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利用未经空气密封的甜菜浆和厌氧消化的奶牛粪便进行发酵,为混合营养型微藻培养提供富含酸的水解液。

Non-airtight fermentation of sugar beet pulp with anaerobically digested dairy manure to provide acid-rich hydrolysate for mixotrophic microalgae cultivation.

机构信息

Department of Soil and Water Systems, Twin Falls Research & Extension Center, University of Idaho, 315 Falls Ave, Twin Falls, ID 83301, United States.

Department of Soil and Water Systems, Twin Falls Research & Extension Center, University of Idaho, 315 Falls Ave, Twin Falls, ID 83301, United States.

出版信息

Bioresour Technol. 2019 Apr;278:175-179. doi: 10.1016/j.biortech.2019.01.075. Epub 2019 Jan 19.

Abstract

Non-airtight fermentation of lignocellulosic agricultural residues with animal wastes is an emerging pretreatment method to produce acid-rich substrates in two-phase anaerobic digestion. Acid-rich hydrolysate could be an excellent feedstock for cultivating microalgae, therefore, the feasibility of a two-step process combining non-airtight fermentation of sugar beet pulp with anaerobically digested dairy manure and mixotrophic microalgae species Chlorella cultivation in the hydrolysate was explored in this study. The hydrolysis and acidification process of 8-day non-airtight fermentation produced up to 8.1 g/L volatile fatty acids under mesophilic condition. Microalgal growths in diluted hydrolysates were compared with that in diluted digested dairy manure (DDM) as a control using experimental data and fitted logistic models. Chlorella grown in the 10-fold diluted DDM showed an exponential decay, while Chlorella cultured in the 3-fold diluted hydrolysate demonstrated the best performance in terms of biomass density, which reached 2.17 g/L within a short period of time.

摘要

木质纤维素农业废弃物与动物粪便的非密闭发酵是一种新兴的预处理方法,可用于两相厌氧消化中生产富含酸的底物。富含酸的水解物可以作为培养微藻的极好原料,因此,本研究探索了两步法,即将甜菜浆的非密闭发酵与厌氧消化的奶牛粪肥和混养微藻物种小球藻在水解物中的培养相结合。在中温条件下,8 天的非密闭发酵的水解和酸化过程最多可产生 8.1 g/L 的挥发性脂肪酸。使用实验数据和拟合逻辑模型,比较了在稀释的水解物和稀释的消化奶牛粪肥(DDM)(作为对照)中微藻的生长情况。在 10 倍稀释的 DDM 中生长的小球藻呈指数衰减,而在 3 倍稀释的水解物中培养的小球藻在生物量密度方面表现出最佳性能,在短时间内达到 2.17 g/L。

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