Greenhouse Gas Emissions from Deboned Milkfish Production in Thailand

Q3 Environmental Science
Prisna Pianjing
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Abstract

Milkfish (Chanos chanos) is one of the fisheries products that are cultured among countries in Southeast Asia. Milkfish processing, particularly deboned milkfish, is available in the market and the demand of this product is increasing as a protein source. The increase of deboned milkfish demand in Thailand stimulates production units to expand their production line. However, the official information about the greenhouse gases (GHGs) emissions of milkfish rearing and deboned process is still unknown. The purposes of this study were to evaluate the GHG emissions from the production of deboned milkfish. The result revealed that CO2 emission was the major GHG of the deboned milkfish production. The CO2 emission from all units was 16.47 kg and the main source of emission was the use of electricity. The N2O emission of all units was 4.99 kg and the major source of emission was the ebullition from milkfish ponds. Emission of CH4 of all units was 0.06 kg and the main source of emission was the ebullition from milkfish ponds. The emissions of N2O or NOX exhibited the highest global warming potential in terms of kgCO2 eq. This finding suggests that improvement of fish ponds environment particularly the microbial activities in the bottom of the ponds should be considered. Good practice of feeding process, water quality control and maintaining the water depth in the pond can help to reduce the GHG emission. Application of alternative energy such as wind and solar energy can help to reduce the use of electricity and the reduction of CO2 emissions.
泰国去骨遮目鱼生产的温室气体排放
遮目鱼(Chanos Chanos)是东南亚国家之间养殖的渔业产品之一。遮目鱼加工,特别是去骨遮目鱼,在市场上可以买到,作为蛋白质来源,该产品的需求正在增加。泰国对去骨遮目鱼需求的增加刺激了生产单位扩大生产线。然而,关于遮目鱼饲养和去骨过程中温室气体(ghg)排放的官方信息仍然未知。本研究的目的是评估去骨遮目鱼生产过程中的温室气体排放。结果表明,二氧化碳排放是带骨遮目鱼生产的主要温室气体。各机组CO2排放量为16.47 kg,主要排放源为用电。各单位N2O排放量为4.99 kg,主要排放源为遮目鱼池的沸腾。各单元的CH4排放量为0.06 kg,主要排放源为遮目鱼池的沸腾。以kgCO2当量计算,N2O或NOX的排放表现出最高的全球变暖潜势。这一发现表明,应考虑改善鱼塘环境,特别是池塘底部的微生物活动。良好的饲养过程、水质控制和保持池塘的水深有助于减少温室气体的排放。应用风能和太阳能等替代能源有助于减少电力的使用和减少二氧化碳的排放。
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来源期刊
International journal of environmental science and development
International journal of environmental science and development Environmental Science-Environmental Science (all)
CiteScore
1.60
自引率
0.00%
发文量
23
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