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Bioaccumulation and detection of trace levels of cadmium in aquatic systems by Eichhornia crassipes

机译:凤眼凤梨在水生系统中的生物富集和痕量镉的检测

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摘要

The water hyacinth (Eichhornia crassipes) may be used as a sensitive biological indicator for continuously monitoring trace quantities of toxic heavy metals in aquatic systems. A river water system polluted with cadmium was simulated while other factors of temperature, day-night cycle, water quality, and light intensity remained constant. When the water hyacinth is maintained in river water containing 0.001 mg/l. of cadmium chloride, the plant's root system will concentrate this element at an average rate of 0.9, 1.4, and 3.0 μg Cd/g root dry weight after 24, 48, and 72 hr exposure periods, respectively. At a higher cadmium concentration of 0.01 mg/l., cadmium was concentrated in the roots much faster to levels of 6.8, 13.6, and 39.1 μg/g root after 4, 8, and 24 hr exposure periods, respectively. At initial concentrations of 0.05 mg/l. cadmium, the roots contained 29.5, 48.8, and 156 μg/g root following 4, 8, and 24 hr exposure periods, respectively. During these same time intervals, the water hyacinth sorbed 56.7, 153, and 281 μg/g root when the initial cadmium concentration was increased to 0.10 mg/l.
机译:水葫芦(凤眼兰)可用作连续监测水生系统中痕量有毒重金属的敏感生物指示剂。模拟了一个被镉污染的河水系统,而温度,昼夜循环,水质和光照强度等其他因素保持不变。当风信子保持在含0.001 mg / l的河水中时。在暴露24、48和72小时后,植物的根系将以氯化镉的浓度分别以0.9、1.4和3.0μgCd / g根干重的平均速率浓缩该元素。在0.01 mg / l的较高镉浓度下,暴露4、8和24小时后,镉在根中的浓缩速度要快得多,分别达到6.8、13.6和39.1μg/ g。初始浓度为0.05 mg / l。镉,在暴露4、8和24小时后,根分别含有29.5、48.8和156μg/ g根。在这些相同的时间间隔内,当初始镉浓度增加到0.10 mg / l时,水葫芦的根吸收量为56.7、153和281μg/ g。

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