Skip to main content

page search

Library Predicting climate change effects on surface soil organic carbon of Louisiana, USA

Predicting climate change effects on surface soil organic carbon of Louisiana, USA

Predicting climate change effects on surface soil organic carbon of Louisiana, USA

Resource information

Date of publication
December 2014
Resource Language
ISBN / Resource ID
AGRIS:US201400155561
Pages
6169-6192

This study aimed to assess the degree of potential temperature and precipitation change as predicted by the HadCM3 (Hadley Centre Coupled Model, version 3) climate model for Louisiana, and to investigate the effects of potential climate change on surface soil organic carbon (SOC) across Louisiana using the Rothamsted Carbon Model (RothC) and GIS techniques at the watershed scale. Climate data sets at a grid cell of 0.5° × 0.5° for the entire state of Louisiana were collected from the HadCM3 model output for three climate change scenarios: B2, A2, and A1F1, that represent low, higher, and even higher greenhouse gas emissions, respectively. Geo-referenced datasets including USDA-NRCS Soil Geographic Database (STATSGO), USGS Land Cover Dataset (NLCD), and the Louisiana watershed boundary data were gathered for SOC calculation at the watershed scale. A soil carbon turnover model, RothC, was used to simulate monthly changes in SOC from 2001 to 2100 under the projected temperature and precipitation changes. The simulated SOC changes in 253 watersheds from three time periods, 2001–2010, 2041–2050, and 2091–2100, were tested for the influence of the land covers and emissions scenarios using SAS PROC GLIMMIX and PDMIX800 macro to separate Tukey-Kramer (p 

Share on RLBI navigator
NO

Authors and Publishers

Author(s), editor(s), contributor(s)

Zhong, Biao
Xu, Yi Jun

Publisher(s)
Data Provider
Geographical focus