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地表覆盖方式对广西柑橘果园土壤水分特征的影响
引用本文:邓婉珍,黄太庆,甘磊,黄雁飞,路丹.地表覆盖方式对广西柑橘果园土壤水分特征的影响[J].南方农业学报,2022,53(11):3049-3057.
作者姓名:邓婉珍  黄太庆  甘磊  黄雁飞  路丹
作者单位:1. 广西农业科学院农业资源与环境研究所, 广西南宁 530007;2. 桂林理工大学/广西环境污染控制理论与技术重点实验室, 广西桂林 541004;3. 广西大学农学院, 广西南宁 530004
基金项目:广西重点研发计划项目(桂科AB1850024)
摘    要:【目的】探究不同覆盖方式对广西柑橘果园土壤性质及土壤水分变化的影响,为该区域果园杂草管理及水分管理提供参考依据。【方法】以广西柑橘果园为研究对象,设喷施除草剂对照(CK)、防草布覆盖(GPC)和自然生草割刈(NGM)3种果园地表覆盖处理,并于处理一年后测定0~10 cm、10~30 cm、30~50 cm和50~70 cm土层的土壤基本理化性质和果园土壤水分变化特征。【结果】不同地表覆盖处理对柑橘果园表层0~10 cm土壤的容重、总孔隙度和有机质含量有明显影响,对深层土壤影响较小。NGM处理使0~10 cm土层土壤容重显著降低7.52%(P<0.05,下同),土壤有机质含量提高7.99%;GPC处理使0~10 cm土层土壤容重降低3.01%,土壤有机质含量降低14.15%。相同土壤水吸力下,0~10 cm和10~30 cm土层土壤含水量表现为GPC>CK>NGM;30~50 cm土层表现为CK≈GPC>NGM;50~70cm土层表现为CK>NGM>GPC。在0~10 cm土层中,NGM处理的速效水含量(0.079 cm3/cm3)最高;在30~50 cm和50~70 cm土层,GPC处理的速效水含量最高,分别较CK提高11.00%和18.12%。GPC和NGM处理均可提高各土层的土壤含水量,其中GPC处理0~10 cm和10~30 cm土层含水量增幅更大,而NGM处理30~50 cm和50~70 cm土层含水量增幅更明显。GPC和NGM处理均可显著提高0~70 cm各土层土壤贮水量,其中GPC处理提高2.83%~4.26%,NGM处理提高4.02%~4.55%。【结论】自然生草割刈处理在改善柑橘园表层土壤环境、增强土壤蓄水保墒和供水能力方面具有较好的效果,而防草布覆盖处理在保水方面也有较大优势。在生产中建议采用自然生草割刈的管理方式。

关 键 词:柑橘果园    防草布覆盖    自然生草割刈    土壤水分特征曲线    土壤含水量
收稿时间:2022-04-17

Effects of mulching pattern on soil moisture characteristics in Guangxi citrus orchard
DENG Wan-zhen,HUANG Tai-qing,GAN Lei,HUANG Yan-fei,LU Dan.Effects of mulching pattern on soil moisture characteristics in Guangxi citrus orchard[J].Journal of Southern Agriculture,2022,53(11):3049-3057.
Authors:DENG Wan-zhen  HUANG Tai-qing  GAN Lei  HUANG Yan-fei  LU Dan
Institution:1. Agricultural Resource and Environment Research Institute, Guangxi Academy of Agricultural Sciences, Nanning, Guangxi 530007, China;2. Guilin University of Technology/Guangxi Key Laboratory of Environmental Pollution Control Theory and Technology, Guilin, Guangxi 541004, China;3. College of Agriculture, Guangxi University, Nanning, Guangxi 530004, China
Abstract:【Objective】To explore effects of mulching pattern on soil property and soil moisture in Guangxi citrus orchard,and to provide a theoretical basis for orchard weed and moisture management in this orchard.【Method】Taking a citrus orchard in Guangxi as research object,3 treatments,spraying herbicide(CK),grass-proof cloth coverage(GPC) and natural grass mowing(NGM) were set. After one year of treatment,basic soil physicochemical properties and soil moisture characteristics of the orchard at layers of 0-10 cm,10-30 cm,30-50 cm and 50-70 cm were measured.【Result】Different mulching treatments had significant effects on bulk density,total porosity and organic matter content of the surface soil(0-10 cm),but no significant effects on the deep soil layers. In 0-10 cm soil layer,NGM treatment significantly(P<0.05,the same below) reduced soil bulk density by 7.52% and increased soil organic matter by 7.99%;GPC treatment reduced soil bulk density by 3.01% and soil organic matter by 14.15%. Under the same soil suction,the soil moisture content in 0-10 cm and 10-30 cm soil layers was in the order of GPC>CK>NGM;in 30-50 cm soil layer was CK≈GPC>NGM;and in 50-70 cm soil layer was CK>NGM>GPC. In 0-10 cm soil layer,the highest available water content(0.079 cm3 /cm3 ) was found in NGM treatment;in 30-50 cm and 50-70 cm soil layers,the highest available water content was found in the GPC treatment,which was 11.00% and 18.12% higher than that in CK,respectively. Both GPC and NGM treatments could increase soil moisture content in each layer,and the soil moisture content in 0-10 cm and 10-30 cm layers under GPC treatment had a higher increase,while the soil moisture content in 30-50 cm and 50-70 cm layers under NGM treatment had a greater increase. GPC and NGM treatments could significantly increase soil moisture storage capacity in 0-70 cm layer,in which GPC treatment brought an increase of 2.83%-4.26%,and NGM treatment 4.02%-4.55%.【Conclusion】Natural grass mowing treatment has a good effect on surface soil environment improvement,soil moisture storage and water supply capacity enhancement of citrus orchard,and it also has great advantages of water conservation. Therefore,it is suggested to adopt natural grass mowing management pattern in production.
Keywords:
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