Guangzhou Institute of Energy Conversion, Key Laboratory of Renewable Energy and Gas Hydrate, Chinese Academy of Sciences, Guangzhou 510640, China.
Water Res. 2013 Sep 1;47(13):4294-302. doi: 10.1016/j.watres.2013.05.004. Epub 2013 May 10.
An integrated approach, which combined freshwater microalgae Chlorella zofingiensis cultivation with piggery wastewater treatment, was investigated in the present study. The characteristics of algal growth, lipid and biodiesel production, and nutrient removal were examined by using tubular bubble column photobioreactors to cultivate C. zofingiensis in piggery wastewater with six different concentrations. Pollutants in piggery wastewater were efficiently removed among all the treatments. The specific growth rate and biomass productivity were different among all the cultures. As the initial nutrient concentration increased, the lipid content of C. zofingiensis decreased. The differences in lipid and biodiesel productivity of C. zofingiensis among all the treatments mainly resulted from the differences in biomass productivity. It is worthy of note that the diluted piggery wastewater with 1900 mg L(-1) COD provided an optimal nutrient concentration for C. zofingiensis cultivation, where the advantageous nutrient removal and the highest productivities of biomass, lipid and biodiesel were presented.
本研究采用了一种综合方法,将淡水微藻小球藻的培养与猪场废水处理相结合。通过使用管式鼓泡式光生物反应器,在六种不同浓度的猪场废水中培养小球藻,考察了藻类生长、油脂和生物柴油生产以及养分去除的特性。所有处理均能有效去除猪场废水中的污染物。所有培养物的比生长速率和生物量生产力均有所不同。随着初始营养浓度的增加,小球藻的脂质含量降低。所有处理中小球藻的油脂和生物柴油生产力的差异主要归因于生物量生产力的差异。值得注意的是,COD 为 1900mg/L 的稀释猪场废水为小球藻的培养提供了最佳的营养浓度,在此条件下,具有有利的养分去除和最高的生物量、油脂和生物柴油生产力。