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首页> 外文期刊>The Science of the Total Environment >Nitrous oxide emissions from near-zero water exchange brackish recirculating aquaculture systems
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Nitrous oxide emissions from near-zero water exchange brackish recirculating aquaculture systems

机译:接近零交换淡咸水循环养殖系统的一氧化二氮排放量

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摘要

The development of intensive recirculating aquaculture systems (RAS) with low water exchange has accelerated in recent years as a result of environmental, economic and other concerns. In these systems, fish are commonly grown at high density, 50 to 150kg/m3, using high-protein (30%–60%) feeds. Typically, the RAS consists of a solid treatment and a nitrification unit; in more advanced RAS, there is an additional denitrification step. Nitrous oxide (N2O), a byproduct during nitrification and denitrification processes, is a potent greenhouse gas that destroys the ozone layer. The aim of this study was to measure and assess N2O emissions from a near-zero discharge land-based saline RAS. N2O flux was monitored from the RAS's fish tank, and moving-bed nitrification and activated-sludge (with intrinsic C source) denitrification reactors. N2O emission potential was also analyzed in the laboratory.N2O flux from the denitrification reactors ranged between 6.5 and 48mg/day, equivalent to 1.27±1.01% of the removed nitrate-N. Direct analysis from the fish tank and nitrification reactors could not be performed due to high aeration, which diluted the N2O concentration to below detection limits. Thus, its potential emission was estimated in the laboratory: from the fishponds, it was negligible; from the nitrification reactor, it ranged between 0.4 and 2.8% of the total ammonia-N oxidized. The potential N2O emission from the denitrification reactor was 3.72±2.75% of the reduced nitrate-N, within the range found in the direct measurement. Overall, N2O emission during N transformation in a RAS was evaluated to be 885mg/kg feed or 1.36g/kg fish production, accounting for 1.23% of total N application. Consequently, it is estimated that N2O emission from aquaculture currently accounts for 2.4% of the total agricultural N2O emission, but will decrease to 1.7% by 2030.
机译:由于环境,经济和其他方面的考虑,近年来水交换少的集约化循环水产养殖系统(RAS)的发展已加速。在这些系统中,通常使用高蛋白(30%–60%)饲料以高密度(50至150kg / m3)养鱼。通常,RAS由固体处理和硝化单元组成。在更高级的RAS中,还有一个额外的反硝化步骤。一氧化二氮(N2O)是硝化和反硝化过程中的副产物,是一种强大的温室气体,会破坏臭氧层。这项研究的目的是测量和评估接近零排放的陆基盐水RAS的N2O排放。从RAS的鱼缸,移动床硝化和活性污泥(含固有C源)反硝化反应器中监测N2O通量。在实验室中还分析了N2O的排放潜力,反硝化反应器的N2O通量介于6.5至48mg /天之间,相当于去除的硝酸盐N的1.27±1.01%。由于高曝气,无法将鱼缸和硝化反应器直接分析,这将N2O浓度稀释到检测极限以下。因此,在实验室中估计了其潜在的排放量:从鱼塘中可以忽略不计;在硝化反应器中,其含量为氧化的总氨氮的0.4至2.8%。反硝化反应器中潜在的N2O排放量为还原态硝酸盐-N的3.72±2.75%,在直接测量的范围内。总体而言,在RAS中氮转化过程中的N2O排放评估为885mg / kg饲料或1.36g / kg鱼类产量,占氮施用总量的1.23%。因此,据估计目前水产养殖的N2O排放量占农业N2O排放总量的2.4%,但到2030年将降至1.7%。

著录项

  • 来源
    《The Science of the Total Environment》 |2018年第1期|603-610|共8页
  • 作者单位

    Department of Environmental Hydrology and Microbiology, Zuckerberg Institute for Water Research, Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev;

    Department of Environmental Hydrology and Microbiology, Zuckerberg Institute for Water Research, Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev;

    Department of Environmental Hydrology and Microbiology, Zuckerberg Institute for Water Research, Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aquaculture; Recirculating aquaculture system (RAS); Nitrous oxide (N2O); Nitrification; Denitrification;

    机译:水产养殖;循环水产养殖系统(RAS);一氧化二氮(N2O);硝化;反硝化;

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