ON THIS PAGE

Warming Contrasts in Tropical Soil Respiration: What Published Model Summaries Can Tell Us

Ashaq Ali1, Muhammad Ajmal1, Maqbool Ahmad1
1Department of Mathematics and Statistics, The University of Lahore, Lahore, Pakistan

Abstract

Warming can increase soil respiration while reducing its fitted temperature sensitivity, but these results describe different comparisons. We examine which comparisons can be recovered from the Tropical Responses to Altered Climate Experiment in Puerto Rico. Using fourteen generalized least-squares coefficients, their marginal standard errors, and three annualized efflux increments, we calculate matched-condition treatment ratios, bound uncertainty over admissible coefficient covariances, and assess sensitivity to spatial weights. Shared moisture terms cancel from the treatment contrast. At \(24^\circ C\), warmed-to-ambient geometric-mean ratios are 1.066, 1.465, and 3.284 for the lower, middle, and upper plot pairs. The warmed-to-ambient \(Q_{10}\) ratio is 0.284 (conditional 95% normal-Wald interval: 0.170–0.472). In contrast, an interval for warmed \(Q_{10}\) lying wholly below unity requires a correlation below \(-0.747\) between the temperature and treatment–temperature coefficient estimates. Equal weighting of the annualized increments gives 32.63 \(\mathrm{Mg\,C\,ha^{-1}\,yr^{-1}}\), with 83.45% contributed by the upper pair; the lower–middle mean is 8.10 \(\mathrm{Mg\,C\,ha^{-1}\,yr^{-1}}\). The results establish a lower fitted thermal multiplier and strong concentration of additional efflux among the measured pairs. They do not identify physiological acclimation or a landscape carbon budget. Recovering the missing coefficient covariance and documenting environmental overlap and representative spatial weights would resolve distinct limits on interpretation.

Related Articles
Svitlana Oborska1, Oleksandr Briantsev2, Hanna Briantseva2, Nataliia Posikira-Omelchuk3, Iryna Riabchun4
1Department of Event Management and Leisure Industry, Kyiv National University of Culture and Arts, Kyiv, Ukraine
2Department of Design, Zaporizhzhia National University, Zaporizhzhia, Ukraine
3Special Piano Department, Lviv National Music Academy named after Mykola Lysenko, Lviv, Ukraine
4Department of the Musical and Performing Arts, Faculty of Musical Art and Choreography, Kyiv Borys Grinchenko Metropolitan University, Kyiv, Ukraine
Ihor Yurchenko1, Mariia Kravchenko2, Kyrylo Kharitontsev3, Oleksandra Penchuk3, Taras Rozputenko4
1Department of Visual Design and Art, Institute of Architecture and Design, Lviv Polytechnic National University, Lviv, Ukraine
2Department of Design, Institute of Philology and Mass Communication, Open International University of Human Development “Ukraine”, Kyiv, Ukraine
3Department of Design and Technology, Kyiv National University of Culture and Arts, Kyiv, Ukraine
4Interregional Academy of Personnel Management, Kyiv, Ukraine
Naziha Megnounif-Chiali1, Mama Bouchaour2, Yamina Kherraf3, Soufyane Bensaidi3, Laarej Merad2
1University of Oran 1 Ahmed Ben Bella, Faculty of Medicine, Algeria
2University of Tlemcen, Faculty of Sciences, Department of Physics
3University of Tlemcen, Faculty of Medicine, BP: 119, New Campus, Mansourah, Tlemcen, 13000, Algeria
Jie Shao1
1School of Culture, Tourism and International Education, Henan University of Industry Technology, Henan Nanyang, 473000, China

Citation

Ashaq Ali, Muhammad Ajmal, Maqbool Ahmad. Warming Contrasts in Tropical Soil Respiration: What Published Model Summaries Can Tell Us[J], Archives Des Sciences, Volume 75 , Issue 6, 2025. 1-8. DOI: https://doi.org/10.68304/as/75601.