首页> 外文期刊>Arabian journal of geosciences >Efficacy of biochar as soil amendments for soybean (Glycine max L.) morphology, physiology, and yield regulation under drought
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Efficacy of biochar as soil amendments for soybean (Glycine max L.) morphology, physiology, and yield regulation under drought

机译:生物炭作为大豆(Glycine Max L.)形态,生理学和干旱屈服法的疗效

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The current research work intends to explore the role of different types of soil biochar amendments for improving physiological, morphological, and yield attributes of soybean under moisture deficit conditions. A pot study under RCBD (randomized complete block design) was conducted for soybean, different types of biochar, i.e., wheat straw biochar (WSB), rice straw biochar (RSB), sugarcane bagasse biochar (SBB), and wood-shaving biochar (WB) under three levels of amendments (0, 10, and 20 MT ha(-1)) to a sandy loam and clay loam soil with three levels of irrigation (optimum moisture irrigation, OMI, i.e., 75% irrigation of field capacity, moisture deficit irrigation, MDI, i.e., 50% irrigation of FC, and severe moisture deficit irrigation, SMDI, i.e., 40% irrigation of field capacity), by examining physio-morphological parameters, leaf nutrients, yield-related parameters, protein content (%), and oil content (%). Under MDI conditions, among all types of biochar utilized in the study, most influential results with soil biochar amendments were recorded in the plants of 10 MT ha(-1) wood shaving biochar with increased percentage of relative water content, improved membrane stability index, enhanced shoot length as well as leaf area along with improved yield attributes as 19% high oil content than control (MDI) in clay loam soil. However, all other biochar types influence soybean growth more positively under MDI, particularly in clay loam soil. But in sandy loam soil, sugarcane bagasse and wood-shaving biochar had more positive influences on soybean. Thus, 10 MT ha(-1) wood shaving (Acacia nilotica) biochar soil amendment can be assessed as an efficient tool to alleviate the effects of water stress under MDI. However, both types of straw biochar due to their soft nature did not influence soybean growth and yield positively in sandy loam soil.
机译:目前的研究工作旨在探讨不同类型的土壤生物炭修正案的作用,以改善水分缺陷条件下改善大豆的生理,形态学和产量属性。 RCBD(随机完整块设计)下的盆栽研究是针对大豆,不同类型的生物炭,即小麦秸秆生物炭(WSB),稻草生物炭(RSB),甘蔗队Bagasse Biochar(SBB)以及木材剃须生物炭( WB)在三个水平的修正案(0,10和20吨HA(-1))下,砂质壤土和粘土壤土土壤,具有三种灌溉水平(最佳水分灌溉,OMI,即75%的现场容量灌溉,水分缺陷灌溉,MDI,IE,50%FC灌溉,以及严重的水分缺陷灌溉,SMDI,即田间的40%灌溉),通过检查生理形态参数,叶养分,产量相关参数,蛋白质含量( %)和油含量(%)。在MDI条件下,在研究中使用的所有类型的生物炭中,在10吨HA(-1)木材剃须生物炭的植物中,最大有影响力的植物中的植物中记录了相对含水量的百分比,改善膜稳定性指数,增强的枝条以及叶面积以及改善的产量属性为粘土壤土土壤中的对照(MDI)的19%高油含量。然而,所有其他生物炭类型在MDI下更积极地影响大豆生长,特别是在粘土壤土土壤中。但在沙质壤土中,甘蔗队甘蔗渣和木材剃须的生物炭对大豆有更多的积极影响。因此,可以评估10吨HA(-1)木剃(金合欢Nilotica)Biochar土壤修正为减轻MDI下水分胁迫的有效工具。然而,由于其柔软性质,这两种类型的稻草生物炭没有影响大豆生长,并在沙质壤土土壤中积极地屈服。

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