A farm-gate life cycle assessment (LCA) of energy use and greenhouse gas emissions in rice production under acidic soil conditions in Malaysia

Acidic soils constrain rice production in Malaysia by reducing yields and increasing input intensity, which affects energy usage and greenhouse gas (GHG) emissions. This study applied a manual life cycle assessment (LCA) framework to evaluate energy demand and GHG emissions under standard (pH > 5) and acidic (pH < 5) soil conditions in the Integrated Agricultural Development Area (IADA), Seberang Perak, Malaysia. Liming under acidic conditions increased total energy consumption by 2 % (23,500 MJ/ha) and GHG emissions by 139 % (2,326 kg CO2-eq/ha). The regression analysis revealed high associations between soil pH, yield (R2 = 0.81), energy efficiency (R2 = 0.81), and GHG intensity (R2 = 0.72), indicating soil conditions highly influenced sustainability performance.

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Publication Details

Journal
Engineering in Agriculture Environment and Food
Published
2026-09-29
DOI
https://doi.org/10.37221/eaef.19.3_132
Primary Topic
Agriculture Sustainability and Environmental Impact
Type
article
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article

A farm-gate life cycle assessment (LCA) of energy use and greenhouse gas emissions in rice production under acidic soil conditions in Malaysia

Adilah Surimin, Ryozo Noguchi, Roslan ISMAIL
Engineering in Agriculture Environment and Food
Agriculture Sustainability and Environmental Impact
article

A farm-gate life cycle assessment (LCA) of energy use and greenhouse gas emissions in rice production under acidic soil conditions in Malaysia

Adilah Surimin, Ryozo Noguchi, Roslan ISMAIL
article en

Abstract

Acidic soils constrain rice production in Malaysia by reducing yields and increasing input intensity, which affects energy usage and greenhouse gas (GHG) emissions. This study applied a manual life cycle assessment (LCA) framework to evaluate energy demand and GHG emissions under standard (pH > 5) and acidic (pH < 5) soil conditions in the Integrated Agricultural Development Area (IADA), Seberang Perak, Malaysia. Liming under acidic conditions increased total energy consumption by 2 % (23,500 MJ/ha) and GHG emissions by 139 % (2,326 kg CO2-eq/ha). The regression analysis revealed high associations between soil pH, yield (R2 = 0.81), energy efficiency (R2 = 0.81), and GHG intensity (R2 = 0.72), indicating soil conditions highly influenced sustainability performance.

Engineering in Agriculture Environment and FoodVol. 19(3)
Universiti Putra Malaysia (MY), Kyoto University (JP)
Zero hunger
Openalex Percentile: Top 12%
Agriculture Sustainability and Environmental Impact
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A farm-gate life cycle assessment (LCA) of energy use and greenhouse gas emissions in rice production under acidic soil conditions in Malaysia — Adilah Surimin, Ryozo Noguchi, et al. · Engineering in Agriculture Environment and Food (2026) | TGRS Research Map | TGRS