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钝顶螺旋藻(节旋藻)的植物修复潜力:镉的生物吸附及毒性研究

Phytoremediation potential of Spirulina (Arthrospira) platensis: biosorption and toxicity studies of cadmium.

作者信息

Rangsayator N, Upatham E S, Kruatrachue M, Pokethitiyook P, Lanza G R

机构信息

Department of Biology, Faculty of Science, Mahidol University, Bangkok, Thailand.

出版信息

Environ Pollut. 2002;119(1):45-53. doi: 10.1016/s0269-7491(01)00324-4.

Abstract

This study examines the possibility of using Spirulina (Arthrospira) platensis TISTR 8217 to remove low concentrations of cadmium (less than 100 mg/l) from wastewater. The cyanobacteria were exposed to six different cadmium concentrations for 96 h, and the growth rate was determined using an optical density at 560 nm. The inhibiting concentration (IC50) was estimated using probit analysis. The IC50 at 24, 48, 72, and 96 h were 13.15, 16.68, 17.28, and 18.35 mg/l Cd, respectively. Cellular damage was studied under a light microscope and a transmission electron microscope. Swollen cells and fragmented filaments were observed. Cell injury increased with increasing concentrations of cadmium. Ultrastructural changes were observed in the algae exposed to cadmium concentrations both close to IC50 (14.68 mg/l) and at IC50 (18.35 mg/l). The alterations induced by cadmium were disintegration and disorganization of thylakoid membranes, presence of large intrathylakoidal space, increase of polyphosphate bodies, and cell lysis. In addition, the cadmium adsorption by algal cells was studied. Environmental factors were found to have an effect on biosorption. The uptake of cadmium was not affected by the temperature of the solution, but the sorption was pH dependent. The optimum pH for biosorption of algal cells was 7. The cadmium uptake process was rapid, with 78% of metal sorption completed within 5 min. The sorption data fit well to the Langmuir isotherm. The maximum adsorption capacity for S. platensis was 98.04 mg Cd per g biomass.

摘要

本研究考察了利用钝顶螺旋藻(节旋藻)TISTR 8217从废水中去除低浓度镉(低于100毫克/升)的可能性。将蓝藻暴露于六种不同的镉浓度下96小时,使用560纳米处的光密度测定生长速率。采用概率分析估计抑制浓度(IC50)。24、48、72和96小时的IC50分别为13.15、16.68、17.28和18.35毫克/升镉。在光学显微镜和透射电子显微镜下研究细胞损伤情况。观察到细胞肿胀和丝状结构断裂。细胞损伤随镉浓度增加而增加。在接近IC50(14.68毫克/升)和IC50(18.35毫克/升)的镉浓度下暴露的藻类中观察到超微结构变化。镉诱导的改变包括类囊体膜的解体和无序化、类囊体内大空间的出现、多磷酸盐体的增加以及细胞裂解。此外,研究了藻类细胞对镉的吸附。发现环境因素对生物吸附有影响。镉的吸收不受溶液温度影响,但吸附依赖于pH值。藻类细胞生物吸附的最佳pH值为7。镉的吸收过程迅速,5分钟内完成78%的金属吸附。吸附数据与朗缪尔等温线拟合良好。钝顶螺旋藻的最大吸附容量为每克生物质98.04毫克镉。

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