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Peracetic acid is a suitable disinfectant for recirculating fish-microalgae integrated multi-trophic aquaculture systems

机译:过氧乙酸是用于鱼微藻集成多养水产养殖系统再循环的合适消毒剂

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Integrated multi-trophic aquaculture (IMTA) is a promising direction for the sustainable development of aquaculture. Microalgae have good potential to be integrated with recirculating aquaculture systems because they can use the nitrogen excreted from fish and share the same optimal pH value as in aquaculture. As a byproduct, the microalgae biomass can be used for fish feed or biofuel. However, the recirculating fish-microalgae IMTA system is under constant threat from fish pathogens and phytoplankton-lytic bacteria. Therefore, it is necessary to apply proper disinfectants as prophylaxis or treatment which are effective against these threats, but safe to fish and microalgae. For this purpose, peracetic acid (PAA) is a valid option because it is highly effective against fish pathogens and bacteria at low concentrations and degrades spontaneously to harmless residues. In the present study, we exposed the culture of a marine microalgae Tetraselmis chuii once per day for four days to four PAA products with differing hydrogen peroxide (H"2O"2)/PAA proportions at two concentrations (1 and 2mgL^-^1 PAA). The H"2O"2 solutions at equivalent total peroxide (H"2O"2+PAA) concentrations were tested in parallel. The results show that the growth and photosynthesis of T. chuii were not affected by three of the PAA products (Wofasteril^(R) E400, Wofasteril^(R) E250 and Applichem^(R) 150) and equivalent H"2O"2 solutions at both concentrations. In contrast, Wofasteril^(R) Lspez and an equivalent H"2O"2 solution at both concentrations caused irreversible culture collapse, photosynthesis dysfunction and irreversible cell damage. In conclusion, PAA products with low proportions of H"2O"2 are optimal disinfectants for fish-microalgae IMTA systems.
机译:综合多营养水产养殖(IMTA)是水产养殖可持续发展的有希望的方向。微藻具有与循环水产养殖系统整合的良好潜力,因为它们可以利用从鱼类中排出的氮,并享有与水产养殖相同的最佳pH值。作为副产物,微藻生物质可用于鱼饲料或生物燃料。然而,循环鱼微藻IMTA系统一直受到鱼类病原体和浮游植物溶解细菌的威胁。因此,有必要使用适当的消毒剂进行预防或治疗,以有效地应对这些威胁,但对鱼类和微藻类安全。为此,过乙酸(PAA)是一种有效的选择,因为它对低浓度的鱼类病原体和细菌非常有效,并且会自发降解成无害的残留物。在本研究中,我们每天将海洋微藻Tetraselmis chuii的培养物暴露于两种浓度分别为1和2mgL ^-^ 1的两种浓度不同的过氧化氢(H“ 2O” 2)/ PAA的四种PAA产品中,持续四天。 PAA)。平行测试了当量总过氧化物(H“ 2O” 2 + PAA)浓度的H“ 2O” 2溶液。结果表明,三种PAA产物(WofasterilE400,WofasterilE250和Applichem150)和当量的H 2 O 2均不影响T. chuii的生长和光合作用。两种浓度的溶液。相反,两种浓度的WofasterilLspez和等效的H 2 O 2溶液引起不可逆的培养物崩溃,光合作用功能障碍和不可逆的细胞损伤。总之,低比例的H“ 2O” 2的PAA产品是鱼微藻IMTA系统的最佳消毒剂。

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