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大口黑鲈池塘内循环流水养殖模式温室气体减排及影响因子

周聃 刘梅 张政 邹松保 倪蒙 原居林

水生态学杂志2026,Vol.47Issue(4):67-74,8.
水生态学杂志2026,Vol.47Issue(4):67-74,8.DOI:10.15928/j.1674-3075.202404300167

大口黑鲈池塘内循环流水养殖模式温室气体减排及影响因子

Greenhouse Gas Emissions and Influencing factors from Micropterus salmoides Aquaculture

周聃 1刘梅 1张政 2邹松保 1倪蒙 1原居林1

作者信息

  • 1. 浙江省淡水水产研究所,农业农村部淡水渔业健康养殖重点实验室,浙江湖州 313001
  • 2. 浙江省淡水水产研究所,农业农村部淡水渔业健康养殖重点实验室,浙江湖州 313001||长江大学动物科学技术学院,湖北荆州 434020
  • 折叠

摘要

Abstract

In this study,largemouth bass(Micropterus salmoides)was selected for research,and we investigated the greenhouse gas(GHG)flux(CO2,CH4,and N2O)at the water-air interface under two aquaculture operating systems:inner-pond raceway aquaculture(IPRA)and conventional pond aquacul-ture(UPA).By simultaneously measuring water quality parameters and meteorological factors,we ana-lyzed correlations among variables and identified key drivers of the GHG flux.The aim of the study was to explore the potential reduction in greenhouse gas emissions when using IPRA rather than UPA,and to extend the database on greenhouse gas emissions from freshwater aquaculture.From April 4 to Novem-ber 31 of 2023,we carried out a M.salmoides aquaculture experiment comparing IPRA and UPA,and greenhouse gas fluxes from each system were determined using the closed static opaque chamber-GC method.Water quality indicators and meteorological parameters were measured simultaneously for correlation analysis.In the IPRA culture zone and water purification zones,and in the UPA system,the respective CO2 emission fluxes were in the ranges of-10.14-761.13 mg/(m2·h),-89.92-302.31 mg/(m2·h),and-32.57-492.74 mg/(m2·h),the respective CH4 emission fluxes were in the ranges of-0.26-2.65 mg/(m2h),-0.25-1.52 mg/(m2·h),and 0.10-2.31 mg/(m2·h),and the respective N2O emission fluxes were in the ranges of-0.006 to 0.204 mg/(m2·h),0.012 to 0.161 mg/(m2·h),and 0.006 to 0.145 mg/(m2·h).Correlation analysis showed that humidity and the concentrations of total nitrogen,nitrite nitrogen,and COD were the primary factors influencing greenhouse gas emissions in IPRA system,and air temperature and pressure,and water temperature were the primary factors influencing greenhouse gas emissions in UPA system.The global warming potential(GWP)of the IPRA and UPA systems were 611.88 g/m2 and 1 112.45 g/m2,respectively,while the warming effects per unit of aquatic product were 561.36 g/kg and 1 002.21 g/kg,respectively,both showing UPA GHG>IPRA GHG.Compared to UPA,IPRA reduced CO2 and CH4 emissions,but the difference in N2O emissions was negligible.In summary,the IPRA system significantly reduces greenhouse gas emissions during M.salmoides culture,making it an excellent low-carbon choice for aquaculture.

关键词

大口黑鲈/池塘内循环流水养殖/温室气体排放/增温潜势/影响因子

Key words

Micropterus salmoides/inner-pond raceway aquaculture/greenhouse gas emissions/global warming potential/influencing factors

分类

农业科技

引用本文复制引用

周聃,刘梅,张政,邹松保,倪蒙,原居林..大口黑鲈池塘内循环流水养殖模式温室气体减排及影响因子[J].水生态学杂志,2026,47(4):67-74,8.

基金项目

浙江省科技计划项目(2022C02027) (2022C02027)

湖州公益性应用研究项目(2022GZ24). (2022GZ24)

水生态学杂志

1674-3075

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