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结合直接琥珀酰亚胺合成的两阶段结晶法用于从发酵液中回收琥珀酸。

Two-Stage Crystallization Combining Direct Succinimide Synthesis for the Recovery of Succinic Acid From Fermentation Broth.

作者信息

Xiao Yiwen, Zhang Zhibin, Wang Ya, Gao Boliang, Chang Jun, Zhu Du

机构信息

Key Laboratory of Protection and Utilization of Subtropic Plant Resources of Jiangxi Province, Jiangxi Normal University, Nanchang, China.

Key Laboratory of Bioprocess Engineering of Jiangxi Province, College of Life Sciences, Jiangxi Science and Technology Normal University, Nanchang, China.

出版信息

Front Bioeng Biotechnol. 2020 Jan 15;7:471. doi: 10.3389/fbioe.2019.00471. eCollection 2019.

Abstract

Succinic acid is an important chemical and raw material widely used in medicine, food, biodegradable materials, fine chemicals, and other industrial fields. However, traditional methods for purifying succinic acid from fermentation broth are costly, poorly efficient, and harmful to the environment. In this study, an efficient method for purifying succinic acid from the fermentation broth of NZN111 was developed through crystallization and co-crystallization with urea. First, the filtrate was collected by filtering the fermentation broth, and pH was adjusted to 2.0 by supplementing sulfuric acid. Crystallization was carried out at 8°C for 4 h to obtain succinic acid crystals. The recovery rate and purity of succinic acid were 73.4% and over 99%, respectively. Then, urea was added to the remaining solution with a mass ratio of urea to residual succinic acid of 4:1 ( / ). The second crystallization was carried out at pH 2 and 4°C for 12 h to obtain succinic acid-urea co-crystal. The recovery rate of succinic acid residue was 92.0%. The succinic acid-urea crystal was further mixed with phosphorous acid (4.2% of the mass of succinic acid co-crystal) and maintained at 195°C for 6 h to synthesize succinimide, and the yield was >80%. This novel and efficient purification process was characterized by the significantly reduced urea consumption, and high succinic acid recovery (totally 95%), and high succinimide synthesis yield (80%). Thus, this study potentially provided a novel and efficient strategy for the industrial production of succinic acid and succinimide.

摘要

琥珀酸是一种重要的化学品和原料,广泛应用于医药、食品、生物可降解材料、精细化工等工业领域。然而,从发酵液中纯化琥珀酸的传统方法成本高、效率低且对环境有害。在本研究中,通过与尿素结晶和共结晶,开发了一种从NZN111发酵液中纯化琥珀酸的有效方法。首先,通过过滤发酵液收集滤液,并通过添加硫酸将pH调节至2.0。在8°C下结晶4小时以获得琥珀酸晶体。琥珀酸的回收率和纯度分别为73.4%和99%以上。然后,将尿素以尿素与残留琥珀酸的质量比为4:1( / )添加到剩余溶液中。第二次结晶在pH 2和4°C下进行12小时,以获得琥珀酸-尿素共晶体。琥珀酸残留的回收率为92.0%。将琥珀酸-尿素晶体进一步与亚磷酸(琥珀酸共晶体质量的4.2%)混合,并在195°C下保持6小时以合成琥珀酰亚胺,产率>80%。这种新颖且高效的纯化工艺的特点是尿素消耗显著降低,琥珀酸回收率高(总计9

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4a5/6974449/bc194c629ff7/fbioe-07-00471-g0001.jpg

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