Adaptation test of shade-tolerant soybean to fertilization technology in coconut plantations, Aceh Province

Soybean is an important commodity needed by people in Indonesian. Soybean production is currently decreasing every year because off decreasing land area. The available land in Indonesia is mostly used by farmers to cultivate crops that have the potential to meet their economic needs, so that very fe...

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Main Authors: Asis, Ferayanti Fenty, Idawanni, Pakpahan Lamhot Edy
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/82/e3sconf_icadai21_01021.pdf
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spelling doaj-90bd016b21eb4479ba063b33e4da0a3f2021-10-05T13:13:58ZengEDP SciencesE3S Web of Conferences2267-12422021-01-013060102110.1051/e3sconf/202130601021e3sconf_icadai21_01021Adaptation test of shade-tolerant soybean to fertilization technology in coconut plantations, Aceh ProvinceAsisFerayanti FentyIdawanniPakpahan Lamhot EdySoybean is an important commodity needed by people in Indonesian. Soybean production is currently decreasing every year because off decreasing land area. The available land in Indonesia is mostly used by farmers to cultivate crops that have the potential to meet their economic needs, so that very few farmers use their land for soybean crops. This study aimed to determine the adaptation of shade-tolerant soybean varieties to fertilization technology at various levels of shade coconut plant. The research was conducted at Bandar Baru District, Pidie Jaya Regency, Aceh Province on July to October 2019, with split plot design. The main plot is shade (N), namely N1: 0% shade (without shade); N2: 25% shade and N3: 50% shade, and subplot is the fertilizer package (P) namely P1: recommendation (NPK 150 kg ha-1, organic fertilizer 2 t ha-1); P2: specific location (urea 75 kg ha-1, SP-36 100 kg ha-1, KCl 100 kg ha-1). The results showed that the level of shade had no effect on soybean production, while the fertilization factor showed that the highest production was found in the recommended fertilizer package 1.82 t ha-1, different with the specific location fertilizer package.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/82/e3sconf_icadai21_01021.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Asis
Ferayanti Fenty
Idawanni
Pakpahan Lamhot Edy
spellingShingle Asis
Ferayanti Fenty
Idawanni
Pakpahan Lamhot Edy
Adaptation test of shade-tolerant soybean to fertilization technology in coconut plantations, Aceh Province
E3S Web of Conferences
author_facet Asis
Ferayanti Fenty
Idawanni
Pakpahan Lamhot Edy
author_sort Asis
title Adaptation test of shade-tolerant soybean to fertilization technology in coconut plantations, Aceh Province
title_short Adaptation test of shade-tolerant soybean to fertilization technology in coconut plantations, Aceh Province
title_full Adaptation test of shade-tolerant soybean to fertilization technology in coconut plantations, Aceh Province
title_fullStr Adaptation test of shade-tolerant soybean to fertilization technology in coconut plantations, Aceh Province
title_full_unstemmed Adaptation test of shade-tolerant soybean to fertilization technology in coconut plantations, Aceh Province
title_sort adaptation test of shade-tolerant soybean to fertilization technology in coconut plantations, aceh province
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description Soybean is an important commodity needed by people in Indonesian. Soybean production is currently decreasing every year because off decreasing land area. The available land in Indonesia is mostly used by farmers to cultivate crops that have the potential to meet their economic needs, so that very few farmers use their land for soybean crops. This study aimed to determine the adaptation of shade-tolerant soybean varieties to fertilization technology at various levels of shade coconut plant. The research was conducted at Bandar Baru District, Pidie Jaya Regency, Aceh Province on July to October 2019, with split plot design. The main plot is shade (N), namely N1: 0% shade (without shade); N2: 25% shade and N3: 50% shade, and subplot is the fertilizer package (P) namely P1: recommendation (NPK 150 kg ha-1, organic fertilizer 2 t ha-1); P2: specific location (urea 75 kg ha-1, SP-36 100 kg ha-1, KCl 100 kg ha-1). The results showed that the level of shade had no effect on soybean production, while the fertilization factor showed that the highest production was found in the recommended fertilizer package 1.82 t ha-1, different with the specific location fertilizer package.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/82/e3sconf_icadai21_01021.pdf
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