Sooksawat Najjapak, Meetam Metha, Kruatrachue Maleeya, Pokethitiyook Prayad, Inthorn Duangrat
a Department of Agricultural Engineering and Technology , Faculty of Agriculture and Natural resources, Rajamangala University of Technology Tawan-ok , Bangpra, Chonburi , Thailand.
b Department of Biology , Faculty of Science, Mahidol University , Bangkok , Thailand.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2017 May 12;52(6):539-546. doi: 10.1080/10934529.2017.1282774. Epub 2017 Feb 22.
Biosorption of Pb and Cd from aqueous solution by biomass of Chara aculeolata was studied in a continuous packed bed column. C. aculeolata in the fixed bed column is capable of decreasing Pb and Cd concentrations from 10 mg/L to a value below the detection limit of 0.02 mg/L. Selective uptake of Pb and Cd in a binary solution resulted in Pb having much higher relative affinity than Cd. The experiments were conducted to study the effects of column design parameters, bed depth, and flow rate on the metal biosorption. Pb uptake capacity of C. aculeolata increased with increased bed depth and decreased flow rate, while Cd uptake capacity increased with increased bed depth but remained constant at any flow rate. The Thomas model was found in a suitable fitness with the experiment data for Pb and Cd (R > 0.90). The efficiency of biosorbent regeneration achieved by 0.1 M HCl was very high, that was, 98% for Pb and 100% for Cd in the third reused cycle. It can be concluded that C. aculeolata is a good biosorbent for treating wastewater having low concentrations of Pb and Cd contamination.
在连续填充床柱中研究了刺轮藻生物质对水溶液中铅和镉的生物吸附。固定床柱中的刺轮藻能够将铅和镉的浓度从10毫克/升降低到低于0.02毫克/升的检测限。在二元溶液中对铅和镉的选择性吸收导致铅比镉具有更高的相对亲和力。进行实验以研究柱设计参数、床层深度和流速对金属生物吸附的影响。刺轮藻对铅的吸收能力随着床层深度的增加和流速的降低而增加,而对镉的吸收能力随着床层深度的增加而增加,但在任何流速下都保持恒定。发现托马斯模型与铅和镉的实验数据拟合良好(R>0.90)。用0.1M盐酸实现的生物吸附剂再生效率非常高,即在第三次重复使用循环中,铅的再生效率为98%,镉的再生效率为100%。可以得出结论,刺轮藻是处理低浓度铅和镉污染废水的良好生物吸附剂。