Microalgae Biotechnology and Bioengineering Laboratory, University Center for Biosciences and Biotechnology, National Cheng Kung University, Tainan, Taiwan.
Bioresour Technol. 2012 Feb;105:74-80. doi: 10.1016/j.biortech.2011.11.124. Epub 2011 Dec 4.
An efficient CO(2)-fixing indigenous microalga Scenedesmus obliquus CNW-N was used as the biosorbent to remove cadmium from aqueous solution. The microalga was grown with continuous feeding of 2.5% CO(2), achieving a maximum CO(2) consumption rate of 495 mg/l/d and a biomass production of 2.56 g/l. Cadmium (Cd) biosorption by S. obliquus CNW-N was optimal at pH 6.0 and 30 °C. For an initial cadmium concentration of 50mg/l, the biosorption capacity tended to decrease with an increase in biosorbent, while the cadmium removal efficiency was nearly 100% when the biosorbent loading was higher than 0.6g. The biosorption kinetics followed the pseudo-second order adsorption model. The adsorption equilibrium obeys Langmuir isotherm with an estimated maximum capacity of 68.6 mg/g and a saturation coefficient of 0.101 l/mg. The cadmium-loaded microalgal biomass could be regenerated preferably with 0.05 M CaCl(2), as the regenerated biosorbent retained good adsorption capability after five consecutive adsorption/desorption cycles.
利用高效固定 CO2 的本土微藻斜生栅藻 CNW-N 作为生物吸附剂,从水溶液中去除镉。该微藻在持续通入 2.5%CO2 的条件下生长,实现了 495mg/l/d 的最大 CO2 消耗速率和 2.56g/l 的生物量生产。斜生栅藻 CNW-N 对 Cd 的生物吸附在 pH6.0 和 30°C 时最佳。对于初始镉浓度为 50mg/l 的情况,生物吸附容量随生物吸附剂的增加而降低,而当生物吸附剂负载量高于 0.6g 时,镉的去除效率接近 100%。生物吸附动力学遵循准二级吸附模型。吸附平衡符合 Langmuir 等温线,估计最大容量为 68.6mg/g,饱和系数为 0.101l/mg。用 0.05M CaCl2 可以较好地再生负载镉的微藻生物质,因为再生后的生物吸附剂在五个连续的吸附/解吸循环后仍保留良好的吸附能力。