2016•Scientia IranicaOpen access

Modeling of Soil Organic Carbon in North and Northeast of Iran under Climate Change Scenarios

Raheleh Farzanmanesh, Ahamd Makmom Abdullah, Mohd Talib Latif

Open full text 8 citations

Abstract

The changes of soil organic carbon and soil carbon decomposition are influenced by temperature and precipitation changes. In the present study, the changes of soil organic carbon under climate change scenarios were estimated by the Rothamsted Carbon model in different land-use areas in north and northeast of Iran. The total soil organic carbon was observed 106.2 tC/ha in the study area. The changes of soil organic carbon was estimated to be 980 soil sample under A2 and B2 senarios by using RothC model in various land-use areas. Future temperature and precipitation data under both scenarios were predicted by LARS-WG weather generator model based on the IPCC AR4. The simulated results of soil organic carbon illustrated that over the period 2010-2065, SOC will decrease in the study area. The simulation of soil organic carbon strongly suggests that SOC levels will decline due to temperature increase and decline on precipitation, particularly in cultivated lands. SOC is expected to decrease under A2 climate scenario by 8.3 tC/ha and 13.36 tC/ha by the year 2030 and 2065, respectively. Likewise, under the B2 scenario, SOC will have decreased by 8.58 tC/ha and 13.81 tC/ha by the year 2030 and 2065, respectively.

Open-access reader

About this research paper

What this paper is about

The changes of soil organic carbon and soil carbon decomposition are influenced by temperature and precipitation changes. In the present study, the changes of soil organic carbon under climate change scenarios were estimated by the Rothamsted Carbon model in different land-use areas in north and northeast of Iran. The total soil organic carbon was observed 106.2 tC/ha in the study area. The changes of soil organic carbon was estimated to be 980 soil sample under A2 and B2 senarios by using RothC model in various land-use areas. Future temperature and precipitation data under both scenarios were predicted by LARS-WG weather generator model based on the IPCC AR4. The simulated results of soil organic carbon illustrated that over the period 2010-2065, SOC will decrease in the study area. The simulation of soil organic carbon strongly suggests that SOC levels will decline due to temperature increase and decline on precipitation, particularly in cultivated lands. SOC is expected to decrease under A2 climate scenario by 8.3 tC/ha and 13.36 tC/ha by the year 2030 and 2065, respectively. Likewise, under the B2 scenario, SOC will have decreased by 8.58 tC/ha and 13.81 tC/ha by the year 2030 and 2065, respectively.

Why it matters

OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The changes of soil organic carbon and soil carbon decomposition are influenced by temperature and precipitation changes. In the present study, the changes of soil organic carbon under climate change scenarios were estimated by the Rothamsted Carbon model in different land-use areas in north and northeast of Iran. The total soil organic carbon was observed 106.2 tC/ha in the study area. The changes of soil organic carbon was estimated to be 980 soil sample under A2 and B2 senarios by using RothC model in various land-use areas. Future temperature and precipitation data under both scenarios were predicted by LARS-WG weather generator model based on the IPCC AR4. The simulated results of soil organic carbon illustrated that over the period 2010-2065, SOC will decrease in the study area. The simulation of soil organic carbon strongly suggests that SOC levels will decline due to temperature increase and decline on precipitation, particularly in cultivated lands. SOC is expected to decrease under A2 climate scenario by 8.3 tC/ha and 13.36 tC/ha by the year 2030 and 2065, respectively. Likewise, under the B2 scenario, SOC will have decreased by 8.58 tC/ha and 13.81 tC/ha by the year 2030 and 2065, respectively.

Key concepts: Soil carbon, Environmental science, Total organic carbon, Climate change, Precipitation, Soil organic matter, Carbon fibers, Land use

Related papers

Back to paper searchBrowse research topicsOriginal source
Modeling of Soil Organic Carbon in North and Northeast of Iran under Climate Change Scenarios — Research Paper | ScholarLens