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首页|期刊导航|农业工程学报|微纳米气泡水耦合生物炭提升红壤通气性及水果黄瓜产量与品质效应

微纳米气泡水耦合生物炭提升红壤通气性及水果黄瓜产量与品质效应

欧阳赞 张杰 梁雪丽 王辉 唐蓉 喻启华 张勇

农业工程学报2025,Vol.41Issue(7):89-101,13.
农业工程学报2025,Vol.41Issue(7):89-101,13.DOI:10.11975/j.issn.1002-6819.202411093

微纳米气泡水耦合生物炭提升红壤通气性及水果黄瓜产量与品质效应

Effects of micro-nano bubble water coupled with biochar on enhancing the red soil aeration,yield and quality of fruit cucumbers in greenhouses

欧阳赞 1张杰 2梁雪丽 2王辉 1唐蓉 1喻启华 1张勇2

作者信息

  • 1. 湖南农业大学水利与土木工程学院,长沙 410128||湖南省灌区精准控灌工程技术研究中心,长沙 410128
  • 2. 湖南省水利水电科学研究院,长沙 410007
  • 折叠

摘要

Abstract

Subsurface drip irrigation(SDI)with micro-nano bubble water(MNBW)is one of the most efficient irrigation modes of water-saving oxygenation.Biochar is one type of biomass resource with abundant porosity.Both of them can be expected to alleviate the hypoxia in the root zone of crops.This study aims to explore the effects of the micro-nano bubble water coupled with the biochar on soil aeration,as well as the yield and quality of crops.The research material was taken as the fruit cucumbers in southern red soil.A two-factor randomized block was also designed in the greenhouse.Three concentrations of dissolved oxygen were set in the micro-nano bubble water(O1,4-5 mg/L;O2,9-10 mg/L;and O3,14-15 mg/L).Three amounts of biochar were also applied(B1,20 t/hm2;B2,40 t/hm2;and B3,60 t/hm2).Additionally,a control group(CK)was established(O,4-5 mg/L,dissolved oxygen in irrigation water under natural conditions;B,0 t/hm2,no biochar applied).An integrated system was employed as the water and fertilizer underground drip irrigation.A systematic investigation was carried out to explore the effects of the dissolved oxygen concentrations of micro-nano bubble water and biochar application amounts on the soil aeration,cucumber yield,and quality over two growing seasons(1st and 2nd crop).The results indicate that the dissolved oxygen concentration of micro-nano bubble water and biochar significantly enhanced the main indicators of soil aeration,yield,and quality(P<0.05).The yield of fruit cucumbers was positively correlated with the soil aeration porosity(P<0.05),soil redox potential(P<0.01),soil oxygen(P<0.01),and irrigation water use efficiency(P<0.01).There was a negative correlation with the soil bulk density(P<0.05).The porous properties of biochar increased the porosity of soil and aeration,thus enhancing the soil moisture and oxygen levels when mixed with the micro-nano bubble water.The bulk density of red soil was reduced correspondingly.The aeration of the red soil was improved for the high yield and quality of fruit cucumbers.In terms of yield,quality,and financial gains,O3B3 was the best treatment among them.The finding can also provide a feasible approach to improve the aeration of clayey red and yellow soils in southern China.

关键词

灌溉/生物炭/土壤/地下滴灌/微纳米气泡水/通气性/产量与品质

Key words

irrigation/biochars/soils/subsurface drip irrigation/micro-nano bubble water/aeration/yield and quality

分类

农业工程

引用本文复制引用

欧阳赞,张杰,梁雪丽,王辉,唐蓉,喻启华,张勇..微纳米气泡水耦合生物炭提升红壤通气性及水果黄瓜产量与品质效应[J].农业工程学报,2025,41(7):89-101,13.

基金项目

湖南省自然科学基金项目(2024JJ6251) (2024JJ6251)

湖南省水利厅科技项目(XSKJ2021000-02,XSKJ2023059-46,XSKJ2024064-24,XSKJ2024064-7) (XSKJ2021000-02,XSKJ2023059-46,XSKJ2024064-24,XSKJ2024064-7)

湖南省教育厅科学研究项目(24A0161,24B0211,22A0144) (24A0161,24B0211,22A0144)

长沙市自然科学基金项目(kq2208080) (kq2208080)

农业工程学报

OA北大核心

1002-6819

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