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新型异养小球藻 LAM-Q 高效生产高浓度生物乙醇废水生物燃料

Enhanced biofuel production from high-concentration bioethanol wastewater by a newly isolated heterotrophic microalga, Chlorella vulgaris LAM-Q.

机构信息

College of Chemical Engineering, Sichuan University, Chengdu 610065, China.

出版信息

J Microbiol Biotechnol. 2013 Oct 28;23(10):1460-71. doi: 10.4014/jmb.1301.01046.

Abstract

Microalgal biofuel production from wastewater has economic and environmental advantages. This article investigates the lipid production from high chemical oxygen demand (COD) bioethanol wastewater without dilution or additional nutrients, using a newly isolated heterotrophic microalga, Chlorella vulgaris LAM-Q. To enhance lipid accumulation, the combined effects of important operational parameters were studied via response surface methodology. The optimal conditions were found to be temperature of 22.8℃, initial pH of 6.7, and inoculum density of 1.2 × 10(8) cells/ml. Under these conditions, the lipid productivity reached 195.96 mg/l/d, which was markedly higher than previously reported values in similar systems. According to the fatty acid composition, the obtained lipids were suitable feedstock for biodiesel production. Meanwhile, 61.40% of COD, 51.24% of total nitrogen, and 58.76% of total phosphorus were removed from the bioethanol wastewater during microalgal growth. In addition, 19.17% of the energy contained in the wastewater was transferred to the microalgal biomass in the fermentation process. These findings suggest that C. vulgaris LAMQ can efficiently produce lipids from high-concentration bioethanol wastewater, and simultaneously performs wastewater treatment.

摘要

从废水生产微藻生物燃料具有经济和环境优势。本文研究了在不稀释或添加额外营养物质的情况下,使用新分离的异养微藻普通小球藻 LAM-Q 从高化学需氧量 (COD) 生物乙醇废水中生产脂质。为了增强脂质积累,通过响应面法研究了重要操作参数的组合效应。发现最佳条件为温度 22.8℃、初始 pH 值 6.7 和接种密度 1.2×10(8)个细胞/ml。在这些条件下,脂质生产力达到 195.96mg/l/d,明显高于类似系统中先前报道的值。根据脂肪酸组成,所获得的脂质是生物柴油生产的合适原料。同时,在微藻生长过程中,废水中的 61.40%的 COD、51.24%的总氮和 58.76%的总磷被去除。此外,废水中的 19.17%的能量在发酵过程中被转移到微藻生物质中。这些发现表明,普通小球藻 LAMQ 可以从高浓度生物乙醇废水中高效生产脂质,同时进行废水处理。

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