首页> 外文期刊>Journal of Coastal Research: An International Forum for the Littoral Sciences >Modeling the Effects of Salinity and pH on the Cadmium Bioabsorptive Properties of the Microalgae Isochrysis galbana (T-Iso) in Coastal Waters
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Modeling the Effects of Salinity and pH on the Cadmium Bioabsorptive Properties of the Microalgae Isochrysis galbana (T-Iso) in Coastal Waters

机译:盐度和pH对沿海水域微藻等鞭藻(T-Iso)的镉生物吸收特性的影响建模

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The changes in cadmium ion bioabsorptive properties were investigated for the brown microalgae Isochrysis galbana (T-Iso) in various saline solutions (0, 10, 20, 30, 40, and 50 parts per thousand, or ppt) and pH environments (pH 3, 4, 5, 6, 7, and 8) modeling those of coastal and intertidal waters. Optimal saline growth conditions for T-Iso were observed at 30 ppt. Under these optimal saline conditions, the effective concentration at 50% lethality for cadmium ion for T-Iso is 2.3 parts per million (ppm), with a maximum intracellular absorption of 8.6 fg/cell. T-Iso maximal surfacial cadmium binding was determined from Langmuir isotherm plots; Qmax 98 mg/g (pH 6.00, 0 ppt), falling to 19 mg/g in higher salinities (pH 6.00, 50 ppt). The Freundlich constants n and Kf followed a similar cadmium binding trend: at 0 ppt, Kf 16.6 and n 2.83, while at higher salinities (50 ppt), the values dramatically decreased to Kf 3.64 and n 1.34. Direct relationships between ln Qmax (98, 70, 45, 28, 23, and 19) and ln Kf (16.6, 12.8, 8.36, 4.63, and 3.64) versus respective salinity (0, 10, 20, 30, 40, and 50 ppt) produced linear correlations. The pseudosecond- order binding kinetic rate in distilled water is 8.5 103 g/mg/min, while in saline conditions (30 ppt) the rate decreased to 4.4 103 g/mg/min. The percentage of adsorption loading capacity of the algae in the water column increases with initial cadmium exposure: the highest percentage of adsorbance (C0 25 ppm) in 0 ppt is 92%, while under equivalent conditions in saline water (50 ppt), adsorption falls to 31%.
机译:在各种盐溶液(千分之0、10、20、30、40和50份或ppt)和pH环境(pH 3)中,研究了棕色微藻等鞭金藻(T-Iso)对镉离子生物吸收特性的变化。 ,4、5、6、7和8)对沿海和潮间带水域进行建模。在30 ppt时观察到了T-Iso的最佳盐水生长条件。在这些最佳盐水条件下,对于50%致死率的T-Iso,镉离子的有效浓度为百万分之2.3(ppm),最大细胞内吸收为8.6 fg /细胞。从Langmuir等温线图确定T-Iso最大表面镉结合量; Qmax 98 mg / g(pH 6.00,0 ppt),在更高盐度(pH 6.00,50 ppt)下降至19 mg / g。 Freundlich常数n和Kf遵循相似的镉结合趋势:在0 ppt,Kf 16.6和n 2.83时,而在较高盐度(50 ppt)时,该值急剧下降至Kf 3.64和n 1.34。 ln Qmax(98、70、45、28、23和19)和ln Kf(16.6、12.8、8.36、4.63和3.64)与盐度(0、10、20、30、40和50)之间的直接关系ppt)产生线性相关。在蒸馏水中的假二级结合动力学速率为8.5 103 g / mg / min,而在盐水条件下(30 ppt),速率降至4.4 103 g / mg / min。水柱中藻类的吸附负荷能力百分比随初始镉暴露而增加:0 ppt的最高吸附率(CO = 25 ppm)为92%,而在盐水(50 ppt)的等效条件下,吸附率下降至31%。

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