Tillage system and farmyard manure impact on soil physical properties, CO2 emissions, and crop yield in an organic farm located in a Mediterranean environment (Croatia)
A 2-year study was carried out in a Croatia to assess the impacts of tillage and fertilisation on soil bulk density (BD), penetration resistance (PR), CO 2 emissions and grain yields. The tillage treatments were: conventional tillage (CT), minimum tillage (MT) and reduced tillage (RT). Inside these...
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Published in: | Environmental earth sciences Vol. 79; no. 3 |
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Main Authors: | , , , , |
Format: | Journal Article |
Language: | English |
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01-02-2020
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Abstract | A 2-year study was carried out in a Croatia to assess the impacts of tillage and fertilisation on soil bulk density (BD), penetration resistance (PR), CO
2
emissions and grain yields. The tillage treatments were: conventional tillage (CT), minimum tillage (MT) and reduced tillage (RT). Inside these plots, subplots were fertilised with organic fertiliser, 600 kg ha
−1
(CF), 15 t ha
−1
(FYM
15
) and 30 t ha
−1
(FYM
30
) of farmyard manure. In 2017, BD at 10–20 cm was significantly higher in MT than in RT and CT. The same was observed in 2018 at 0–10 cm and 10–20 cm. In 2017, RT had a significantly lower PR than MT and CT. In 2018, PR in RT was significantly lower than MT. In 2017 and 2018 FYM
30
and FYM
15
application decreased significantly BD in comparison to CF. In 2017, the highest dose of farmyard manure (FYM
30
50, 5 kg ha
−1
day
−1
) increased significantly CO
2
fluxes comparing to CF (40.7 kg ha
−1
day
−1
). Soil CO
2
fluxes under CT (47.9 and 52.3 kg ha
−1
day
−1
in 2017 and 2018, respectively) were significantly higher than RT (39.1 kg ha
−1
day
−1
) in 2017 and MT (41.7 kg ha
−1
day
−1
) in 2018. Conventional tillage (2.26 t ha
−1
) had significant lower oat yields than RT (2.72 t ha
−1
) and MT (2.56 t ha
−1
). The opposite occurred in barley yields. Farmyard manure significantly increased oat yields in 2017 compared to CF. Overall, reduced tillage with addition of FYM
30
can be considered a sustainable management practice, since improved soil physical properties, reduced CO
2
fluxes and increased grain yield. |
---|---|
AbstractList | A 2-year study was carried out in a Croatia to assess the impacts of tillage and fertilisation on soil bulk density (BD), penetration resistance (PR), CO
2
emissions and grain yields. The tillage treatments were: conventional tillage (CT), minimum tillage (MT) and reduced tillage (RT). Inside these plots, subplots were fertilised with organic fertiliser, 600 kg ha
−1
(CF), 15 t ha
−1
(FYM
15
) and 30 t ha
−1
(FYM
30
) of farmyard manure. In 2017, BD at 10–20 cm was significantly higher in MT than in RT and CT. The same was observed in 2018 at 0–10 cm and 10–20 cm. In 2017, RT had a significantly lower PR than MT and CT. In 2018, PR in RT was significantly lower than MT. In 2017 and 2018 FYM
30
and FYM
15
application decreased significantly BD in comparison to CF. In 2017, the highest dose of farmyard manure (FYM
30
50, 5 kg ha
−1
day
−1
) increased significantly CO
2
fluxes comparing to CF (40.7 kg ha
−1
day
−1
). Soil CO
2
fluxes under CT (47.9 and 52.3 kg ha
−1
day
−1
in 2017 and 2018, respectively) were significantly higher than RT (39.1 kg ha
−1
day
−1
) in 2017 and MT (41.7 kg ha
−1
day
−1
) in 2018. Conventional tillage (2.26 t ha
−1
) had significant lower oat yields than RT (2.72 t ha
−1
) and MT (2.56 t ha
−1
). The opposite occurred in barley yields. Farmyard manure significantly increased oat yields in 2017 compared to CF. Overall, reduced tillage with addition of FYM
30
can be considered a sustainable management practice, since improved soil physical properties, reduced CO
2
fluxes and increased grain yield. A 2-year study was carried out in a Croatia to assess the impacts of tillage and fertilisation on soil bulk density (BD), penetration resistance (PR), CO2 emissions and grain yields. The tillage treatments were: conventional tillage (CT), minimum tillage (MT) and reduced tillage (RT). Inside these plots, subplots were fertilised with organic fertiliser, 600 kg ha−1 (CF), 15 t ha−1 (FYM15) and 30 t ha−1 (FYM30) of farmyard manure. In 2017, BD at 10–20 cm was significantly higher in MT than in RT and CT. The same was observed in 2018 at 0–10 cm and 10–20 cm. In 2017, RT had a significantly lower PR than MT and CT. In 2018, PR in RT was significantly lower than MT. In 2017 and 2018 FYM30 and FYM15 application decreased significantly BD in comparison to CF. In 2017, the highest dose of farmyard manure (FYM30 50, 5 kg ha−1 day−1) increased significantly CO2 fluxes comparing to CF (40.7 kg ha−1 day−1). Soil CO2 fluxes under CT (47.9 and 52.3 kg ha−1 day−1 in 2017 and 2018, respectively) were significantly higher than RT (39.1 kg ha−1 day−1) in 2017 and MT (41.7 kg ha−1 day−1) in 2018. Conventional tillage (2.26 t ha−1) had significant lower oat yields than RT (2.72 t ha−1) and MT (2.56 t ha−1). The opposite occurred in barley yields. Farmyard manure significantly increased oat yields in 2017 compared to CF. Overall, reduced tillage with addition of FYM30 can be considered a sustainable management practice, since improved soil physical properties, reduced CO2 fluxes and increased grain yield. |
ArticleNumber | 70 |
Author | Bilandzija, Darija Bogunovic, Igor Kisic, Ivica Galic, Marija Pereira, Paulo |
Author_xml | – sequence: 1 givenname: Igor surname: Bogunovic fullname: Bogunovic, Igor organization: Department of General Agronomy, Faculty of Agriculture, University of Zagreb – sequence: 2 givenname: Paulo orcidid: 0000-0003-0227-2010 surname: Pereira fullname: Pereira, Paulo email: pereiraub@gmail.com organization: Environmental Management Center, Mykolas Romeris University – sequence: 3 givenname: Marija surname: Galic fullname: Galic, Marija organization: Department of General Agronomy, Faculty of Agriculture, University of Zagreb – sequence: 4 givenname: Darija surname: Bilandzija fullname: Bilandzija, Darija organization: Department of General Agronomy, Faculty of Agriculture, University of Zagreb – sequence: 5 givenname: Ivica surname: Kisic fullname: Kisic, Ivica organization: Department of General Agronomy, Faculty of Agriculture, University of Zagreb |
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Copyright | Springer-Verlag GmbH Germany, part of Springer Nature 2020 Environmental Earth Sciences is a copyright of Springer, (2020). All Rights Reserved. |
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Keywords | Crop yields Land degradation Farmyard manure Tillage Soil compaction |
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Snippet | A 2-year study was carried out in a Croatia to assess the impacts of tillage and fertilisation on soil bulk density (BD), penetration resistance (PR), CO
2... A 2-year study was carried out in a Croatia to assess the impacts of tillage and fertilisation on soil bulk density (BD), penetration resistance (PR), CO2... |
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SubjectTerms | Animal manures Barley Biogeosciences Bulk density Carbon dioxide Carbon dioxide emissions Carbon dioxide flux Crop yield Earth and Environmental Science Earth Sciences Environmental Science and Engineering Farms Farmyard manure Fertilization Fluxes Geochemistry Geology Grain Hydrology/Water Resources Manures Organic farming Organic fertilizers Original Article Penetration resistance Physical properties Soil Soil density Soil improvement Soil physical properties Soil properties Soils Sustainability management Sustainable agriculture Sustainable practices Terrestrial Pollution Tillage |
Title | Tillage system and farmyard manure impact on soil physical properties, CO2 emissions, and crop yield in an organic farm located in a Mediterranean environment (Croatia) |
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