Khan Masil, Yoshida Naoto
Department of Biochemistry and Applied Biosciences, University of Miyazaki, 1-1 Gakuen Kibanadai Nishi, 889-2192 Miyazaki-shi, Miyazaki, Japan.
Bioresour Technol. 2008 Feb;99(3):575-82. doi: 10.1016/j.biortech.2006.12.031. Epub 2007 Feb 26.
The main objective of this laboratory scale experiment was to study the effect of l-glutamic acid on the growth in media and removal of ammonium from ammonium solution and natural wastewater by Chlorella vulgaris NTM06. It was observed that higher levels (1.0% and 1.5%) of l-glutamic acid compared to control (0% l-glutamic acid) negatively affected growth of C. vulgaris NTM06 and enhanced removal of ammonium from ammonium solution as well as natural wastewater. After 24h of incubation, 99% of 169.3mg NH(4)(+)-N/l was removed from ammonium solution by 1.5% l-glutamic acid treated C. vulgairs NTM06 cultures; removal in case of control was 70%. In case of natural wastewaters with initial ammonium concentrations of 1550, 775, 310 and 155 mg NH(4)(+)-N/l, removal after 48 h of incubation were 60%, 88%, 61% and 55% respectively. Ammonium removals from ammonium solutions of pH 4.0-8.0 were similar, whereas adsorption of ammonium ions on to the surface of dead C. vulgaris NTM06 cells was around 11%. Compared to dark, cultures incubated under the light showed higher initial removal of ammonium, however, after 24h, differences were not significant. Further research on the role of l-glutamic acid in micro-algal treatment of wastewater and its combination with other approaches such as co-immobilization of micro-algae with other organisms, starvation of micro-algal cells and the use of polymers is recommended.
本实验室规模实验的主要目的是研究L-谷氨酸对普通小球藻NTM06在培养基中生长以及从铵溶液和天然废水中去除铵的影响。观察到与对照(0% L-谷氨酸)相比,较高水平(1.0%和1.5%)的L-谷氨酸对普通小球藻NTM06的生长产生负面影响,但增强了从铵溶液以及天然废水中去除铵的能力。培养24小时后,经1.5% L-谷氨酸处理的普通小球藻NTM06培养物从铵溶液中去除了169.3mg NH(4)(+)-N/L中的99%;对照情况下的去除率为70%。对于初始铵浓度分别为1550、775、310和155mg NH(4)(+)-N/L的天然废水,培养48小时后的去除率分别为60%、88%、61%和55%。pH 4.0 - 8.0的铵溶液中铵的去除情况相似,而铵离子在死亡的普通小球藻NTM06细胞表面的吸附率约为11%。与黑暗条件相比,在光照下培养的培养物对铵的初始去除率更高,然而,24小时后,差异不显著。建议进一步研究L-谷氨酸在微藻处理废水中的作用及其与其他方法的结合,如微藻与其他生物的共固定、微藻细胞饥饿处理和聚合物的使用。