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Indirect estimation of degradation time for zinc pyrithione and copper pyrithione in seawater

机译:间接估算海水中巯氧吡啶锌和巯氧吡啶铜的降解时间

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摘要

The degradability of two antifouling biocides: zinc pyrithione (ZPT) and copper pyrithione (CPT) in seawater was examined. Reduction in toxicity due to degradation was monitored over two days using a bioassay with natural assemblages of coastal marine bacteria from Roskilde Fjord, Denmark. To investigate photo-degradation of the compounds, bacteria were exposed to sterile ZPT-and CPT-dilution that had either been exposed to sunlight or darkness. Bio-degradation was examined by diluting ZPT and CPT in sterile seawater or natural seawater. Photo-degradation half-life for ZPT was estimated to be 8.3 +- 0.9 min and for CPT to 7.1 +- 0.2 min. Total and microbial degradation in combination with photo-degradation did not further shorten the degradation time, suggesting no bio-degradation. Bio-degradation without the influence of sunlight was also negligible over the time-period investigated. ZPT and CPT are therefore suggested to persist in the marine environment where the influence of the light is limited.
机译:检查了两种防污杀菌剂:巯氧吡啶锌(ZPT)和巯氧吡啶铜(CPT)在海水中的降解能力。使用来自丹麦罗斯基勒峡湾(Roskilde Fjord)的沿海海洋细菌的天然组合的生物测定法,在两天内监测了由于降解引起的毒性降低。为了研究化合物的光降解作用,将细菌暴露于阳光或黑暗下的无菌ZPT和CPT稀释液中。通过在无菌海水或天然海水中稀释ZPT和CPT来检查生物降解。 ZPT的光降解半衰期估计为8.3±0.9分钟,而CPT的光降解半衰期为7.1±0.2分钟。总降解和微生物降解以及光降解并没有进一步缩短降解时间,表明没有生物降解。在研究的时间内,不受阳光影响的生物降解也可以忽略不计。因此,建议将ZPT和CPT保留在光线影响有限的海洋环境中。

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