首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Chlamydomonas sp. as dynamic biorefinery feedstock for the production of methyl ester and epsilon-polylysine
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Chlamydomonas sp. as dynamic biorefinery feedstock for the production of methyl ester and epsilon-polylysine

机译:Chlamydomonas sp。 作为用于生产甲酯和ε-聚赖氨酸的动态生物遗料原料

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摘要

An integrated production of methyl ester and.-polylysine from Chlamydomonas sp. was studied using biorefinery approach. The harvesting efficiency of Chlamydomonas sp. was increased up to 92% by treatment with a flocculant FeCl3 at 100 mg/L for 30 min. The DMC (dimethyl carbonate) mediated enzyme catalyzed in-situ transesterification of Chlamydomonas sp. yielded the maximum methyl ester of 92% under optimized conditions. The valued-added product.-polylysine was produced from hydrolysate obtained from the spent biomass of Chlamydomonas sp. using Streptomyces sp. The key components of sugar and MgSO4 used for epsilon-polysine production were optimized whereby the maximum epsilon-polylysine production was achieved at 50 g/L sugar and 0.3 g/L MgSO4. The.-polylysine production was further enhanced by supplementation of important amino acids (lysine and aspartate) and TCA cycle intermediates (citric acid and a-ketoglutaric acid). The maximum epsilon-polylysine production of 2.24 g/L was found with 4mM citric acid supplementation after 110 h.
机译:来自Chlamydomonass Sp的甲酯和 - 聚赖氨酸的综合生产。使用生物遗料方法研究。 Chlamydomonass SP的收获效率。通过用100mg / L的絮凝剂FECL3处理30分钟,高达92%。 DMC(碳酸二甲酯)介导的酶催化在衣原体SP的原位酯交换。在优化条件下产生92%的最大甲酯。由来自衣原体Sp的废的生物质中获得的水解产物制备增值的产品。使用链霉菌SP。优化了用于ε-麦敏生产的糖和MgSO 4的关键组分,从而在50g / L糖和0.3g / L mgSO 4中实现最大ε-聚赖氨酸产生。通过补充重要的氨基酸(赖氨酸和天冬氨酸)和TCA循环中间体(柠檬酸和酮戊酸),进一步增强了聚赖氨酸产量。在110小时后用4mm柠檬酸补充,发现了2.24克/升2.24克/升的最大ε-聚赖氨酸产量。

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