State Key Laboratory of Agrobiotechnology, MOA Key Laboratory of Soil Microbiology, College of Biological Sciences, China Agricultural University, Beijing 100193, China.
Bioresour Technol. 2015 Jan;175:537-44. doi: 10.1016/j.biortech.2014.10.124. Epub 2014 Nov 8.
Algae lipid production combined with heavy metal removal is a cost-effective and environment-friendly method for algae biofuel production and hazardous waste treatment. Chlorella minutissima UTEX 2341 had strong resistance to cadmium, copper, manganese and zinc ions under heterotrophic culture condition and could efficiently remove them through intracellular accumulation and extracellular immobilization. Meanwhile, lipid accumulation was not inhibited by heavy metals. Instead, the algae lipid content significantly increased by 21.07% and 93.90%, respectively with the addition of cadmium and copper. Furthermore, the heavy metal residue in lipid was within μg range and satisfied the commercial standard. This artificial wastewater-algae biofuel-heavy-metal integrated utilization technology offered a new alternative solution to the problems of energy shortage and environmental pollution.
藻油生物燃料生产与重金属去除相结合,是一种经济环保的藻油生物燃料生产与危险废物处理方法。在异养培养条件下,小球藻 UTEX 2341 对镉、铜、锰和锌离子具有较强的抗性,可通过细胞内积累和细胞外固定有效地将其去除。同时,重金属并没有抑制油脂的积累。相反,添加镉和铜后,藻油含量分别显著增加了 21.07%和 93.90%。此外,脂中的重金属残留量处于μg 级,符合商业标准。这项人工废水-藻类生物燃料-重金属综合利用技术为解决能源短缺和环境污染问题提供了新的选择。