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利用食物垃圾和城市污水在一个综合过程中培养产油酵母和藻类来生产脂质。

Lipid production by culturing oleaginous yeast and algae with food waste and municipal wastewater in an integrated process.

机构信息

Department of Biological Systems Engineering, Washington State University, Pullman, WA 99164-6120, USA.

出版信息

Appl Biochem Biotechnol. 2011 Sep;165(2):442-53. doi: 10.1007/s12010-011-9263-6. Epub 2011 May 13.

Abstract

Food waste and municipal wastewater are promising feedstocks for microbial lipid biofuel production, and corresponding production process is to be developed. In this study, different oleaginous yeast strains were tested to grow in hydrolyzed food waste, and growths of Cryptococcus curvatus, Yarrowia lipolytica, and Rhodotorula glutinis in this condition were at same level as in glucose culture as control. These strains were further tested to grow in municipal primary wastewater. C. curvatus and R. glutinis had higher production than Y. lipolytica in media made from primary wastewater, both with and without glucose supplemented. Finally, a process was tested to grow C. curvatus and R. glutinis in media made from food waste and municipal wastewater, and the effluents from these processes were further treated with yeast culture and phototrophic algae culture; 1.1 g/L C. curvatus and 1.5 g/L R. glutinis biomass were further produced in second-step yeast cultures, as well as 1.53 and 0.58 g/L Chlorella sorokiniana biomass in phototrophic cultures. The residual nitrogen concentrations in final effluents were 33 mg/L and 34 mg/L, respectively, and the residual phosphorus concentrations were 1.5 and 0.6 mg/L, respectively. The lipid contents in the produced biomass were from 18.7% to 28.6%.

摘要

食物垃圾和城市污水是微生物油脂生物燃料生产很有前景的原料,相应的生产工艺有待开发。在这项研究中,不同的产油酵母菌株被测试在水解食物垃圾中生长,在这种条件下,厚垣酵母、解脂耶氏酵母和粘红酵母的生长水平与对照葡萄糖培养中的生长水平相同。这些菌株进一步在城市一级污水中生长。在有和没有葡萄糖补充的情况下,在由一级污水制成的培养基中,C. curvatus 和 R. glutinis 的产量均高于 Y. lipolytica。最后,测试了在由食物垃圾和城市污水制成的培养基中培养 C. curvatus 和 R. glutinis 的工艺,这些工艺的流出物进一步用酵母培养物和光养藻类培养物进行处理;在第二步酵母培养物中进一步产生了 1.1 g/L 的 C. curvatus 和 1.5 g/L 的 R. glutinis 生物质,以及在光养培养物中产生了 1.53 和 0.58 g/L 的小球藻生物质。最终流出物中的残余氮浓度分别为 33 mg/L 和 34 mg/L,残余磷浓度分别为 1.5 和 0.6 mg/L。所产生生物质的脂质含量为 18.7%至 28.6%。

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