Early impacts of marginal land‐use transition to Miscanthus on soil quality and soil carbon storage across Europe

芒属 固碳 环境科学 农学 土壤碳 土壤质量 表土 多年生植物 能源作物 生物量(生态学) 边际土地 土壤有机质 生物炭 土壤科学 化学 生物 生态学 生物能源 热解 土壤水分 农业 二氧化碳 生物燃料 有机化学
作者
Marta Bertola,Elena Magenau,Enrico Martani,Mislav Kontek,Chris Ashman,Vanja Jurišić,Isabelle Lamy,Jason Kam,Flavio Fornasier,Jon McCalmont,Luisa M. Trindade,Stefano Amaducci,J. C. Brown,Andreas Kiesel,Andréa Ferrarini
出处
期刊:Gcb Bioenergy [Wiley]
卷期号:16 (6) 被引量:1
标识
DOI:10.1111/gcbb.13145
摘要

Abstract Miscanthus , a C 4 perennial rhizomatous grass, is a low‐input energy crop suitable for marginal land, which cultivation can improve soil quality and promote soil organic carbon (SOC) sequestration. In this study, four promising Miscanthus hybrids were chosen to evaluate their short‐term potential, in six European marginal sites, to sequester SOC and improve physical, chemical, and biological soil quality in topsoil. Overall, no differences among Miscanthus hybrids were detected in terms of impacts on soil quality and SOC sequestration. SOC sequestration rate after 4 years was of +0.4 Mg C ha −1 year −1 , but land‐use transition from former cropland or grassland showed contrasting SOC sequestration trajectories. In unfertilized marginal lands, cultivation of high‐yielding Miscanthus genotypes caused a depletion of K (−216 kg ha −1 year −1 ), followed by Ca (−56 kg ha −1 year −1 ), Mg (−102 kg ha −1 year −1 ) and to a lesser extent of N. On the contrary, the biological turnover of organic matter increased the available P content (+164 kg P 2 O 5 ha −1 year −1 ). SOC content was identified as the main driver of changes in biological soil quality. High input of labile plant C stimulated an increment of microbial biomass and enzymatic activity. Here, a novel approach was applied to estimate C input to soil from different Miscanthus organs. Despite the high estimated plant C input to soil (0.98 Mg C ha −1 year −1 ), with significant differences among sites and Miscanthus hybrids, it was not identified as a driver of SOC sequestration. On the contrary, initial SOC and nutrients (N, P) content, as well as their elemental stoichiometric ratios with C, were the key factors controlling SOC dynamics. Introducing Miscanthus on marginal lands impacts positively soil biological quality over the short term, but targeted fertilization plans are needed to secure crop yield over the long term as well as the C sink capacity of this perennial cropping system.
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