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猪粪消化液经氮饥饿小球藻预处理:超补偿策略对微藻生物质生产和养分去除的影响。

Swine digestate treatment by prior nitrogen-starved Chlorella vulgaris: The effect of over-compensation strategy on microalgal biomass production and nutrient removal.

机构信息

Department of Pharmaceutical & Biological Engineering, School of Chemical Engineering, Sichuan University, Chengdu 610065, China.

Science and Technology on Reactor Fuel and Materials Laboratory, Chengdu 610213, China.

出版信息

Sci Total Environ. 2021 May 10;768:144462. doi: 10.1016/j.scitotenv.2020.144462. Epub 2021 Jan 6.

Abstract

Anaerobic digester effluent containing high levels of ammonia poses a threat to the environment. To hinder this issue, a modern and promising treatment method incorporates both microalgae and their bioconversion potential. When culturing Chlorella vulgaris at a 1:7 digestate supernatant dilution ratio, biomass concentration was 1.33 g L and 66% of ammonia nitrogen was removed. Furthermore, a prior nitrogen-starved seed method, namely over-compensation strategy, was applied to improve both biomass production and nutrient removal. By using nitrogen-starved seeds after a 48 h nitrogen-free stimulation, biomass yield increased by 1.7-times to 2.56 g L. Simultaneously, ammonia nitrogen and total phosphorus removal efficiencies reached 99% and 97% respectively. The enhanced production corresponds to higher chlorophyll fluorescence in the middle and late stages of the culture. In addition, the bioproduct contained 39% carbohydrates, and the proportion of polyunsaturated fatty acids in lipids was 66%. These findings demonstrated that the over-compensation strategy contributed to greater nitrogen removal and high-value bioproduct production in the microalgae-digestate treatment system.

摘要

含有高浓度氨的厌氧消化液对环境构成威胁。为了解决这个问题,一种现代且有前途的处理方法结合了微藻及其生物转化潜力。当以 1:7 的消化液上清液稀释比培养普通小球藻时,生物量浓度达到 1.33 g/L,去除了 66%的氨氮。此外,还采用了氮饥饿种子法,即过补偿策略,以提高生物量生产和养分去除效率。通过在无氮刺激 48 小时后使用氮饥饿种子,生物量产量增加了 1.7 倍,达到 2.56 g/L。同时,氨氮和总磷的去除效率分别达到 99%和 97%。在培养的中后期,增强的生产对应着更高的叶绿素荧光。此外,生物产物中含有 39%的碳水化合物,脂质中的多不饱和脂肪酸比例为 66%。这些发现表明,过补偿策略有助于在微藻-消化液处理系统中实现更高的氮去除和高价值生物产物生产。

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