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首页> 外文期刊>The Science of the Total Environment >Novel use of the alga Pseudokirchneriella subcapitata, as an early-warning indicator to identify climate change ambiguity in aquatic environments using freshwater finfish farming as a case study
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Novel use of the alga Pseudokirchneriella subcapitata, as an early-warning indicator to identify climate change ambiguity in aquatic environments using freshwater finfish farming as a case study

机译:首次使用藻类假单胞菌作为预警指标,以淡水有鳍鱼类养殖为例,确定水生环境中气候变化的歧义

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Aquaculture is one of the fastest growing food producing industries in the world. This dramatic increase in growth has raised many environmental concerns. Evaluation of fish farm effluent is frequently assessed by physicochemical parameters. This approach indicates potential degradation caused by the effluent and not cumulative effects on aquatic ecosystems. This study investigated relationships between physicochemical parameters (temperature, pH, conductivity, nitrogen, phosphorus, oxygen and suspended solids), typically used to assess water quality with the Pseudokirchneriella subcapitata algal bioassay, which evaluated the potential ecotoxicological effects that freshwater fish farm effluent has on its receiving ecosystems and organisms. Influent and effluent samples were collected from a freshwater farm facility every two weeks from April 2018 to October 2018 in the Republic of Ireland. This monitoring period coincided with one of the warmest and driest periods recorded by meteorological stations in the Republic of Ireland. Physicochemical analyses were found to be similar to those in other farm studies. After exposure of algae to the effluent, stimulation of algal growth rates increased by >50%. This stimulation was observed during periods of increased temperatures which were as a result of heat wave and drought conditions experienced during monitoring. Correlation studies identified a moderately strong relationship between algal stimulation and temperature (r = -0.619). This study discovered that removal of Lemna minor (aquatic plant), impacted strongly on the freshwater farm pond-process to cope with nitrates. The constructed wetland system was unable to efficiently treat nitrates and phosphates during conditions of drought. These findings indicate that standard water quality parameters may not be applicable to inform appropriate suitability of fish farm effluent for discharge to receiving water. The research conducted in this study has suggested a potential toolbox that includes P. subcapitata may provide an early warning system for adverse effects as a result of climate change. (C) 2019 Elsevier B.V. All rights reserved.
机译:水产养殖是世界上增长最快的食品生产行业之一。增长的急剧增加引起了许多环境问题。养鱼场废水的评估经常通过理化参数进行评估。这种方法表明了由废水引起的潜在退化,而不是对水生生态系统的累积影响。这项研究调查了理化参数之间的关系(温度,pH,电导率,氮,磷,氧和悬浮固体),这些参数通常用于通过假单胞菌次生藻类生物测定法评估水质,从而评估了淡水养鱼场废水对水的潜在生态毒理学影响。它的接收生态系统和生物。从2018年4月至2018年10月,每两周从爱尔兰共和国的一个淡水养殖场设施中收集进水和出水样品。该监测期与爱尔兰共和国气象站记录的最温暖和最干燥的时期之一相吻合。物化分析发现与其他农场研究相似。将藻类暴露于污水后,藻类生长速率的刺激增加了> 50%。在温度升高期间观察到了这种刺激,这是由于监测期间经历的热浪和干旱条件所致。相关性研究确定了藻类刺激与温度之间的中等强度关系(r = -0.619)。这项研究发现,去除小Lemna(水生植物)对淡水养殖场池塘处理硝酸盐的过程有很大影响。在干旱条件下,人工湿地系统无法有效处理硝酸盐和磷酸盐。这些发现表明,标准的水质参数可能不适用于告知养鱼场废水排放到接受水的适当适用性。这项研究进行的研究表明,一个潜在的工具箱,包括小亚种P.subcapitata,可能为气候变化造成的不利影响提供预警系统。 (C)2019 Elsevier B.V.保留所有权利。

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