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首页> 外文期刊>Aquacultural Engineering: An International Journal >Evaluation of depuration procedures to mitigate the off-flavor compounds geosmin and 2-methylisoborneol from Atlantic salmon Salmo salar raised to market-size in recirculating aquaculture systems
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Evaluation of depuration procedures to mitigate the off-flavor compounds geosmin and 2-methylisoborneol from Atlantic salmon Salmo salar raised to market-size in recirculating aquaculture systems

机译:评估淡水处理程序,以减轻循环水产养殖系统中大西洋鲑Salmo鲑鱼的异味化合物土臭素和2-甲基异冰片醇的市场规模

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摘要

Fish cultured within water recirculating aquaculture systems (RAS) can acquire "earthy" or "musty" off-flavors due to bioaccumulation of the compounds geosmin and 2-methylisoborneol (MIB), respectively, which are produced by certain bacterial species present in RAS biosolids and microbial biofilms. Fish cultured in RAS are generally transferred to separate depuration systems that are flushed with water in a single pass or operated with limited water recirculation (with no biofilter), in order to purge these unpalatable flavors. Technologies and standard operating practices that optimize purging kinetics for Atlantic salmon Salmo salar and other species cultured in RAS are needed to improve the consistency and efficacy of depuration. A 2 x 2 factorial trial was conducted to evaluate techniques to mitigate off-flavor from Atlantic salmon cultured to 3-5 kg in a semi-commercial scale freshwater RAS. Twelve replicated depuration systems (0.5 m(3)) were used to evaluate four combinations (n = 3) of the following standard operating procedure and system design parameters: (1) disinfection of depuration systems as a 1 h static treatment using 250 mg/L hydrogen peroxide (H2O2) prior to stocking fish, (2) no disinfection prior to stocking fish, (3) presence of water aeration media within gas transfer columns of depuration systems, and (4) absence of water aeration media within gas transfer columns of depuration systems. Food-size Atlantic salmon were stocked within the depuration systems and kept off feed for 10 days. Six salmon were harvested from the original RAS on Day 0 and fileted for baseline assessment of off-flavor concentrations. Thereafter, filet samples (n = 3-4) were taken on Days 3, 6, and 10 to evaluate off-flavor kinetics. Hydrogen peroxide disinfection of depuration systems resulted in significantly reduced off-flavor in salmon filets during the depuration period. Results also indicated that the presence of high-surface-area water aeration media shielded biofilms from complete disinfection, resulting in less and slower off-flavor removal from Atlantic salmon filets; while depuration systems void of media resulted in greater and more rapid off-flavor reduction. Thus, water aeration media should not be used in depuration systems because of the challenges posed for effective cleaning, disinfection, and inactivation of off-flavor producing bacteria that may be present, and unit processes and locations that are difficult-to-clean should be excluded. In addition, a wide range of off-flavor concentrations were measured within individual salmon, indicating that one salmon is not a representative sample size to determine market suitability
机译:在水循环水产养殖系统(RAS)中养殖的鱼类可能会由于“土臭素”和“ 2-甲基异冰片醇”(MIB)的生物蓄积而获得“土味”或“发霉”的异味,这些化合物是由RAS生物固体中存在的某些细菌产生的和微生物生物膜。通常将在RAS中养殖的鱼转移到单独的净化系统中,该净化系统可单次用水冲洗或在有限的水循环中操作(无生物过滤器),以清除这些难口的风味。为了提高净化的一致性和功效,需要用于优化大西洋鲑鱼鲑和其他在RAS中养殖的物种的净化动力学的技术和标准操作方法。进行了2 x 2阶乘试验,以评估在半商业规模的淡水RAS中减轻养殖到3-5千克大西洋鲑的异味的技术。使用十二个重复的净化系统(0.5 m(3))评估以下标准操作程序和系统设计参数的四个组合(n = 3):(1)净化系统为250 mg / min的静态处理1 h在放养鱼之前使用过氧化氢(H2O2);(2)在放养鱼之前不进行消毒;(3)净化系统的气体传输塔中存在水曝气介质;(4)气体传输塔中不存在水曝气介质净化系统。在净化系统中放养了食用规格的大西洋鲑鱼,并保持10天不进食。在第0天,从原始RAS中收获了6条鲑鱼,并进行了异味浓度的基线评估。此后,在第3、6和10天采集鱼片样品(n = 3-4),以评估异味动力学。净化系统的过氧化氢消毒可在净化期间显着减少鲑鱼片的异味。结果还表明,高表面积水曝气介质的存在使生物膜无法完全消毒,从而减少了大西洋鲑鱼片中异味的清除速度,而且速度较慢。而没有介质的净化系统可以更快,更快速地减少异味。因此,由于有效清洁,消毒和灭活可能产生异味的细菌所带来的挑战,因此不应该在净化系统中使用水曝气介质,并且应该对难以清洁的单元过程和位置进行处理。排除在外。此外,在单个鲑鱼中测得的异味浓度范围很广,表明一种鲑鱼不是确定市场适用性的代表性样本量。

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