首页> 外文期刊>Journal of Agriculture and Ecology Research International >Effect of Soil Compaction and Bulk Density on the Growth and Yield of Soybean (Glycine max) on Sandy Clay Loam Soil of the Semi-arid Region of Northern Nigeria as Influenced by Tractor Wheel Traffic
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Effect of Soil Compaction and Bulk Density on the Growth and Yield of Soybean (Glycine max) on Sandy Clay Loam Soil of the Semi-arid Region of Northern Nigeria as Influenced by Tractor Wheel Traffic

机译:拖拉机轮流对土壤压实度和堆密度对尼日利亚北部半干旱地区沙质壤土土壤大豆(Glycine max)生长和产量的影响

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Soil compaction from farm machinery is an environmental problem. The effect of compaction on plant growth and yield depends on the crop grown and the environmental conditions that crop encounters. The effect of compaction from tractor traffic on soybean ( Glycine max ), variety TGX1448-2E, on a sandy clay loam soil in the semi-arid region of northern Nigeria was investigated for two growing seasons, 2015 and 2016. A randomized complete block design of the field of plots with treatments of 0,5,10, 15 and 20 passes of a tractor MF 390 was used. Each treatment was replicated three times. The soil bulk density, penetration resistance and soil moisture content for each applied load were measured and the yield from each treatment was determined. Agronomic treatments were kept the same for all plots in both 2015 and 2016. Results showed increased soil bulk density, penetration resistance and soil moisture content with increased tractor passes. Highest grain yield was obtained at 5 tractor passes with a mean bulk density of 1.76 Mgm,sup-3/sup penetration resistance 1.70 MPa and moisture content 13.37% with a mean yield of 2568 kghasup-1/sup and lowest was obtained from 20 tractor passes were 340 kghasup-1/sup. Statistical models were used to predict yield as a function of bulk density, penetration resistance, moisture content, contact pressure, and a number of tractor traffic passes. Grain yield with respect to moisture content gave the best yield prediction (rsup2/sup = 0.94).
机译:农业机械的土壤压实是一个环境问题。压实对植物生长和产量的影响取决于所生长的农作物和农作物所遇到的环境条件。在尼日利亚北部半干旱地区的两个生长季节,研究了拖拉机运输压实对大豆(Glycine max),TGX1448-2E大豆砂质壤土在两个生长季节的影响。随机整块设计使用拖拉机MF 390处理0、5、10、15和20遍的地块面积。每个处理重复三次。测量每种施加的载荷的土壤容重,抗渗透性和土壤水分,并确定每种处理的产量。在2015年和2016年,所有地块的农艺处理均保持不变。结果表明,随着拖拉机通过次数的增加,土壤容重,抗渗透性和土壤含水量均增加。在5个拖拉机道次上获得最高的谷物产量,平均堆密度为1.76 Mgm, -3 耐穿透性为1.70 MPa,含水量为13.37%,平均产量为2568 kgha -1 ,从20次拖拉机通过中获得的最低值是340 kgha -1 。使用统计模型来预测产量,该产量是堆积密度,抗穿透性,水分含量,接触压力和拖拉机通过次数的函数。相对于水分含量的谷物产量给出了最佳的产量预测(r 2 = 0.94)。

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