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小球藻在中试规模下培养以处理实际猪废水中的二氧化碳,用于可持续生物柴油的直接酶促酯交换生产。

Chlorella vulgaris cultivation in pilot-scale to treat real swine wastewater and mitigate carbon dioxide for sustainable biodiesel production by direct enzymatic transesterification.

机构信息

College of Life Science, Fujian Normal University, Fuzhou 350117, China.

College of Life Science, Fujian Normal University, Fuzhou 350117, China; Engineering Research Center of Industrial Microbiology, Ministry of Education, Fujian Normal University, Fuzhou 350117, China.

出版信息

Bioresour Technol. 2022 Apr;349:126886. doi: 10.1016/j.biortech.2022.126886. Epub 2022 Feb 22.

Abstract

This study firstly addressed real swine wastewater (RSW) treatment by an indigenous Chlorella vulgaris MBFJNU-1 in 5-m outdoor open raceway ponds and then direct enzymatic transesterification of the resulting lipids from the wet biomass for sustainable biodiesel production. Compared to the control group, C. vulgaris MBFJNU-1 at 3% CO achieved higher microalgal biomass (478.5 mg/L) and total fatty acids content (21.3%), higher CO bio-fixation (63.2 mg/L/d) and lipid (9.1 mg/L/d) productivities, and greater nutrients removals (total nitrogen, 82.1%; total phosphorus, 28.4%; chemical oxygen demand, 37.1%). The highest biodiesel conversion (93.3%) was attained by enzymatic transesterification of wet disrupted Chlorella biomass with 5% lipase TL and 5% phospholipase PLA. Moreover, the enzymatic transesterification gave around 83% biodiesel conversion in a 15-L stirred tank bioreactor. Furthermore, the integrated process was a cost-effective approach to treat RSW and mitigate CO for microalgal biodiesel production, based on the mass and energy balances analysis.

摘要

本研究首先采用本土小球藻 MBFJNU-1 在 5 米户外开放式跑道池塘中处理实际的猪废水(RSW),然后对湿生物质的油脂进行直接酶法转酯化,以生产可持续的生物柴油。与对照组相比,在 3% CO 下,小球藻 MBFJNU-1 的微藻生物量(478.5 mg/L)和总脂肪酸含量(21.3%)更高,CO 生物固定(63.2 mg/L/d)和脂质(9.1 mg/L/d)的生产率更高,营养物质的去除率(总氮,82.1%;总磷,28.4%;化学需氧量,37.1%)也更高。用 5%脂肪酶 TL 和 5%磷脂酶 PLA 对湿破碎小球藻生物质进行酶法转酯化,可获得最高的生物柴油转化率(93.3%)。此外,在 15 升搅拌釜生物反应器中进行的酶法转酯化可达到约 83%的生物柴油转化率。此外,基于质量和能量平衡分析,该集成工艺是一种处理 RSW 和减轻 CO 以生产微藻生物柴油的经济有效的方法。

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