果皮生物炭对孟加拉国Sylhet酸性土壤中番茄(Solanum lycopersicon Mill.)和豆角(Lablab purpureus)生长和产量的影响

Ashim Sikdar, Sourov Deb, Nowshad Zaman, Noiret Chakma, Md. Omar Sharif
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引用次数: 0

摘要

生物炭具有表面积大、保水能力强、养分释放缓慢、石灰化能力强等特点,是一种具有广泛应用前景的土壤调理剂。它还可能有助于在酸性土壤等问题土壤中获得理想的作物产量。为此,在锡尔希特农业大学农林与环境科学系的研究领域开展了一项试验田试验,评估了香蕉皮生物炭(BB)和橘子皮生物炭(OB)在酸性土壤条件下对番茄(Solanum lycopersicon Mill.)和豆角(Lablab purpureus)生长和产量的影响。以番茄为例,不同生物炭水平处理的株高(PH)、植株1号叶数(NLP)、叶长(LL)和茎粗(SD)均显著高于对照。番茄的最大PH值(72.20 cm)、NLP值(21)、LL值(35.66 cm)、SD值(9.05 cm)和叶片总叶绿素含量(50.56µmol m-2)以T7 (3% OB w/w + CF)、T4 (3% BB w/w + CF)居首;豆角的最大PH值(373 cm)、NLP值(34)、分枝数(3)和TLCC值(36.65µmol m-2)以T7 (T4)居首。青豆的根长(RL) (43.5 cm)和鲜根重(FRW) (14 g)在T7时最大,T5时次之(1% OB w/w + CF)。结果表明,施用BB和OB对豆豆和番茄的各项产量参数均有积极影响。单株荚果数(NPP)为384个,单株荚果重(IPW)为5.78 g,总荚果重(TPWP)为2220 g,荚果长(PL)为10.57 cm,均以T7最高,T4次之。同样,番茄的NFP(37)、IFW (55 g)和TFWP (1980 g)以T7最高,T4次之。栽培大豆和番茄后,土壤pH值在T3 (2% BB w/w + CF)、T4、T6 (2% OB w/w + CF)和T7显著高于对照。因此,研究结果表明,BB和OB都可能通过改变酸性土壤的pH值对番茄和豆角的生长和产量成分产生积极影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Fruit Peel Biochar on Growth and Yield of Tomato (Solanum lycopersicon Mill.) and Country Bean (Lablab purpureus) in Acidic Soil of Sylhet, Bangladesh
The potential of biochar as a soil conditioner has been approved by scientists worldwide due to its large surface area, high water retention capacity, slow nutrient releasing nature and liming ability; and it might also help to get desirable crop yield in problem soil like acidic soil. Hence, an experimental field trial was operated at the research field of the Department of Agroforestry and Environmental Science, Sylhet Agricultural University, Sylhet to evaluate the performance of banana peel biochar (BB) and orange peel biochar (OB) in the growth and yield of tomato (Solanum lycopersicon Mill.) and country bean (Lablab purpureus) under acidic soil conditions. In case of tomato, plant height (PH), number of leaves plant-1 (NLP), leaf length (LL), and stem diameter (SD) in treatments having different levels of biochar were significantly higher than the control. The maximum PH (72.20 cm), NLP (21), LL (35.66 cm), SD (9.05 cm), and total leaf chlorophyll content (TLCC) (50.56 µmol m-2) of tomato were found in T7 (3% OB w/w + CF) followed by T4 (3% BB w/w + CF) whereas in country bean, the PH (373 cm), NLP (34), branch number (BN) (3), and TLCC (36.65 µmol m-2) were also recorded in T7 followed by T4. The root length (RL) (43.5 cm) and fresh root weight (FRW) (14 g) of country bean were the maximum at T7, followed by T5 (1% OB w/w + CF). According to the results, positive effects of BB and OB application were observed on all the yield parameters of country bean and tomato. The number of pod plant-1 (NPP) (384), individual pod weight (IPW) (5.78 g), total pod weight plant-1 (TPWP) (2220 g), and pod length (PL) (10.57 cm) of country bean were also found to be highest in T7, followed by the T4. Similarly, the highest NFP (37), IFW (55 g), and TFWP (1980 g) of tomato were noted in T7, followed by T4. After the cultivation of country bean and tomato, a significant increase in the soil pH was noticed at T3 (2% BB w/w + CF), T4, T6 (2% OB w/w + CF) and T7 in respect of the control. Therefore, the findings of the study suggest that both BB and OB could have a positive impact on growth and yield components of tomato and country bean by altering soil pH of acidic soil.
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