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不同耕整地方式对甘蔗耕层结构特性及产量的影响

罗俊 林兆里 阙友雄 张华 李诗燕 罗会 张才芳 陈建峰

中国生态农业学报2018,Vol.26Issue(6):824-836,13.
中国生态农业学报2018,Vol.26Issue(6):824-836,13.DOI:10.13930/j.cnki.cjea.170918

不同耕整地方式对甘蔗耕层结构特性及产量的影响

Effect of tillage mode on soil structure characteristics of plough layer and sugarcane yield

罗俊 1林兆里 1阙友雄 1张华 1李诗燕 1罗会 1张才芳 1陈建峰2

作者信息

  • 1. 福建农林大学农业部福建甘蔗生物学与遗传育种重点实验室 福州 350002
  • 2. 广西来宾市利拓农业服务有限公司来宾 546100
  • 折叠

摘要

Abstract

In order to establish the mechanical deep-ploughing technology of sugarcane for formation of good plough layer soil structure, the effect of tillage modes on soil plough layer structure and yield components of sugarcane were investigated. An experiment with 3 tillage measures under two planting rows of sugarcane were conducted. The two planting rows were 1.4 m and 1.6 m, respectively, while the subsidiary treatments included three tillage modes as follows — 25 cm rotary tillage (as control), 35 cm sub-soiling plus 25 cm rotary tillage (sub-soiling), 50 cm deep plowing plus 25 rotary tillage (deep plowing). Sugarcane yield characteristics, together with soil bulk density, compactness, porosity, three-phase volumetric rate, field water holding capacity, penetration resistance and shear strength were investigated. The results demonstrated that stem yield of 1.6 m rows spacing was significantly lower than that of 1.4 m rows spacing. Also soil compactness of 1.6 m rows spacing was remarkably lower than that of 1.4 m rows spacing. Soil bulk density of 1.6 m rows spacing was strikingly higher than that of 1.4 m rows spacing. The results also indicated that 1.6 m rows spacing significantly improved penetration resistance and shear strength of soil. Also both the sub-soiling and deep plowing significantly increased sugarcane yield. Compared with the control, the sub-soiling and deep plowing treatments increased soil tillage layer depth, and also improved soil com-pactness and bulk density along with the overall porosity of plough layer. It also showed that sub-soiling dramatically increased total porosity of plough layer soil especially capillary porosity of soil. Field water holding capacity of deep soil also greatly improved by sub-soiling, which finally significantly enhanced plant height elongation and stem diameter thickening at the middle and late growth stages of sugarcane. Also both sub-soiling and deep plowing significantly decreased soil penetration resistance, but with insignificant effect on soil shear strength. Among the three tillage measures, there was no significant difference in volume rate of the liquid phase. However, sub-soiling had the smallest solid volume rate and the largest gas phase volume rate. Then the control resulted in the largest solid volume rate, but the smallest gas phase volume rate. In conclusion, sub-soiling and deep plowing had positive effects on soil physi-cal structure and significantly increased yield of sugarcane. We also concluded that in sugarcane planting areas where large horsepower tractors and high quality loosen machines were used, 35 cm sub-soiling + 25 cm rotary tillage method was the most suitable tillage mode. However, in areas without large horsepower tractors and high quality sub-soiling devices, thick plough layer was maintained by the use of 50 cm deep plowing + 25 cm rotary tillage measure.

关键词

甘蔗/耕作措施/深松/行距/耕层/土壤结构/土壤物理性状/产量

Key words

Sugarcane/Tillage measure/Sub-soiling/Rows spacing/Plough layer/Soil structure/Soil physical properties/Yield

分类

农业科技

引用本文复制引用

罗俊,林兆里,阙友雄,张华,李诗燕,罗会,张才芳,陈建峰..不同耕整地方式对甘蔗耕层结构特性及产量的影响[J].中国生态农业学报,2018,26(6):824-836,13.

基金项目

公益性行业(农业)科研专项项目(201503119-04-01)、国家现代农业产业技术体系建设专项资金(CARS-17)、福建农林大学科技创新专项基金(CXZX2017345)和国家甘蔗工程技术研究中心开放课题(2016-3-1,2017-2-1)资助 This study was supported by the Special Fund for Agro-scientific Research in the Public Interest of China(201503119-04-01),the Special Fund for Construction of Modern Agricultural Technology System of China(CARS-17),the Science Foundation of Fujian Agriculture and Forestry University(CXZX2017345)and the Open Fund of National Engineering Research Center of Sugarcane,China(2016-3-1,2017-2-1). (农业)

中国生态农业学报

OA北大核心CSCDCSTPCD

2096-6237

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