Uneingeschränkter Zugang

Effects of different variants of basalt-sulphur improver in the fertilisation of spring oilseed rape

, ,  und   
24. Feb. 2024

Zitieren
COVER HERUNTERLADEN

Akay A., Şeker C., Negiş H., 2019. Effect of enhanced elemental sulfur doses on pH value of a calcareous soil. Journal of Agricultural Sciences, 29: 34-40, doi: 10.29133/yyutbd.467632. Search in Google Scholar

Aksouh-Harradj N.M., Campbell L.C., Maile R.J., 2006. Canola response to high and moderately high temperature stresses during seed maturation. Canadian Journal of Plant Science, 86(4): 967-980. Search in Google Scholar

Brodowska M.S., 2004. Wpływ nawożenia siarka na zawartość azotu w roślinach w warunkach zróżnicowanego zaopatrzenia gleby w wapń i magnez. Annales Universitatis Mariae Curie-Skłodowska. Sectio E. Agricultura, 59(4): 1861-1869. Search in Google Scholar

Chahal H.S., Sing A., Malhi G.S., 2020. Role of sulphur nutrition in oilseed crop production – A review. Journal of Oilseed Brassica, 11(2): 95-102. Search in Google Scholar

Chen B., Shan X.Q., Shen D.Q., Mou S.F., 1997. Nature of the HCl-soluble sulfate in the sequential extraction for sulfur speciation in soils. Fresenius’ Journal of Analytical Chemistry, 357: 941-945. Search in Google Scholar

Conceição L.T., Silva G.N., Holsback H.M.S., de Figueiredo Oliveira C., Marcante N.C., de Souza Martins É., Santos E.F., 2022. Potential of basalt dust to improve soil fertility and crop nutrition. Journal of Agriculture and Food Research, 10: 100443, https://doi.org/10.1016/j.jafr.2022.100443. Search in Google Scholar

Dobrokhotov A., Kozyreva L., Fesenko M., Dubovitskaya V., Sushko S., 2023. Soil sulfur deficiency restricts canola (Brassica napus) productivity in northwestern Russia regardless of npk fertilization level. Agriculture, 13(7), 1409, https://doi.org/10.3390/agriculture13071409. Search in Google Scholar

Dyrektywa 2010/75/UE w sprawie emisji przemysłowych (zintegrowane zapobieganie zanieczyszczeniom i ich kontrola) (wersja przekształcona). https://sip.lex.pl/akty-prawne/dzienniki-UE/dyrektywa-2010-75-ue-w-sprawie-emisji-przemyslowych-zintegrowane-67999082 (accessed 1.05.2023). Search in Google Scholar

Egesel C.Ö., Gül M.K., Kahrıman F., 2009. Changes in yield and seed quality traits in rapeseed genotypes by sulphur fertilization. European Food Research and Technology, 229: 505-513. Search in Google Scholar

Fertilizer Recommendations. Part I. 1990. Limit values for estimating the concentration of macro- and microelements in soils. 2nd edition., Institute of Soil Science and Plant Cultivation, Pulawy, pp. 1-26 / Zalecenia Nawozowe. Część I. 1990. Liczby graniczne do wyceny zawartości w glebach makro- i mikroelementów. Wydanie II, Instytut Uprawy Nawożenia i Gleboznawstwa, Puławy, pp. 1-26. (in Polish) Search in Google Scholar

Filipiak K., Wilkos S., 1995. Obliczenia statystyczne. Opis systemu AWAR. Instytut Uprawy Nawożenia i Gleboznawstwa, Puławy, R(324): 1-52. Search in Google Scholar

Garbowski T., Bar-Michalczyk D., Charazińska S., Grabowska-Polanowska B., Kowalczyk A., Lochyński, P., 2023. An overview of natural soil amendments in agriculture. Soil and Tillage Research, 225: 105462, doi: 10.1016/j.still.2022.105462 Search in Google Scholar

Gillman G.P., Burkett D.C., Coventry R.J., 2002. Amending highly weathered soils with finely ground basalt rock. Applied Geochemistry, 17(8): 987-1001, doi: 10.1016/S0883-2927(02)00078-1. Search in Google Scholar

Green M.B., Bailey A.S., Bailey S.W., Battles J.J., Campbell J.L., Driscoll C.T., Fahey T.J., Lepine L.L., Likens G.E., Ollinger S.V., Schaberg P.G., 2013. Decreased water flowing from a forest amended with calcium silicate. Proceedings of the National Academy of Sciences, 110(15): 5999-6003, doi: 10.1073/pnas.1302445110. Search in Google Scholar

Gupta V.V.S.R., Lawrence J.R., Germida J.J., 1988. Impact of elemental sulfur fertilization on agricultural soils. I. Effects on microbial biomass and enzyme activities. Canadian Journal of Soil Science, 68(3): 463-473, doi: 10.4141/cjss88-045. Search in Google Scholar

Hendronursito Y., Barus J., Amin M., Al Muttaqii M., Rajagukguk T.O., Isnugroho K., Birawidha D.C., 2019. The local mineral potential from East Lampung-Indonesia: the use of basalt rock as a stone meal for cassava plant. Journal of Degraded and Mining Lands Management, 7(1): 1977-1985, doi: 10.15243/jdmlm.2019.071.1977. Search in Google Scholar

Hu Z.Y., Zhao F.J., McGrath S.P., 2005. Sulphur fractionation in calcareous soils and bioavailability to plants. Plant and Soil, 268: 103-109. Search in Google Scholar

Karimizarchi M., Aminuddin H., Khanif M.Y., Radziah O., 2014. Elemental sulphur application effects on nutrient availability and sweet maize (Zea mays L.) response in a high pH soil of Malaysia. Malaysian Journal of Soil Science, 18(1): 75-86. Search in Google Scholar

Khan N., Jan A., Khan I.I.A., Khan N., 2002. Response of canola to nitrogen and sulphur nutrition. Asian Journal of Plant Sciences, 1: 516-518. Search in Google Scholar

Krauze A., Bowszys T., 2000. Wpływ stosowania różnych technologii nawozów siarkowych na plonowanie i jakość rzepaku ozimego i jarego. Folia Universitatis Agriculturae Stetinensis, Agricultura, 81: 133-142. Search in Google Scholar

Korzeniowska J., Stanisławska-Glubiak E., Hoffmann J., Igras J., 2012. Zwiększenie efektywności surowców fosforytowych poprzez dodatek siarki. Cz. 3. Ocena nawozów fosforytowo-siarkowych na podstawie wskaźników roślinnych. Przemysł Chemiczny, 91(5): 797-800. Search in Google Scholar

Lipiński W., Terelak H., Motowicka-Terelak T., 2003. Propozycja liczb granicznych zawartości siarki siarczanowej w glebach mineralnych na potrzeby doradztwa nawozowego. Roczniki Gleboznawcze, 54(3): 79-84. Search in Google Scholar

Luise L.K., Simone P.A.D.P., Rômulo S.A., Leonardo F.V., José C.S.S., Giuliano M., Éder D.S.M., 2020. Successive off take of elements by maize grown in pure basalt powder. African Journal of Agricultural Research, 15(2): 229-239, doi: 10.5897/AJAR2019.14546. Search in Google Scholar

Luchese A.V., de Castro Leite I.J.G., da Silva Giaretta A.P., Alves M.L., Pivetta L.A., Missio R.F., 2023. Use of quarry waste basalt rock powder as a soil remineralizer to grow soybean and maize. Heliyon, 9(3), e14050, doi: 10.1016/j.heliyon.2023.e14050. Search in Google Scholar

Malarz W., Kozak M., Kotecki A., 2011. The effect of spring fertilization with different sulphur fertilizers on the quality and quantity of seed yield of winter oilseed rape ES Saphir cultivar. Rośliny Oleiste, 32(1): 107-115. Search in Google Scholar

Rameeh V., Niakan M., Mohammadi M.H., 2021. Effects of sulphur on the yield, yield component characters and oil content of oilseed rape. Journal of Agricultural Sciences (Belgrade), 66(1): 17-25. Search in Google Scholar

Ramos C.G., Querol X., Dalmora A.C., de Jesus Pires K.C., Schneider I.A H., Oliveira L.F.S., Kautzmann R.M., 2017. Evaluation of the potential of volcanic rock waste from southern Brazil as a natural soil fertilizer. Journal of Cleaner Production, 142: 2700-2706. Search in Google Scholar

Raport syntetyczny Ministerstwa Klimatu i Środowiska. Krajowy bilans emisji SO2, NOx, CO, NH3, NMLZO, pyłów, metali ciężkich i TZO. Warszawa 2022, https://www.kobize.pl/uploads/materialy/materialy_do_pobrania/krajowa_inwentaryzacja_emisji/Bilans_emisji_za_2020.pdf (accessed: 01.05.2023). Search in Google Scholar

Seidel P.E., Ertel L.G., Pan R., da Silva Franco J.A., dos Santos G.D., 2021. Basalt rock powder and organic compounds in corn crops. Scientia Agraria Paranaensis, 20(3): 287-294. Search in Google Scholar

Shamshuddin J., Fauziah C.I., Anda M., Kapok J., Shazana M.A.R.S., 2011. Using ground basalt and/or organic fertilizer to enhance productivity of acid soils in Malaysia for crop production. Malaysian Journal of Soil Science, 15(1): 127-146. Search in Google Scholar

Scherer H.W., 2001. Sulphur in crop production – invited paper. European Journal of Agronomy, 14(2): 81-111, https://doi.org/10.1016/S1161-0301(00)00082-4. Search in Google Scholar

Scherer H.W., 2009. Sulfur in soils. Journal of Plant Nutrition and Soil Science, 172(3): 326-335, https://doi.org/10.1002/jpln.200900037. Search in Google Scholar

Siebielec G., Smreczak B., Klimkowicz-Pawlas A., Maliszewska-Kordybach B., Terelak H., Koza P., Łysiak M., Gałązka R., Pecio M., Suszek B., Miturski T., Hryńczuk B., 2012. Monitoring chemizmu gleb Polski w latach 2010–2012. Biblioteka Monitoringu Środowiska, Warszawa, pp. 1-196. Search in Google Scholar

Singh S., Singh S.K., 2016. Use of indigenous sources of sulphur in soils of eastern India for higher crops yield and quality. Agricultural Reviews, 37: 117-124, doi: 10.18805/ar.v0iof.9626. Search in Google Scholar

Sienkiewicz-Cholewa U., Kieloch R., 2015. Effect of sulphur and micronutrients fertilization on yield and fat content in winter rape seeds (Brassica napus L.). Plant, Soil and Environment, 61(4): 164-170, doi: 10.17221/24/2015-PSE. Search in Google Scholar

Skwierawska M., Zawartka L., Zawadzki B., 2008. The effect of different rates and forms of applied sulphur on nutrient composition of planted crops. Plant Soil and Environment, 54(5): 179-189. Search in Google Scholar

Szczepaniak W., Tys J., Chmielewska C., 2022. Zaolejenie nasion rzepaku. Ekspertyza przygotowana dla Polskiego Stowarzyszenia Producentów Oleju, https://pspo.com.pl/publikacje.html. (accessed 23.08.2023) Search in Google Scholar

Szulc W., 2008. Potrzeby nawożenia roślin siarką oraz metody ich wyznaczania. Rozprawy Naukowe i Monografie, 332, Wydawnictwo SGGW, Warszawa. Search in Google Scholar

Tamfuh P.A., Wotchoko P., Nono D.G.K., Ndofor C.N.Y., Nkouathio D.G., Bitom D., 2019. Comparative effects of basalt dust, NPK 20-10-10 and poultry manure on soil fertility and cucumber (Cucumis sativus) productivity in Bafut (Cameroon Volcanic Line). Earth, 8(6): 323-334. Search in Google Scholar

Varenyiova M., Ducsay L., Ryant P., 2017. Sulphur nutrition and its effect on yield and oil content of oilseed rape (B. napus L.). Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis, 65: 555-562. Search in Google Scholar

Verma S., Singh A., Swayamprabha Pradhan S., Kumar V., Kumar V., 2022. Effect of sulphur nutrition on the production potential of Brassica spp.: A review. International Journal of Plant and Soil Science, 34(24): 880-887, doi: 10.9734/ijpss/2022/v34i242714. Search in Google Scholar

Wang Z.H., Li S.X., Malhi S., 2008. Effects of fertilization and other agronomic measures on nutritional quality of crops. Journal of the Science of Food and Agriculture, 88(1): 7-23, doi: 10.1002/jsfa.3084. Search in Google Scholar

Zhao F.J., Withers P.J.A., Evans E.J., Monaghan J., Salmon S.E., Shewry P.R., McGrath S.P., 1997. Sulphur nutrition: an important factor for the quality of wheat and rapeseed. Soil Science and Plant Nutrition, 43(sup1): 1137-1142, https://doi.org/10.1080/00380768.1997.11863731. Search in Google Scholar

Zuffo A.M., Dias de Morais K.A., Aguilera J.G., Ratke R.F., Steiner F., 2022. Agronomic performance of maize crop in response to the application of metabasalt powder rates. Bulgarian Journal of Agricultural Science, 28(3): 482-487. Search in Google Scholar

Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
1 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Biologie, Botanik, Ökologie