有机肥与稻壳生物炭的组合对超微土壤中大豆(Glycine Max L)的生长、产量、可利用氮和氮吸收的影响

Ernitha Panjaitan
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摘要

本研究在北苏门答腊棉兰的 Jl. Bunga Sedap malam XVIII 进行,海拔高度为 ± 30 米(masl),研究时间为 2022 年 2 月至 4 月。本研究采用非因子随机分组设计法。因子 B1 = 对照组,B2 = 有机肥 15 吨/公顷,B3 = 稻壳生物炭 15 吨/公顷,B4 = 有机肥 12.5 吨/公顷 + 稻壳生物炭 2.5 吨/公顷,B5 = 有机肥 10 吨/公顷 + 稻壳生物炭 5 吨/公顷,B6 = 有机肥 7.5 吨/公顷 + 稻壳生物炭 7.5 吨/公顷,B7 = 有机肥 5 吨/公顷 + 稻壳生物炭 10 吨/公顷,B8 = 有机肥 2.5 吨/公顷 + 稻壳生物炭 12.5 吨/公顷。从研究结果可以得出结论,奶牛有机肥和稻壳生物炭处理对株高、分枝数、根瘤、每块地豆荚湿重、每块地豆荚干重、土壤 pH 值、碱饱和度(KB)和氮吸收量有显著影响,但对饱满豆荚数、空豆荚数、阳离子交换容量(CEC)和可用氮没有显著影响。处理 B4 的平均结荚数最高(36.67%),处理 B1 最低(1.33%)。处理 B2 的阳离子交换容量(CEC)平均值最高(18.76m3/100g),处理 B6 的平均值最低(10.79me/100g)。处理 B2 的平均可利用氮最高(4.13%),处理 B8 的平均可利用氮最低(3.15%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effect of Combination of Organic Fertilizer and Rice Husk Biochar on Growth, Production, Available N and N Absorption of Soybean (Glycine Max L) in Ultisol Soil
This research was conducted on Jl. Bunga Sedap malam XVIII Medan North Sumatra with an altitude of ± 30 meters above sea level (masl), this research took place from February to April 2022. This study used the Non Factorial Randomized Group Design method. Factor B1 = Control, B2 = Organic fertilizer 15 tons/ha, B3 = Rice husk biochar 15 tons/ha, B4 = Organic fertilizer 12.5 tons/ha + Rice husk biochar 2.5 tons/ha, B5 = Organic fertilizer 10 tons/ha + Rice husk biochar 5 tons/ha, B6 = Organic fertilizer 7.5 tons/ha + Biochar rice husk 7.5 tons/ha, B7 = Organic fertilizer 5 tons/ha + Biochar rice husk 10 tons/ha, B8 = Organic fertilizer 2.5 tons/ha + Biochar rice husk 12.5 tons/ha. From the results of the study it can be concluded that the treatment of cow organic fertilizer and rice husk biochar had a significant effect on plant height, number of branches, root nodules, wet weight of pods/plot, dry weight of pods/plot, soil pH, base saturation (KB), and N absorbed, but had no significant effect on the number of filled pods, number of empty pods, cation exchange capacity (CEC), and N available. The average number of filled pods was highest in treatment B4 (36.67%) and lowest in treatment B1 (1.33%). The highest average cation exchange capacity (CEC) was found in treatment B2 (18.76m3/100g) and the lowest average was found in treatment B6 (10.79me/100g). The highest average available N was found in treatment B2 (4.13%) and the lowest was found in treatment B8 (3.15%).
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