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Growth, yield and nutrient uptake of two tomato varieties using some agricultural wastes as nutrient sources on an Alfisol of derived savanna | ||
International Journal of Recycling Organic Waste in Agriculture | ||
مقاله 8، دوره 12، شماره 3، آذر 2023، صفحه 367-379 اصل مقاله (372.78 K) | ||
نوع مقاله: Original Article | ||
شناسه دیجیتال (DOI): 10.30486/ijrowa.2022.1945581.1376 | ||
نویسندگان | ||
Christopher M Aboyeji* 1؛ Gbadamosi Abiodun1؛ Temidayo Olofintoye2؛ Adeniyi Helen2؛ Afolayan John1؛ Bambgose Oluwasola1؛ Adebukola Adewumi1 | ||
1Department of Crop and Soil, College of Agricultural Sciences, Landmark University, Omu-Aran, Kwara State, Nigeria | ||
2National Horticultural Research Institute, P.M.B 5432, Idi-Ishin Ibadan, Nigeria | ||
چکیده | ||
Purpose Agricultural wastes are by-product of agricultural processing. These wastes could serve as alternative materials for soil amendment and nutrient sources for crop production. A screen house experiment was conducted for two successive seasons (2019 and 2020) to evaluate the performance of charred poultry feather waste and plantain peel as nutrient sources on the growth, yield and nutrient uptake of two varieties (Eva and Nemo-netta) of tomato. Method Four levels each of charred poultry feather waste and plantain peel at 2, 5, 8, and 10 t PF ha-1, control and 200 kg NPK ha-1 were used as treatments. The bags were arranged in a completely randomized design. Treatments were replicated four times. Results The application of charred poultry feather waste and plantain peel significantly increased vegetative growth and yield parameters of tomato when compared with the control. Results also showed that combined application of the amendments compete favourably with the application of inorganic fertilizer. Higher values for all the parameters were observed when 5 t PP ha-1 + 5 t PF ha-1 was applied though similar values were found on the vegetative parameters with the applications of 2 t PP ha-1 + 8 t PF ha-1, 10 t PP ha-1, and 10 t PF ha-1. Yield and micronutrient concentration of Eva was also found to be higher than that of Nemo-netta. Conclusion The effects of 5 t PP ha-1 + 5 t PF ha-1 showed clear increase in vegetative, yield and nutrient uptake of Eva variety as compared to Nemo-netta. | ||
تازه های تحقیق | ||
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کلیدواژهها | ||
Tomato varieties؛ Agricultural wastes؛ Performance؛ Mineral composition | ||
مراجع | ||
Aboyeji CM, Adekiya AO, Dunsin O, Agbaje GO, Olofintoye TAJ, Olugbemi O, Okunlola FO (2018) Performance, some nutrient elements and heavy metals accumulation in tomato under soil applied poultry manure, NPK and ZnSO4 fertilizers. Agric Conspec Sci 83:299–305 Aboyeji CM (2021) Effects of application of organic formulated fertilizer and composted Tithonia diversifolia leaves on the growth, yield and quality of okra. Biol Agric Hortic. https://doi.org/10.1080/01448765.2021.1960604 Adekiya AO, Agbede TM, Aboyeji CM, Dunsin O, Simeon VT (2018) Biochar and poultry manure effects on soil properties and radish (Raphanus sativus L.) yield. Biol Agric Hortic. https://doi.org/10.1016/j.scienta.2018.08.048 Adeleye EO, Ayeni LS, Ojeniyi SO (2010) Effect of poultry manure on soil physico-chemical properties, leaf nutrient contents and yield of yam (Dioscorea rotundata) on Alfisol in southwestern Nigeria. Am J Sci 6(10):871–878. http://www.Americanscience.org Aduayi EA, Chude VO, Adebusuyi BA, Olayiwola SO (2002) Fertilizer use and management practices for crops in Nigeria (3rd Ed.). Federal Fertilizer Department, Federal Ministry of Agriculture and Rural Development, Abuja, p.90 Aduku AO (1993) Tropical feedstuff analysis table. Faculty of Agriculture, Department of Animal science, Ahmadu Bello University, Samaru – Zaria, Nigeria Ajasin FO, Omole AJ, Oluokun JA, Obi OO, Owosibo A (2004) Performance characteristics of weaned rabbits fed plantain peel as replacement for maize. WJ Zoology 1(1):30-32. https://doi.org/10.1108/00346650810920169 Akanbi WB, Togun AO (2002) The Influence of Maize-Stover Compost and Nitrogen Fertilizer on Growth Yield and Nutrient Uptake of Amaranth. Sci Hortic 93: 1-8. https://dx.doi.org/10.1016/S0304-4238(01)00305-3 Aminifard MH, Aroiee H, Nemati H, Azizi M, Khayyat M (2012) Effect of nitrogen fertilizer on vegetative and reproductive growth of pepper plants under field conditions. J Plant Nutr 35:235-242. https://doi.org/10.1080/01904167.2012.636126 Ali I, Ullah S, He L, Zhao Q Iqbal A, Wei S, Shah T, Ali N, Bo Y, Adnan M (2020) Combined application of biochar and nitrogen fertilizer improves rice yield, microbial activity and N-metabolism in a pot experiment. Peer J 8:e10311. https://doi.org/10.7717/peerj.10311 Alling V, Hale SE, Martinsen V, Mulder J, Smebye A, Breedveld GD, Cornelissen G (2014) The role of biochar in retaining nutrients in amended tropical soils. J Plant Nutr Soil Sci 177:671–680. https://doi.org/10.1002/jpln.201400109 AOAC (2006) Official methods of analysis of the association of official analytical chemists. AOAC International. 18th. editors, Horwitz W, Latimer GW. Gaithersburg (MD): AOAC International; 2005, p. 1–35 Bidari BI, Hebsur NS (2011) Potassium in relation to yield and quality of selected vegetable crops. Karnataka J Agric Sci 24(1):55-59 Brewer CE, Brown RC (2012) Biochar. In Sayigh A (Ed.), Comprehensive renewable energy. Iowa State University, Ames, IA, USA. 5, 357–384. Oxford: Elsevier Bruun EW, Petersen CT, Hansen E, Holm JK, Hauggaard-Nielsen H (2014) Biochar amendment to coarse sandy subsoil improves root growth and increases water retention. Soil Use Manag 30:109–118. https://doi.org/10.1111/sum.12102 Carter MR (1993) Soil sampling and methods of analysis. CSSS, Boca Raton (FL): Lewis., pp.823 Chan KY, Van Zwieten L, Meszaros I, Downie A, Joseph S (2007) Agronomic values of green waste biochar as a soil amendment. Aust J Soil Res 45(8):629–634. https://doi.org/10.1071/SR07109 Chapman HD, Pratt PF (1961) Methods of analysis for soils, plants and waters. In: University of California, Los Angeles. pp 60-61;150-179 Dou L, Komatsuzaki M, Nakagawa M (2012) Effects of biochar, Mokusakueki and Bokashi application on soil nutrients, yields and qualities of sweet potato. Int Res J Agric Sci Soil Sci 2(8):318–327. http://www.interesjournals.org/IRJAS FAO/WHO (2010) Joint FAO/WHO Expert Committee on Food Additives (JEFCA), “Evaluation of certain food additives Fifty Ninth Report of the Joint FAO/WHO Expert Committee on Food Additives. Geneva (Switzerland): World Health Organization Foley JA, DeFries R, Asner GP, et al (2005) Global consequences of land use, Science 309(5734):570–574. https://doi.org/10.1126/science.1111772 Genstat for Windows (2014) Release 423 DE Discovery Edition,Hemel Hepsteins, UK:VSN International Limited 2014 Hussain M, Farooq M, Nawaz A, Al-Sadi AM, Solaiman ZM, Alghamdi SS, Siddique KH (2017) Biochar for crop production: potential benefits and risks. J Soils Sediments 17:685–716. https://doi.org/10.1007/s11368-016-1360-2 Ibitoye AA (2006) Laboratory manual on basic soil analysis, 2nd Edn, 82 (Foladaye Publishing Company, Akure Isah AS, Amans EB, Odion EC, Yusuf AA (2014) Growth rate and yield of two tomato varieties (Lycopersicon esculentum Mill) under Green manure and NPK fertilizer rate samaru Northern Guinea Savanna. Int J Agron 2014, Article ID: 932759, 8 Pages. https://doi.org/10.1155/2014/932759 Jakobsen S (1995) Aerobic decomposition of organic wastes 2. Value of compost as fertilizer. Resour Conserv Recycl 13:57– 71. https://doi.org/10.1016/0921-3449(94)00015-W Jia X, Yuan W, Ju X (2015) Short report: Effects of biochar addition on manure composting and associated N2O emissions. J Sustain Bioenergy Syst 5:56–61 Kamara EG, Olympio NS, Asibuo JY (2011) Effect of calcium and phosphorus fertilizer on the growth and yield of groundnut (Arachis hypogaea L.). Int Research J Agric Scienc Soil Scienc (IRJAS) 1(8):326-31 Kong L (2014) Maize residues, soil quality, and wheat growth in China. A review. Agron Sustain Dev 34:405-416. https://doi.org/10.1007/s13593-013-0182-5 Kumar V, Malik MF, Singh B (2010) Effect of integrated nutrient management on growth yield and quality of tomato. Progressive Agriculture 10(1):72-76 Marschner H (1995) Mineral nutrition of higher plants, 889pp. 2nd Ed. Academic Press, San Diego. https://doi.org/10.1016/B978-0-12-473542-2.X5000-7 Nelson DW, Sommers LE (1996) Total carbon, organic carbon and organic matter. In methods of soil analysis Part 3. SSSA Book Series No. 5 2nd Edn (Ed. Sparks DL) 961–1010. ASA and SSSA, Madison Oladele S, Adeyemo A, Awodun M (2019) Influence of rice husk biochar and inorganic fertilizer on soil nutrients availability and rain-fed rice yield in two contrasting soils. Geoderma 336:1–11. https://doi.org/10.1016/j.geoderma.2018.08.025 Partey ST, Preziosi RF, Robson GD (2014) Short-term interactive effects of biochar, green manure, and inorganic fertilizer on soil properties and agronomic characteristics of maize. Agric Res 3(2):128–136. https://doi.org/10.1007/s40003-014-0102-1 Rodziewicz A, £aba W (2006) Keratyny i ich biodegradacja, Biotechnologia. 2(73):130-147 Rosik-Dulewska Cz (2006) Podstawy gospodarki odpadami. Wydawnictwo Naukowe PWN, Warszawa Sabiiti EN, Bareeba F, Sporndly E, Tenywa JS, Ledin S, Ottabong E, Kyamanywa S, Ekbom B, Mugisha J, Drake L (2005) Urban market garbage. A resource for sustainable crop/livestock production system and the environment in Uganda. A paper presented at the international conference, Wastes-The Social Context. Edmonton, Canada Sikder S, Joardar JC (2019) Biochar production from poultry litter as management approach and effects on plant growth. Int J Recycl Org Waste Agric 8:47–58. https://doi.org/10.1007/s40093-018-0227-5 Sohi S, Lopez-Capel E, Krull E, Bol R (2009) Biochar, climate change and soil: A review to guide future research,” CSIRO Land and Water Sci. Rep. 05, 09. https://doi.org/10.4225/08/58597219a199a Tel DA, Hagarty M (1984) Soil and plant analysis. International Institute of Tropical Agriculture, Ibadan/University of Guelph, Ontario, Can USDA: U.S. Deprtment of Agriculture, Agricultural Research Service. (2020) SDA Food and Nutrient Database for Dietary Studies 2017-2018. Food Surveys Research. http://www.ars.uda.gov/nea/bhnrc/fsrg Van Roekel R, Prcell L (2016) Understanding and increasing soybean yields. I Proceedings of the Integrated Crop Management Confernce, Ames, IA, USA, 1 December 2016 Vanlauwe B, Batono A, Chianu J, et al (2010) Integrated soil fertility management: Operational definition and consequences for implementation and dissemination. Outlook Agric 39(1):17–24. https://doi.org/1367/000000010791169998 Zheng H, Wang ,Deng X, Herbert S, Xing B (2013) Impacts of adding biochar n nitrogen retention and bioavailability in agricultural soil.Geoderma 206:32–39. https://doi.org/11016/j.geoderma.2013.04.018 Zonglin Li, Chrtoff R, Maisyn P, Amar KM, Manjusri M (2020) Characterization of chicken feather biocarbon for use in sustainable biocmposites. Front Mater 7:3. https://doi.org/1389/fmats.2020.00003 | ||
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