Organic fertilizer decomposed with biofilm biofertilizer to nutrients status and yield of shallot on acid and alkaline soil

The use of organic fertilizer in organic farming increases carbon sequestration so will reduce CO2 concentration in the atmosphere and impact of global warming. Research aims to study the effect of biofilm biofertilizer (BiO2) formulas and organic fertilizer dosages on soil nutrients status and shal...

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Main Authors: Sudadi, Dewi Widyatmani Sih, Hadiwiyono
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/104/e3sconf_9th-iccc_01029.pdf
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author Sudadi
Dewi Widyatmani Sih
Hadiwiyono
author_facet Sudadi
Dewi Widyatmani Sih
Hadiwiyono
author_sort Sudadi
collection DOAJ
description The use of organic fertilizer in organic farming increases carbon sequestration so will reduce CO2 concentration in the atmosphere and impact of global warming. Research aims to study the effect of biofilm biofertilizer (BiO2) formulas and organic fertilizer dosages on soil nutrients status and shallot yield in acid (Alfisol) and alkaline (Vertisol), Experiment was conducted in field with two treatment factors says BiO2 formula (F0, F1, F2, and F3) and doses of organic fertilizer composted with biofilm biofertilizers i.e 0, 10 and 20 tonha-1 (D0, D10, and D20). As a comparison treatment was NPK at a rate of 200 kg urea, 200 kg ZA, 400 kg SP-36 and 250 kg KCl per hectare). The observed variables include available-P, exchangeable-K and shallot bulb weights. Data analyzed by ANOVA followed by DMRT at 95% level confidence. The dose of organic fertilizer increased significantly of observed variables, while the formula of BiO2 was not. The application of organic fertilizer at 20 tonha-1 increased available-P, exchangeable-K and weight of shallot bulbs on Vertisols and Alfisols. Compared to the NPK fertilizer treatment, the application of 20 tonha-1 organic fertilizer provided higher shallot yield on Alfisol soil but lower on Vertisol soil. It need further reseacr to identified the factor causing lower yield on Vertisol.
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spelling doaj.art-57cc2dad059d45bd82ad4299b4759aa72024-01-26T10:44:01ZengEDP SciencesE3S Web of Conferences2267-12422023-01-014670102910.1051/e3sconf/202346701029e3sconf_9th-iccc_01029Organic fertilizer decomposed with biofilm biofertilizer to nutrients status and yield of shallot on acid and alkaline soilSudadi0Dewi Widyatmani Sih1Hadiwiyono2Soil Science Study Program, Faculty of Agriculture, Sebelas Maret UniversitySoil Science Study Program, Faculty of Agriculture, Sebelas Maret UniversityAgrotechnology Study Program, Faculty of Agriculture, Sebelas Maret UniversityThe use of organic fertilizer in organic farming increases carbon sequestration so will reduce CO2 concentration in the atmosphere and impact of global warming. Research aims to study the effect of biofilm biofertilizer (BiO2) formulas and organic fertilizer dosages on soil nutrients status and shallot yield in acid (Alfisol) and alkaline (Vertisol), Experiment was conducted in field with two treatment factors says BiO2 formula (F0, F1, F2, and F3) and doses of organic fertilizer composted with biofilm biofertilizers i.e 0, 10 and 20 tonha-1 (D0, D10, and D20). As a comparison treatment was NPK at a rate of 200 kg urea, 200 kg ZA, 400 kg SP-36 and 250 kg KCl per hectare). The observed variables include available-P, exchangeable-K and shallot bulb weights. Data analyzed by ANOVA followed by DMRT at 95% level confidence. The dose of organic fertilizer increased significantly of observed variables, while the formula of BiO2 was not. The application of organic fertilizer at 20 tonha-1 increased available-P, exchangeable-K and weight of shallot bulbs on Vertisols and Alfisols. Compared to the NPK fertilizer treatment, the application of 20 tonha-1 organic fertilizer provided higher shallot yield on Alfisol soil but lower on Vertisol soil. It need further reseacr to identified the factor causing lower yield on Vertisol.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/104/e3sconf_9th-iccc_01029.pdf
spellingShingle Sudadi
Dewi Widyatmani Sih
Hadiwiyono
Organic fertilizer decomposed with biofilm biofertilizer to nutrients status and yield of shallot on acid and alkaline soil
E3S Web of Conferences
title Organic fertilizer decomposed with biofilm biofertilizer to nutrients status and yield of shallot on acid and alkaline soil
title_full Organic fertilizer decomposed with biofilm biofertilizer to nutrients status and yield of shallot on acid and alkaline soil
title_fullStr Organic fertilizer decomposed with biofilm biofertilizer to nutrients status and yield of shallot on acid and alkaline soil
title_full_unstemmed Organic fertilizer decomposed with biofilm biofertilizer to nutrients status and yield of shallot on acid and alkaline soil
title_short Organic fertilizer decomposed with biofilm biofertilizer to nutrients status and yield of shallot on acid and alkaline soil
title_sort organic fertilizer decomposed with biofilm biofertilizer to nutrients status and yield of shallot on acid and alkaline soil
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/104/e3sconf_9th-iccc_01029.pdf
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AT dewiwidyatmanisih organicfertilizerdecomposedwithbiofilmbiofertilizertonutrientsstatusandyieldofshallotonacidandalkalinesoil
AT hadiwiyono organicfertilizerdecomposedwithbiofilmbiofertilizertonutrientsstatusandyieldofshallotonacidandalkalinesoil