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流动体系中氯对皮状舟形藻和桥弯藻属的毒性:固定化微藻和可变叶绿素荧光的应用。

Chlorine toxicity to Navicula pelliculosa and Achnanthes spp. in a flow-through system: The use of immobilised microalgae and variable chlorophyll fluorescence.

机构信息

Centre for Environment Fisheries and Aquaculture Science (Cefas), Lowestoft Laboratory, Lowestoft, Suffolk NR33 0HT, UK.

Centre for Environment Fisheries and Aquaculture Science (Cefas), Lowestoft Laboratory, Lowestoft, Suffolk NR33 0HT, UK.

出版信息

Aquat Toxicol. 2018 Sep;202:80-89. doi: 10.1016/j.aquatox.2018.06.013. Epub 2018 Jun 25.

Abstract

Chlorination is a widely used antifouling method for freshwater and marine applications. Chlorine added to seawater reacts to form oxidants that are toxic to biofouling organisms. Further, the oxidants that result are short-lived, but may nevertheless affect non-target species in waterbodies receiving the antifouling effluent. This study evaluated the toxicity of chlorinated seawater (e.g. following sodium hypochlorite addition) on two different species of marine benthic diatoms (Achnanthes spp., and Navicula pelliculosa), which are representative of microphytobenthos communities - an important component in coastal habitats that may be exposed to chlorinated seawater. To evaluate the growth inhibition over a 72 h period, algae were immobilised in alginate beads and exposed to different levels of chlorination in a flow through system. Growth rates and physiological condition of the microalgae were evaluated using a Fast Repetition Rate fluorometer (FRRf). To determine whether alginate influenced the sensitivity of algal response, studies were also conducted in a static test system (without renewal of test solutions) using both free cells and immobilised cells with initial chlorine added to achieve a similar range of concentrations as those used in the flow-through study. Within the first hour of the exposure period there was an indication that, for both species, the free algal cells in the static system were more sensitive to exposure to chlorinated seawater than were alginate-immobilised cells in the flow through system. Immobilised cells in a static system with a single addition of chlorine were also less sensitive to chlorination than free algal cells. However, for periods of 24 h or more due to decay of TRO in the static system the exposure of immobilised algae in the flow through system had a greater impact and hence lower effect concentrations. For the flow-through studies Achnanthes spp. was the most sensitive after 72 h exposure with a potential no effect concentration EC value of 0.02 mg l as Cl equivalents expressed as total residual oxidants (TRO) compared 0.04 mg l TRO for N. pelliculosa. Immobilisation of algal cells in alginate was found to be an effective means of determining the impact of chlorination and is likely to be effective for other non-persistent substances. Based on the data produced, the extent and significance of ecological effects of chlorination upon algal species typical of microphytobenthos are likely to be limited providing discharges comply with a maximum allowable concentration of 0.01 mg l TRO at the edge of an agreed mixing zone.

摘要

氯化是一种广泛应用于淡水和海水应用的防污方法。添加到海水中的氯会与形成氧化剂,这些氧化剂对生物污垢生物有毒。此外,产生的氧化剂寿命短,但仍可能影响接收防污废水的水体中的非目标物种。本研究评估了氯化海水(例如添加次氯酸钠后)对两种不同海洋底栖硅藻(Achnanthes spp.和Navicula pelliculosa)的毒性,这两种硅藻是微藻生物群落的代表,是可能暴露于氯化海水中的沿海栖息地的重要组成部分。为了在 72 小时期间评估生长抑制作用,将藻类固定在藻酸盐珠中,并在流动系统中暴露于不同水平的氯化作用。使用快速重复率荧光计(FRRf)评估微藻的生长率和生理状况。为了确定藻酸盐是否会影响藻类反应的敏感性,还在静态测试系统(不更新测试溶液)中进行了研究,使用自由细胞和初始氯添加到固定细胞中,以达到与流动研究中相似的浓度范围。在暴露期的前一个小时内,有迹象表明,对于这两个物种,静态系统中的自由藻类细胞对氯化海水的暴露比流动系统中的藻酸盐固定细胞更敏感。静态系统中单次添加氯的固定细胞也比自由藻类细胞对氯化作用的敏感性更低。然而,对于 24 小时或更长时间的时间,由于静态系统中 TRO 的衰减,暴露于流动系统中的固定藻类的影响更大,因此效应浓度更低。对于流动研究,Achnanthes spp. 在 72 小时暴露后最为敏感,潜在的无效应浓度 EC 值为 0.02mg l 作为氯当量表示为总残留氧化剂(TRO),而 N. pelliculosa 的 TRO 值为 0.04mg l。发现将藻类细胞固定在藻酸盐中是一种确定氯化作用影响的有效方法,并且可能对其他非持久性物质有效。根据所产生的数据,在遵守商定混合区边缘允许的最大 TRO 浓度 0.01mg l 的情况下,氯化作用对微藻生物群落中典型的藻类物种的生态影响的程度和意义可能是有限的。

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