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首页> 外文期刊>Journal of Thermal Biology >Use of coastal waters as condenser coolant in electric power plants:Impact on phytoplankton and primary productivity
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Use of coastal waters as condenser coolant in electric power plants:Impact on phytoplankton and primary productivity

机译:将沿海水用作发电厂的冷凝水冷却剂:对浮游植物和初级生产力的影响

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摘要

(1) Studies on phytoplankton entrained in cooling system of a power plant revealed a reduction in biomass and gross primary productivity (GPP) at outfall, compared to intake. (2) GPP at outfall showed 50% reduction even when steam condenser was inoperative and indicated that chemical stress caused more reduction as compared to thermal stress. (3) Field studies carried out during low-dose, shock-dose and off-chlorination periods and short-term laboratory studies further confirmed that chlorination caused greater reduction than temperature. (4) Shannon diversity indices of phytoplankton were similar at intake and outfall. However, species differences were observed. (5) The study emphasises that chlorine is a major stress factor to entrained phytoplankton in cooling water systems. (6) The results are discussed highlighting the point that the relative importance of thermal and chlorine stresses needs to be factored in the development of effluent discharge criteria.
机译:(1)对电厂冷却系统中夹带的浮游植物的研究表明,与摄入相比,排污口的生物量和总初级生产力(GPP)降低。 (2)即使在蒸汽冷凝器不工作时,出水口的GPP也显示出50%的降低,并且表明与热应力相比,化学应力引起的降低更多。 (3)在低剂量,冲击剂量和非氯化阶段进行的现场研究和短期实验室研究进一步证实,氯化导致的降温幅度大于温度。 (4)浮游植物的香农多样性指数在进水口和出水口相似。但是,观察到物种差异。 (5)研究强调,氯是冷却水系统中夹带浮游植物的主要压力因素。 (6)对结果进行了讨论,强调了在制定排放标准时必须考虑热应力和氯应力的相对重要性。

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