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PENGARUH HERBAFARM DAN PUPUK NPK MUTIARA 16:16:16 TERHADAP PERTUMBUHAN DAN PRODUKSI TANAMAN KACANG HIJAU (Vignaradiata L.) Rahmayani Pulungan; Maizar; M. Nur
DINAMIKA PERTANIAN Vol. 34 No. 2 (2018): Jurnal Dinamika Pertanian Edisi Agustus 2018
Publisher : UIR Press

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.25299/dp.2018.vol34(2).5425

Abstract

ABSTRACT The purpose of this study was to determine the interaction and main effects of herbafarm and NPK Mutiara 16:16:16 fertilizer on the growth and production of mung bean plants. (H) consisting of 4 levels namely 0, 1.5, 3, 4.5 cc / L of water, and the second factor is NPK Mutiara 16:16:16 (N) consisting of 4 levels of treatment namely 0, 10.8, 21.6,32.4 grams/plot, so that there are 16 treatment combinations with 3 replications there are 48 experimental unit plots. Each experimental unit consisted of 12 plants and 2 of them were used as sample plants so that the entire plant was 576 plants. The best treatment was giving herbafarm 3 cc / l water and NPK fertilizer pearl 21.6 g / plot ((H2N2) with the results the best filling speed of dry matter is 0.33 g, the percentage of planted pods is 71.33%, the weight of dry seeds is 27.50 grams per harvest. The main effect of giving herbafarm 3 cc / l water gives the best results on plant height 65.67 cm, age flowering 31.92 days, effective filling time 19.74 days and weighing 100 seeds 5.99 grams, while applying NPK pearl fertilizer 21.6 g / plot gives the best results on plant height 61.67 cm and effective filling time 19.90 days, but the application of pearl NPK fertilizer 32.4 g / plot gave the best results at the age of flowering 32.26 days and weighing 100 seeds 5.96 grams. Keywords: Herbafarm, Growth, Production, Mung Beans.
PENGARUH PEMBERIAN KOMPOS AMPAS TEBU DAN NPK 16:16:16 TERHADAP PERTUMBUHAN SERTA PRODUKSI BUNCIS (Phaseolus vulgaris L.) Rian Juniarto; Maizar; Raisa Baharuddin
DINAMIKA PERTANIAN Vol. 34 No. 3 (2018): Jurnal Dinamika Pertanian Edisi Desember 2018
Publisher : UIR Press

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.25299/dp.2018.vol34(3).5429

Abstract

ABSTRACT The purpose of this study was to determine the effect of the interaction of bagasse compost and NPK 16:16:16 on the growth and production of green beans. This research uses a factorial completely randomized design (RAL) consisting of 2 factors. The first factor of bagasse compost (A) consists of 4 levels, namely: 0, 600, 1200, 1800 g / plot. The second factor NPK 16:16:16 (N) consists of 4 levels, namely: 0, 16, 24, 32 g / plot. Each treatment consisted of 3 replications so that the total was 48 experimental units. The parameters observed were stem length, flowering age, harvest age, number of pods per plant, pod weight per plant, pod weight per plot, pod length per pod, number of remaining pods. Data were analyzed statistically and continued with a BNJ follow-up test of a 5% level. The results showed that the interaction of bagasse compost and NPK 16:16:16 significantly affected pod weight per plant, pod weight per plot, number of pods per plant, pod length per pod, and number of remaining pods. The best treatment of bagasse compost at a dose of 1200 g / plot and NPK 16:16:16 24 g / plot (A2N2). The main effect of the bagasse compost was evident in all observational parameters. The best treatment is 1200 g / plot (A2). The main effect of the 16:16:16 NPK dose is evident in all observational parameters. The best treatment dose is 24 g / per plot (N2). Keywords: Bagasse compost, NPK, Green Beans
PENGARUH FLY ASH DAN LEGIN TERHADAP PERKEMBANGAN BIJI DAN PRODUKSI KACANG HIJAU (Vigna radiata L) Maizar; Nursamsul Kustiawan
DINAMIKA PERTANIAN Vol. 37 No. 1 (2021): Jurnal Dinamika Pertanian Edisi April 2021
Publisher : UIR Press

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.25299/dp.2021.vol37(1).7718

Abstract

The purpose of the research was to know the effect of Fly Ash and legin interaction on seed development and green bean production (Vigna radiata L), and the main influence of each treatment. The study used Completely Randomized Design (RAL) that consisted of two factors: Fly Ash waste with 4 treatment levels, i.e without fly ash, giving flay ash 1.0; 1.5 and 2.0 kg plots, and Legin Inoculation with 4 treatment levels, i.e without legin, inoculation of legin 5.0; 10.0 and 15.0 g / kg of seed. The results showed that the interaction of legin and fly ash inoculation did not affect the growth of green bean seeds, such as changes in seed moisture content, changes in dry seed weight, the rate of dry matter seed collecting (KPBK), effective seeding time (WPE), number of pods and weight of 100 grains seed. However, it affected the percentage of pods and the weight of dry seed harvest. Inoculation of 10 g of legin and 1.5 kg of fly ash was sufficient to produce the highest yield. Legin inoculation affected all parametrs observed. Inokulasi green beans with 10.0 g legin/kg seeds show the best seed development and production for all parameters that were observed. Fly ash feed affected all observation parameters. Giving 1.5 kg of fly ash/plot was sufficient for green bean plants to produce high seed development and production.
RESPONS TANAMAN KACANG HIJAU (Vigna radiata. L) TERHADAP PEMBERIAN AMELIORAN KATION POLIVALEN Cu2+, Fe3+, Zn2+ DAN KOMPOS PELEPAH KELAPA SAWIT PADA MEDIA GAMBUT Nursamsul Kustiawan; Siti Zahrah; Maizar; Tati Maharani
DINAMIKA PERTANIAN Vol. 38 No. 1 (2022): Jurnal Dinamika Pertanian Edisi April 2022
Publisher : UIR Press

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.25299/dp.2022.vol38(1).10417

Abstract

The purpose of this study was to determine the response of mung bean to the application of ameliorant polyvalent cations Cu2+, Fe3+, Zn2+ and Palm Oil Midrib Compost Fertilizer on Peat Media. The research was carried out in the experimental farm of the Faculty of Agriculture, Riau Islamic University, Pekanbaru from March to May 2020. The design used in this study was a factorial completely randomized design consisting of two factors. The first factor is the provision of ameliorant material (A) consisting of 4 levels of A0 (without ameliorant), A1 (Cu2+), A2 (Fe3+), and A3 (Zn2+) and the second factor is the provision of palm frond compost (K) consisting of 4 levels of K0 ( without compost) K1 (12 g/plant) K2 (24 g/plant) K3 (36 g/plant). Observational data were analyzed statistically and further test BNJ level 5%. The results of the study by interaction gave an influence on the observation of seed weight per plant, with the best treatment being the provision of ameliorant Cu2+ and oil palm midrib compost 24 g/plant (A1K2). The main effect of giving ameliorant material gave effect on all observation parameters, namely plant height, relative growth rate, speed of dry matter filling, effective seed filling time, flowering age, harvest age, seed weight per plant, percentage of empty pods, the weight of 100 seeds and root volume, where the best treatment is in the provision of ameliorant Cu2+ (A1). The main effect of oil palm midrib compost affects the observation parameters, namely plant height, relative growth rate, speed of dry matter filling, flowering age, harvest age, seed weight per plant, percentage of empty pods, weight of 100 seeds and root volume where the best treatment is in giving 24 g/plant (K2) of oil palm midrib compost.
RESPON PERTUMBUHAN EKSPLAN ANGGREK BULAN (Phalaenopsis amabilis. L) TERHADAP PEMBERIAN NAPHTALENE ACETIC ACID (NAA) DAN AIR KELAPA SECARA IN VITRO Noer Arif Hardi; Hasan Basri Jumin; Maizar
DINAMIKA PERTANIAN Vol. 38 No. 2 (2022): Jurnal Dinamika Pertanian Edisi Agustus 2022
Publisher : UIR Press

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.25299/dp.2022.vol38(2).11889

Abstract

This study was conducted in the biotechnology laboratory of the Faculty of Agriculture, Riau Islamic University, Pekanbaru. This study was conducted for five months from January to March 2017. The purpose of this study was to examine the effect of the growth response of an orchid butterfly plant on the interaction between NAA and coconut water using In-Vitro. This study used a Completely Randomized Design (RAL) factorial the RAL (Randomized ich consists of two factors. The first factor was NAA consisting of 4 levels, i.e 0, 0.1 ppm, 1.0 ppm, and 10,0 ppm, and the second factor was Coconut Water which also consisted of 4 levels, i.e 30%, 60%, and 90%. With 3 repetitions, the parameters observed: percentage of live explants (%), percentage of explants form shoots (%), number, percentage of explants that make up the root (%), explant form callus (%), shoot age (day), and the percentage of explant form plantlets (%). The last observational data were statistically analyzed and continued with BNJ advanced test at a 5% level. As a result, the interaction of NAA and coconut water affected the percentage of explant root and the percentage of explant form callus with the best concentration of 10 ppm NAA. The provision of coconut water had a significant effect on the number of shoots, the percentage of an explant from the roots shoot emergence, explant percentage forming plantlets on moth orchids with a concentration of 30% Coconut water/L media.
Pengaruh Air Ekstrak Limbah Udang dan Nutrisi AB Mix terhadap Pertumbuhan dan Hasil Tanaman Sawi Pagoda (Brassica narinosa) dengan Ssistem Budidaya Hidroponik Sistem Sumbu (wick) Muhamad Budiwansah; Maizar
Jurnal Agroteknologi Agribisnis dan Akuakultur Vol. 1 No. 1 (2021): Jurnal Agroteknologi Agribisnis dan Akuakultur Edisi Januari 2021
Publisher : UIR PRESS

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.25299/jomaaa.v1i1.7356

Abstract

Tujuan penelitian ini adalah untuk mengetahui pengaruh interaksi konsentrasi air ekstrak limbah udang dan dosis nutrisi AB mix terhadap pertumbuhan dan produksi tanaman sawi pagoda dengan menggunakan hidroponik sistem sumbu (wick). Penelitian ini menggunakan Rancang Acak Lengkap (RAL) Faktorial yang terdiri dari 2 faktor, dimana faktor pertama ialah konsentrasi air ekstrak limbah udang yang terdiri dari 4 taraf yaitu: 0, 50, 100, dan 150 ml/l air dan faktor kedua yaitu dosis nutrisi AB mix terdiri dari 4 taraf yaitu: 0, 700, 1000, dan 1200 ppm/tanaman, sehingga didapat 16 kombinasi perlakuan. Parameter yang diamati yaitu tinggi tanaman (cm), jumlah daun (helai), luas daun (cm2), berat basah ekonomis (g), dan volume akar (cm3) tanaman sawi pagoda. Data hasil pengamatan, dianalisis secara statistik dan diuji lanjut BNJ pada taraf 5%. Hasil penelitian menunjukkan bahwa interaksi air ekstrak limbah udang dan dosis nutrisi AB mix tidak berpengaruh nyata terhadap tinggi tanaman (cm), jumlah daun (helai), luas daun (cm2), berat basah ekonomis (g), dan volume akar (cm3) tanaman sawi pagoda. Namun air ekstrak limbah udang dan nutrisi AB mix menunjukkan pengaruh utama yang nyata terhadap tinggi tanaman (cm), jumlah daun (helai), luas daun (cm2), berat basah ekonomis (g), dan volume akar (cm3) tanaman sawi pagoda. Perlakuan terbaik adalah pada konsentrasi perlakuan air ekstrak limbah udang sebanyak 150 ml/l air, dan dosis nutrisi AB mix sebesar 1200 ppm.