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Toxicity of metals and metal mixtures: analysis of concentration and time dependence for zinc and copper

机译:金属和金属混合物的毒性:锌和铜的浓度和时间依赖性分析

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The toxic effects of heavy metals, zinc and copper, in unary and binary solutions were studied using the Microtox~(~R) acute toxicity test which relies upon the attenuation of light intensity emitted by Vibrio fischeri. The toxic effect Γ (ratio of the light intensity lost at time t to the light intensity remaining at time t) of zinc could be related to its concentration [X] by a two-parameter equation Γ = a(1 — exp(—b[X])), where parameter a was a function of time and b equal to 0.88 L/mg. The toxic effect of zinc asymptotically approached a maximum with respect of to concentration at all times. The toxic effect of copper was fundamentally different from that of zinc, and increased exponentially with concentration without any limiting maximum value. It could also be described by a two-parameter equation, however, the equation had the form Γ = a exp(b[X]), where parameter a was a constant and b a function of time. The different functional dependencies (of the toxic effect on the metal concentration) of zinc and copper indicate that different toxicity/inhibition mechanisms were possibly responsible for the attenuation of light intensity for the two metals. The toxic effects of binary mixtures were substantially higher than those expected on the basis of additivity of individual metals. No simple correlations were obtained that could relate the toxic effect of binary mixture to those of individual metals. A better understanding of metal-microbe interactions is needed for achieving predictive capability for toxic effect of mixtures.
机译:使用Microtox〜(〜R)急性毒性试验研究了重金属,锌和铜在一元和二元溶液中的毒性作用,该试验依赖于费氏弧菌发出的光强度的衰减。锌的毒性作用Γ(时间t处损失的光强度与时间t处剩余的光强度之比)可以通过两参数方程Γ= a(1_exp(-b)与它的浓度[X]相关。 [X])),其中参数a是时间的函数,b等于0.88 L / mg。就浓度而言,锌的渐近性渐渐达到最大。铜的毒性作用从根本上不同于锌的毒性作用,并且随着浓度的增加呈指数增加,没有任何限制的最大值。也可以用两参数方程式描述,但是,该方程式的形式为Γ= a exp(b [X]),其中参数a是常数,b是时间的函数。锌和铜的不同功能依赖性(对金属浓度的毒性影响)表明,两种金属的光强度衰减可能是不同的毒性/抑制机制。二元混合物的毒性作用远高于根据个别金属的可加性预期的毒性作用。没有简单的相关性可以将二元混合物的毒性作用与单个金属的毒性作用联系起来。为了更好地预测混合物的毒性作用,需要对金属与微生物的相互作用有更好的了解。

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