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Long-term cropping and fertilization influences soil organic carbon, soil water repellency, and soil hydrophobicity

机译:长期种植和施肥会影响土壤有机碳,土壤防水性和土壤疏水性

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Long-term (58 yr) cropping and fertilization effects on soil water repellency were determined for a clay loam soil in southwestern Ontario, Canada by measuring soil organic carbon (SOC), soil water repellency index (RI), and soil hydrophobicity (SH). The 12 treatments (non-replicated) included fertilized and non-fertilized legume-based crop rotation (ROT) with four phases (corn-oat-alfalfa-alfalfa), continuous corn (CC), and continuous Kentucky bluegrass (KBG). We hypothesized that SOC, RI, and SH would be greater for each phase of the ROT versus CC, KBG versus CC and ROT, and fertilized versus non-fertilized treatments. Surface (0-10 cm) soil samples were collected in the spring of 2017. Laboratory measurements were conducted to determine SOC, RI (ratio of soil sorptivity to ethanol and water), and SH (ratio of hydrophobic CH- to hydrophilic CO- functional groups). Mean SOC and SH were greater (P <= 0.05) for each phase of the ROT versus CC (33% to 2.4 times), KBG versus CC (3.2-6 times) and each phase of ROT (2.2-2.8 times), and fertilized versus non-fertilized rotation oats and KBG (15%-30%). Mean RI was greater for KBG versus CC (4.8 times) and ICBG versus each phase of the ROT (3.0-5.5 times) under fertilization only, greater for fertilized versus non-fertilized KBG (6.8 times), but similar for each phase of ROT versus CC. In general, legume-based rotations, perennial grass, and fertilizer enhanced SOC and SH, and to a lesser extent soil RI.
机译:通过测量土壤有机碳(SOC),土壤防水指数(RI)和土壤疏水性(SH),确定了加拿大西南部的粘土壤土土壤(58年)对土壤防水性的影响和施肥效应。 。 12种治疗(未复制)包括施肥和非受精豆科的作物旋转(腐烂),具有四个阶段(玉米 - 燕麦 - 苜蓿 - 苜蓿),连续玉米(CC)和连续肯塔基蓝草(KBG)。我们假设SOC,RI和SH对CC的每相对于CC,KBG与CC和ROT,而受精与非受精处理。在2017年春天收集了表面(0-10厘米)土壤样品。进行实验室测量以确定SOC,RI(土壤吸附率与乙醇和水的比率),以及疏水性CH-亲水的比例团体)。腐烂的每相对Cc(33%至2.4次),KBG与CC(3.2-6次)和腐烂(2.2-2.8次)和每个阶段,以及每相受精与非施肥旋转燕麦和KBG(15%-30%)。平均Ri对KBG而言,只有CC(4.8次)和ICBG,而ICBG仅适用于腐烂(3.0-5.5次),施肥与施肥相比,但对腐烂的每个阶段相似与cc。一般来说,基于豆科的旋转,多年生草和肥料增强了SOC和SH,并在较小程度的土壤RI。

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