Long-term effects of gasification biochar application on soil functions in a Mediterranean agroecosystem: Higher addition rates sequester more carbon but pose a risk to soil faunal communities
Autor: | Àngela Ribas, Stefania Mattana, Alba Llovet, Xavier Domene, Josep M. Alcañiz, Maria J. I. Briones, Laura Márquez, Juan Salvador Chin-Pampillo, Claudio Mondini, Gabriel Gascó, Sara Sánchez |
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Přispěvatelé: | Ministerio de Economía y Competitividad (España), Llovet, Alba [0000-0001-9723-0117], Mattana, Stefania [0000-0001-8427-8816], Chin-Pampillo, Juan [0000-0001-9783-5175], Gascó, Gabriel [0000-0001-6751-2287], Sánchez, Sara [0000-0003-4558-0304], Mondini, Claudio [0000-0002-1561-8036], Briones, María Jesús Iglesias [0000-0002-4805-4919], Márquez, Laura [0000-0003-0495-4154], Alcañiz, Josep Maria [0000-0002-6438-0909], Ribas, Angela [0000-0002-5938-2408], Domene, Xavier [0000-0002-2951-1491], Llovet, Alba, Mattana, Stefania, Chin-Pampillo, Juan, Gascó, Gabriel, Sánchez, Sara, Mondini, Claudio, Briones, María Jesús Iglesias, Márquez, Laura, Alcañiz, Josep Maria, Ribas, Angela, Domene, Xavier |
Rok vydání: | 2021 |
Předmět: |
Agroecosystem
Nutrient cycle Environmental Engineering Nitrous Oxide Carbon sequestration Soil functions Greenhouse gas Nutrient cycling Greenhouse Gases Soil Soil food web Biochar Environmental Chemistry Gasification biochar Biology Waste Management and Disposal Water content Agriculture Carbon Dioxide Pollution Ageing Chemistry Agronomy Charcoal Environmental science Methane |
Zdroj: | The science of the total environment Digital.CSIC. Repositorio Institucional del CSIC instname |
ISSN: | 0048-9697 |
DOI: | 10.1016/j.scitotenv.2021.149580 |
Popis: | 17 Pág. Departamento de Medio Ambiente y Agronomía (INIA) Biochar applications can have important implications for many of the soil functions upon which agroecosystems rely, particularly regarding organic carbon storage. This study evaluated the impacts of adding a highly aromatic gasification biochar at different rates (0, 12 and 50 t ha-1) to a barley crop on the provision of crucial soil functions (carbon sequestration, water content, greenhouse gas emissions, nutrient cycling, soil food web functioning, and food production). After natural ageing in the field for six years, a wide range of soil properties representative of the studied soil functions were measured and integrated into a soil quality index. Results showed that C sequestration increased with biochar rate (23 and 68% higher than in the control for the 12 and 50 t biochar ha-1 treatments, respectively). Water content was enhanced at the 50 t ha-1 treatment depending on the sampling date. Despite biochar additions neither abating nor increasing CO2 equivalent emissions (carbon dioxide plus nitrous oxide and methane), the system shifted from being a methane sink (-0.017 ± 0.01 mg CH4-C m-2 h-1 at the 12 t ha-1 treatment), to a net source (0.025 ± 0.02 mg CH4-C m-2 h-1 at the 50 t ha-1 treatment). In addition, biochar ageing provoked a loss of nitrate mitigation potential, and indeed ammonium production was stimulated at the 50 t ha-1 rate. The 50 t ha-1 treatment also adversely affected nematode and collembolan functional diversity. Lastly, biochar did not affect barley yield. The results of the soil quality index indicated that no biochar treatment provided more benefits to our agricultural soil, and, although the 50 t ha-1 treatment increased C sequestration, this was potentially offset by its harmful effects on soil faunal communities. Therefore, application of this biochar at high rates should be avoided to prevent risks to soil biological communities. We gratefully acknowledge the funding by the project FERTICHAR (AGL2015-70393-R) of the Spanish Ministry of Economy and Competitiveness. We are also grateful to Dr. van den Brink, P. J., and Dr. Šmilauer, P. for their assistance on PRC analysis interpretation and proper use of CANOCO 5, respectively. |
Databáze: | OpenAIRE |
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