Cheng Peng-Fei, Wang Yan, Yang Qi-Yong, Tang Ming, Liu Tian-Zhong
Poyang Lake Eco-economy Research Center of Jiujiang University, Jiujiang 332005, China.
Jiujiang Key Laboratory of Basin Management and Ecological Protection, Jiujiang University, Jiujiang 332005, China.
Huan Jing Ke Xue. 2016 Jul 8;37(7):2666-2672. doi: 10.13227/j.hjkx.2016.07.033.
Industrial wastewater pollution is an increasing problem. The wastewater infiltrated cobalt is a key to purify wastewater because it is seriously hazardous and hard to treat. Traditional management method of heavy metals in industrial wastewater is difficult to apply. To seek for "green ecological" feasible approaches of industrial wastewater treatment, this paper studied the effect of industrial wastewater containing cobalt on the growth and hydrocarbon accumulation of SAG 807-1 with biofilm attached cultivation. The research results obtained were as follows: with biofilm attached cultivation could treat industrial wastewater, and 4.5 mg·L cobalt could accelerate the accumulation of hydrocarbon while having little influence on the growth of , the ability of with biofilm attached cultivation to remove Co from industrial wastewater was 1473.9 μmol·g, which was much higher than the report of culture. Through the study in this paper, the theoretical basis for the coupling of production of green high energy fuel hydrocarbon and industrial wastewater treatment was established.
工业废水污染问题日益严重。废水中渗入的钴是净化废水的关键,因为它具有严重危害性且难以处理。传统的工业废水中重金属管理方法难以应用。为寻求工业废水处理的“绿色生态”可行方法,本文通过生物膜附着培养研究了含钴工业废水对SAG 807-1生长及烃类积累的影响。得到的研究结果如下:生物膜附着培养可处理工业废水,4.5mg·L的钴能促进烃类积累,同时对SAG 807-1的生长影响较小,生物膜附着培养的SAG 807-1从工业废水中去除Co的能力为1473.9μmol·g,远高于文献报道的培养物。通过本文研究,建立了绿色高能燃料烃生产与工业废水处理耦合的理论基础。