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Continuous Fermentation of a Prodigiosin-Producing <i>Serratia marcescens </i>Strain Isolated from Soil 被引量:1
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作者 Qi Fu yujuan xiao +6 位作者 Xuehui Duan Huabin Huang Zhixia Zhuang Jinhai Shen Yangyue Pei Haojia Xu Meiyu Gan 《Advances in Bioscience and Biotechnology》 2019年第4期98-108,共11页
A red-pigmented bacterial strain NS-17 was isolated from soil, and physiological and biochemical characteristics and 16S rDNA analysis established this organism as a strain of Serratia marcescens. The red pigment isol... A red-pigmented bacterial strain NS-17 was isolated from soil, and physiological and biochemical characteristics and 16S rDNA analysis established this organism as a strain of Serratia marcescens. The red pigment isolated from cells of NS-17 was identified as prodigiosin. By analyzing factors affecting the production of prodigiosin, modified medium and culture conditions were set up, and a continuous fermentation method was carried out to take advantage of the mass production of foam during fermentation. Continuous fermentation was achieved in the following conditions: 32℃, 1:1 ventilation ratio, and medium with a nutrient concentration 5-fold higher than that of the fermentation medium (with half the inorganic salt concentration) supplied as a feed medium at a flow rate of 8 mL/min. For the first time of continuous fermentation of Serratia marcescens coupling with foam flotation, a high yield of prodigiosin was obtained. After 56 h of culturing, the total harvest of cells was enhanced 2.33-fold compared to that of batch fermentation, the total amount of prodigiosin was enhanced 2.70-fold compared to that of batch fermentation, and cells and prodigiosin were concentrated in the efflux broth automatically. 展开更多
关键词 SERRATIA marcescens PRODIGIOSIN Foam Continuous Fermentation Automatic Concentration
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无光催化剂条件下紫外光引发芳基醛或芳基酮与炔烃环化反应构筑茚酮化合物 被引量:3
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作者 肖玉娟 杨阳 +2 位作者 张凡 冯亚栋 崔秀灵 《有机化学》 SCIE CAS CSCD 北大核心 2021年第12期4808-4814,共7页
报道了一种紫外光引发的芳基醛或芳基酮与炔烃的环化反应来构筑茚酮化合物.该反应具有效率较高、原子经济性高、原料简单易得、环境友好、底物适应性较强等优势,在紫外光照射,氧气为氧化剂,无光催化剂的条件下可以顺利进行.
关键词 紫外光 环化反应 无光催化剂 茚酮
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