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首页> 外文期刊>International Journal of Agronomy >Short-Term Changes in Fertility Attributes and Soil Organic Matter Caused by the Addition of EM Bokashis in Two Tropical Soils
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Short-Term Changes in Fertility Attributes and Soil Organic Matter Caused by the Addition of EM Bokashis in Two Tropical Soils

机译:在两种热带土壤中添加EM Bokashis引起的肥力属性和土壤有机质的短期变化

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The present work aimed to evaluate the behavior of ten fertility attributes of soil organic matter physical fractions and total organic carbon upon addition of three EM Bokashis to a Rhodic Ferralsol (FRr) and a Dystric Cambisol (CMd). An experiment was carried out in greenhouse in which the soils were placed into plastic trays and cultivated with tomato. A completely randomized design was used with four repetitions and factorial scheme of 2 × 3 + 2, consisting of two soils (FRr and CMd), three EM Bokashis (Poultry Manure Bokashi (BPM); CNPH Bokashi (BC); and Cattle Manure Bokashi (BCM)), and two controls (both soils without addition of Bokashi). The following fertility attributes were evaluated: pH, Ca2+, Mg2+, K+, Na+, P, SB, H + Al, CEC, andV. Particulate organic carbon (POC) and mineral-associated organic carbon (MOC) and total organic carbon (TOC) were also investigated. Finally, the Principal Component Analysis was conducted in order to identify possible patterns related to soils when fertilized with EM Bokashi. The addition of EM Bokashi increased the soil fertility and contents of POC. Different EM Bokashi presents distinguished effects on each soil. The PCA suggests that BPM presents higher capacity to modify the analyzed chemical attributes.
机译:本工作旨在评估在向Rhodic Ferralsol(FRr)和Dystric Cambisol(CMd)添加三种EM Bokashi后,土壤有机质物理成分和总有机碳的十种肥力属性的行为。在温室中进行了试验,将土壤放入塑料托盘中并用番茄栽培。使用完全随机的设计,包括4个重复和2×3 + 2的阶乘方案,包括两个土壤(FRr和CMd),三个EM Bokashi(Poultry Manure Bokashi(BPM),CNPH Bokashi(BC)和Cattle Manure Bokashi) (BCM))和两个对照(均为不添加博卡西的土壤)。评估了以下肥力属性:pH,Ca2 +,Mg2 +,K +,Na +,P,SB,H + Al,CEC和V。还研究了颗粒有机碳(POC),矿物相关有机碳(MOC)和总有机碳(TOC)。最后,进行了主成分分析,以确定与EM Bokashi施肥时与土壤有关的可能模式。 EM Bokashi的添加增加了土壤肥力和POC含量。不同的EM Bokashi在每种土壤上表现出卓越的效果。 PCA建议BPM具有更高的能力来修改分析的化学属性。

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