23366353
AutoresW J Parton, D S Schimel, D Schimel, C V Cole, Dennis S Ojima (0000-0001-8923-0969, Colorado State University)
Ano1987
Volume51
Fascículo5
Páginas1173-1179
Data de publicação1987-09-01
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoSoil Science Society of America Journal (JOURNAL)
Identificadores do periódicoISSN: 0361-5995 • E-ISSN: 1435-0661
EditoraWiley (PUBLISHER • GB)
DOI10.2136/sssaj1987.03615995005100050015x
OpenAlexW2162066644
IdiomaEN
Citações recebidas71

We analyzed climatic and textural controls of soil organic C and N for soils of the U.S. Great Plains. We used a model of soil organic matter (SOM) quantity and composition to simulate steady‐state organic matter levels for 24 grassland locations in the Great Plains. The model was able to simulate the effects of climatic gradients on SOM and productivity. Soil texture was also a major control over organic matter dynamics. The model adequately predicted aboveground plant production and soil C and N levels across soil textures (sandy, medium, and fine); however, the model tended to overestimate soil C and N levels for fine textured soil by 10 to 15%. The impact of grazing on the system was simulated and showed that steady‐state soil C and N levels were sensitive to the grazing intensity, with soil C and N levels decreasing with increased grazing rates. Regional trends in SOM can be predicted using four site‐specific variables, temperature, moisture, soil texture, and plant lignin content. Nitrogen inputs must also be known. Grazing intensity during soil development is also a significant control over steady‐state levels of SOM, and since few data are available on presettlement grazing, some uncertainty is inherent in the model predictions.

Agronomy · Biology · Grassland · Grazing · Hydrology (agriculture) · Organic matter · Productivity · Soil organic matter · Soil texture · Soil water · Water content · Ecology · Environmental Science · Geology · Soil and Unsaturated Flow · Soil and Water Nutrient Dynamics · Soil Carbon and Nitrogen Dynamics · Soil Science

  • Late Holocene Phytolith and Carbon-Isotope Record from a Latosol at Salitre, South-Central Brazil

    Open Access•Anne Alexandre, Jean‐Dominique Meunier et al.•Quaternary Research•1999

  • Assessing the resilience of a real-world social-ecological system

    Open Access•Anja Linstädter, Arnim Kuhn et al.•Conservation Ecology•2016

  • Degradation and recovery of soil in tobacco croped areas in different geoforms in a small watershed

    Open Access•Nilvania Mello, Nilvania Aparecida De Mello et al.•Sociedade & natureza•2005

  • Soil Carbon Sequestration in Degraded Semiarid Agro-ecosystems—Perils and Potentials

    Louise Olsson, Jonas Ardö•AMBIO•2002

  • The Vertical Distribution of Soil Organic Carbon and Its Relation to Climate and Vegetation

    Open Access•Esteban G Jobbágy, Robert B Jackson•Ecological Applications•2000

  • Landscape Ecology

    Michael G Turner, Monica Goigel Turner•Annual Review of Ecology and…•1989

  • Temperature sensitivity of soil carbon decomposition and feedbacks to climate change

    Open Access•Eric A Davidson, Ivan A Janssens•Nature•2006

  • The Importance of Land-Use Legacies to Ecology and Conservation

    Dennis R Foster, David Foster et al.•BioScience•2003

  • Stabilization mechanisms of soil organic matter

    Open Access•Johan Six, Richard T Conant et al.•Plant and Soil•2002

  • Terrestrial ecosystem production

    Open Access•Christopher Potter, Christopher S Potter et al.•Global Biogeochemical Cycles•1993

  • Permafrost thaw and resulting soil moisture changes regulate projected high-latitude CO 2 and CH 4 emissions

    Open Access•David M Lawrence, Charles D Koven et al.•Environmental Research Letters•2015

  • Accounting for soil carbon sequestration in national inventories

    Open Access•Jonathan Sanderman, Jeff Baldock et al.•Environmental Research Letters•2010

  • Terrestrial carbon losses from mountaintop coal mining offset regional forest carbon sequestration in the 21st century

    Open Access•J Elliott Campbell, James F Fox et al.•Environmental Research Letters•2012

  • Informing grassland ecosystem modeling with in-situ and remote sensing observations

    Open Access•Johny Arteaga, Melannie D Hartman et al.•Environmental Research Letters•2025

  • Overcoming the risk of inaction from emissions uncertainty in smallholder agriculture

    Open Access•Nicholas Berry, N J Berry et al.•Environmental Research Letters•2013

  • Assessing the impact of nature-based solutions on soil health in sub-Saharan Africa through farmer-centred methods

    Open Access•Dominik Bittner, Jo Smith et al.•Environmental Research Letters•2026

  • How global change impacted the rise and fall of the Guge Kingdom

    Open Access•Likun Han, Xunming Wang et al.•Environmental Research Letters•2022

  • Distinct Assembly Processes and Microbial Communities Constrain Soil Organic Carbon Formation

    Open Access•Mark Anthony, Thomas W Crowther et al.•One Earth•2020

  • Nitrogen and phosphorus additions accelerate decomposition of slow carbon pool and lower total soil organic carbon pool in alpine meadows

    Open Access•Jin Hua Li, Bing Heng Cheng et al.•Land Degradation and Development•2021

  • Soil carbon stocks in Ethiopian forests and estimations of their future development under different forest use scenarios

    Open Access•Aleksi Lehtonen, Boris Tupek et al.•Land Degradation and Development•2020

  • Mapping soil organic matter and identifying potential controls in the farmland of Southern China

    Open Access•Bifeng Hu, Hanjie Ni et al.•Land Degradation and Development•2023

  • Cultivated Land Quality Assessment and Obstacle Factors Diagnosis in Changtu County, Northeast China

    Open Access•Fengkui Qian, Siyu Jiao et al.•Land Degradation and Development•2024

  • Substantial uncertainties in global soil organic carbon simulated by multiple terrestrial carbon cycle models

    Open Access•Zhaoqi Wang, Yuanhao Lin et al.•Land Degradation and Development•2023

  • The direct and legacy effects of drying‐rewetting cycles on active and relatively resistant soil carbon decomposition

    Open Access•Shuai Zhang, Junjie Lin et al.•Land Degradation and Development•2023

  • Increased nitrogen availability alters soil carbon quality by regulating microbial r‐K growth strategy, metabolic efficiency, and biomass in degraded temperate grasslands

    Open Access•Wenjing Zeng, Zhaodi Wang et al.•Land Degradation and Development•2021

  • Effects of Vegetation Switch and Subsequent Change in Soil Invertebrate Composition on Soil Carbon Accumulation Patterns, Revealed by Radiocarbon Concentrations

    Open Access•Ayu Toyota, Ichiro Tayasu et al.•Radiocarbon•2010

  • A spatiotemporal model of risk and uncertainty for Hawaiian dryland agriculture and its implications for ahupua'a community formation

    Open Access•Robert J Dinapoli, Alex Morrison•Journal of Archaeological Science…•2017

  • Forest productivity under climate change

    Open Access•Belinda E Medlyn, Remko A Duursma et al.•Wiley Interdisciplinary Reviews…•2011

  • Modeling vegetation and land use in models of the Earth System

    Open Access•Samuel Levis•Wiley Interdisciplinary Reviews…•2010

  • Mathematical modeling for improved greenhouse gas balances, agro‐ecosystems, and policy development

    Open Access•Andrew D Moore, Richard Eckard et al.•Wiley Interdisciplinary Reviews…•2014

  • Minimising soil organic carbon erosion by wind is critical for land degradation neutrality

    Open Access•Adrian Chappell, Nicholas P Webb et al.•Environmental Science & Policy•2018

  • Soil carbon sequestration in tropical agroforestry systems

    Open Access•P K R Nair, Vimala D Nair et al.•Environmental Science & Policy•2009

  • Soil carbon and climate perturbations

    Open Access•Philippe Martin, Philippe H Martin•Environmental Science & Policy•1998

  • Investigations on buried soils and colluvial layers around Bronze Age burial mounds at Bornhöved (northern Germany)

    Open Access•Stefan Dreibrodt, Oliver Nelle et al.•The Holocene•2009

  • Local‐scale adaptations

    Open Access•W Paul Adderley, Ian A Simpson et al.•Geoarchaeology•2008

  • Sustainable intensification of agricultural drainage

    Open Access•Michael J Castellano, Sotirios V Archontoulis et al.•Nature Sustainability•2019

  • Market approaches to sequester soil organic carbon on farms

    Open Access•Ashley Colby, Mckenzie F Johnson et al.•Agriculture and Human Values•2025

  • Integrated and comprehensive estimation of greenhouse gas emissions from land systems

    Open Access•Cris Brack, G P Richards et al.•Sustainability Science•2006

  • Carbon sequestration in the semi‐arid tropics for improving livelihoods

    S P Wani, K L Sahrawat et al.•International Journal of…•2007

  • Global estimates of soil carbon sequestration via livestock waste

    Open Access•Jason B Fellman, Eldon H Franz et al.•Environment Development and…•2009

  • Climate change effect on soil carbon stock in different land use types in eastern Rajasthan, India

    Open Access•Garima Sharma, Laxmi Kant Sharma•Environment Development and…•2022

  • The formation of iron oxides and magnetic enhancement mechanisms in northern Iranian loess-paleosol sequences

    Open Access•Amin Ghafarpour, Farhad Khormali et al.•Quaternary International•2021

  • Potential of soil phytoliths, organic matter and carbon isotopes for small-scale differentiation of tropical rainforest vegetation

    Open Access•Marcia Regina Calegari, Marco Madella et al.•Quaternary International•2017

  • Changes in Holocene tree cover density in Cabo Frio (Rio de Janeiro, Brazil)

    Open Access•Heloisa H G Coe, Anne Alexandre et al.•Quaternary International•2013

  • Combining phytoliths and δ13C matter in Holocene palaeoenvironmental studies of tropical soils

    Open Access•Marcia R Calegari, Marco Madella et al.•Quaternary International•2013

  • Withdrawn

    Open Access•Peter A Finke•Quaternary International•2011

  • Phytolith signature on the Araucarias Plateau – Vegetation change evidence in Late Quaternary (South Brasil)

    Open Access•Marcia R Calegari, Sani D Lopes Paisani et al.•Quaternary International•2017

  • Modeling the genesis of luvisols as a function of topographic position in loess parent material

    Open Access•Peter A Finke•Quaternary International•2012

  • Trade-offs between ecosystem services

    Open Access•Ryan A Chisholm•Ecological Economics•2010

  • The Kyoto protocol and payments for tropical forest

    Open Access•Alexander Pfaff, Alexander S P Pfaff et al.•Ecological Economics•2000

  • Will buying tropical forest carbon benefit the poor? Evidence from Costa Rica

    Open Access•Alexander Pfaff, Suzi Kerr et al.•Land Use Policy•2007

  • Understanding the role of forest simulation models in sustainable forest management

    Open Access•Changhui Peng•Environmental Impact Assessment…•2000

  • Temperature dependence of old soil organic matter

    Göran I Ågren•AMBIO•2000

  • Soil Carbon Sequestration in Degraded Semiarid Agro-ecosystems—Perils and Potentials

    Louise Olsson, Lennart Olsson et al.•AMBIO•2002

  • Synthetic Constraint of Soil C Dynamics Using 50 Years of 14 C and Net Primary Production (NPP) in a New Zealand Grassland Site

    Open Access•W Troy Baisden, E D Keller•Radiocarbon•2013

  • Using Bulk Soil Radiocarbon Measurements to Estimate Soil Organic Matter Turnover Times

    Open Access•Kevin G Harrison•Radiocarbon•1996

  • Comparison of Fractionation Methods for Soil Organic Matter 14 C Analysis

    Open Access•Susan E Trumbore, Shuhui Zheng•Radiocarbon•1996

  • The Use of Natural 14 C and 13 C in Soils for Studies on Global Climate Change

    Open Access•Peter Becker-Heidmann, Hans-Wilhelm Scharpenseel•Radiocarbon•1992

  • Soil Organic 14 C Dynamics

    Open Access•Paul F A M Römkens, Jan Hassink et al.•Radiocarbon•1997

  • Estimation of Slow- and Fast-Cycling Soil Organic Carbon Pools from 6N HCl Hydrolysis

    Open Access•S W Leavitt, R F Follett et al.•Radiocarbon•1996

  • Twenty-Five Years of Radiocarbon Dating Soils

    Open Access•H W Scharpenseel, Peter Becker-Heidmann•Radiocarbon•1992

  • Using a Soil Chronosequence to Identify Soil Fractions for Understanding and Modeling Soil Carbon Dynamics in New Zealand

    Open Access•Christine A Prior, W Troy Baisden et al.•Radiocarbon•2007

  • Methods of Separating Soil Carbon Pools Affect the Chemistry and Turnover Time of Isolated Fractions

    Open Access•Cristina Castanha, Susan Trumbore et al.•Radiocarbon•2008

  • Seasonal Land-Cover Regions of the United States

    Thomas R Loveland, James W Merchant et al.•Annals of the Association of…•1995

  • Seasonal Land‐Cover Regions of the United States

    Open Access•Thomas R Loveland, James W Merchant et al.•Annals of the Association of…•1995

  • Risky Business

    Open Access•Chien-Ti Lee, Charlotte T Lee et al.•Human Ecology•2006

  • Engagements climatiques et modélisation du carbone des sols

    Open Access•Laure Manach, Hélène Guillemot et al.•Revue d'Anthropologie des…•2023

  • Gradients in Lake Effect Snowfall and Fire across Northern Lower Michigan Drive Patterns of Soil Development and Carbon Dynamics

    Randall J Schaetzl, David E Rothstein et al.•Annals of the American…•2018

  • Modeling Traditional Manuring Practice

    Open Access•W Paul Adderley, Ian A Simpson et al.•Human Ecology•2000

  • Soil Limitations to Agrarian Land Production in Premodern Iceland

    Open Access•Ian A Simpson, W Paul Adderley et al.•Human Ecology•2002

  • Hawaii as a Model System for Human Ecodynamics

    Open Access•P V Kirch•American Anthropologist•2007

Obras citantes distintas71
Citações por ano1,92
Intervalo de citações1989 - 2026 (38)
Velocidade de citaçãocurrent
Altamente citadoNão
Tipos de citaçãoNeutras: 67
Ethnos_APP • Projeto Open Source • Licença MIT • Frontend v2.0.0 • Privacidade e Cookies • Documentação da API: api.ethnos.app/docs • Código da API: GitHub • DOI: 10.5281/zenodo.17049435 • Código do Frontend: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae