Unverified paper record
Development and validation of a portable TDLAS system for gas chromatography–level quantification of methane emissions from rice
Plant Biotechnology Reports · 3 Nov 2025 · 10.1007/s11816-025-01020-9
Abstract
Abstract Rice cultivation is a significant source of agricultural methane (CH₄), yet routine quantification still relies heavily on gas chromatography (GC), which limits throughput and field deployment. Here, we evaluated a portable tunable-diode-laser absorption spectroscopy (TDLAS) detector (PMD) as an alternative to GC for measuring CH₄ released from pot-grown rice plants under field conditions. Weekly closed-chamber samples from five cultivars were analyzed in parallel by GC (FID/MS) and the PMD. Standard gas tests showed an excellent linear relationship for the PMD (R 2 = 0.9995), indicating a near-ideal response. Across field samples, GC and PMD were strongly associated (R 2 = 0.9943). Bland–Altman analysis revealed a mean bias (GC − PMD) of 8.55 with 95% limits of agreement − 9.16 to 26.26, and Lin’s concordance correlation coefficient was 0.991, evidencing near-perfect agreement despite a slight systematic offset. A simple calibration with a linear regression eliminated the bias and narrowed the limits of agreement, while preserving the high correlation. Residual analyses suggested a modest influence of CO₂ (but not N₂O) on between-method differences. Taken together, the PMD provides rapid, robust, and labor-efficient CH₄ measurements that closely match GC when a fixed calibration is applied, enabling high-throughput phenotyping of rice genotypes and management practices in both laboratory and field settings. This calibrated, portable approach lowers barriers to large-scale screening for low-emission rice, supporting climate-smart crop improvement.
Plant phenotyping relevance
稲品種のメタン放出という植物状態を測定する携帯型TDLAS法を開発・校正し、GCとの一致性を検証しており、フェノタイピング手法が中心である。
titleDevelopment and validation of a portable TDLAS system for gas chromatography–level quantification of methane emissions from rice
abstractHere, we evaluated a portable tunable-diode-laser absorption spectroscopy (TDLAS) detector (PMD) as an alternative to GC for measuring CH₄ released from pot-grown rice plants under field conditions.
abstractA simple calibration with a linear regression eliminated the bias and narrowed the limits of agreement, while preserving the high correlation.
abstractTaken together, the PMD provides rapid, robust, and labor-efficient CH₄ measurements that closely match GC when a fixed calibration is applied, enabling high-throughput phenotyping of rice genotypes and management practices in both laboratory and field settings.
Code and data availability
The paper reports TDLAS vs GC methane measurements from rice, but no public phenotype dataset, images, code, or model repository is provided. Data availability states only that data are included in the article itself, and the supplementary DOCX has no explicit URL in the supplied blocks. No qualifying paper-specific,公开
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