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https://doi.org/https://doi.org/10.5513/JCEA01/27.3.5276

Carbon sequestration of Virginia mallow (Sida hermaphrodita L.): Comparison of winter and spring harvests

Darija BILANDŽIJA ; University of Zagreb Faculty of Agriculture, Division of Agroecology, Svetošimunska cesta 25, 10 000 Zagreb, Croatia
Elvire Desiree KEUNI ; University of Zagreb Faculty of Agriculture, Graduate Student of Sustainability in Agriculture, Food Production and Food Technology in the Danube Region (DAFM), Svetošimunska cesta 25, 10 000 Zagreb, Croatia
Josip LETO ; University of Zagreb Faculty of Agriculture, Division for Plant Sciences, Svetošimunska cesta 25, 10 000 Zagreb, Croatia
Nikola BILANDŽIJA ; University of Zagreb Faculty of Agriculture, Division of Agricultural Engineering and Technology, Svetošimunska cesta 25, 10 000 Zagreb, Croatia


Puni tekst: engleski pdf 691 Kb

str. 881-889

preuzimanja: 0

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Sažetak

The mounting imperative to adopt environmentally sustainable agricultural practices to address climate change has underscored the significance of carbon sequestration through biomass crops. This study investigates the carbon and nitrogen sequestration potential of Virginia mallow (Sida hermaphrodita L. Rusby) by examining its aboveground biomass yields at different harvest times (winter and spring) during two consecutive years (2022 & 2023) to determine the optimal harvest time for maximizing both biomass yields as well as carbon and nitrogen contents. In comparison to spring harvests (7.86 t/ha dry matter; 3.94 t/ha carbon; 0.01 t/ha nitrogen), winter harvests regularly yielded higher dry matter yields (9.07 t/ha) as well as larger carbon (4.38 t/ha) and nitrogen (0.04 t/ha) contents. Spring harvests had greater carbon concentrations (50.1%) than winter harvests (48.3%), but winter harvests had much higher nitrogen concentrations (0.40% vs. 0.185%). The yields of dry matter, carbon, and nitrogen in 2022 were somewhat higher than those in 2023, according to year-to-year comparisons. However, these differences were not statistically significant, indicating that seasonal variation was more significant than yearly fluctuations. Overall, the findings show that winter harvests can be targeted when higher yields and nutrient content in biomass are required, and they provide useful information for managing Virginia mallow for biomass production and carbon sequestration.

Ključne riječi

aboveground biomass; carbon content; climate change mitigation; energy crops; nitrogen content; yield

Hrčak ID:

351603

URI

https://hrcak.srce.hr/351603

Datum izdavanja:

1.10.2026.

Podaci na drugim jezicima: hrvatski

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