首页> 外文期刊>International journal of hydrogen energy >Photoheterotrophic growth of purple non-sulfur bacteria on Tris Acetate Phosphate Yeast extract (TAPY) medium and its hydrogen productivity in light under nitrogen deprivation
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Photoheterotrophic growth of purple non-sulfur bacteria on Tris Acetate Phosphate Yeast extract (TAPY) medium and its hydrogen productivity in light under nitrogen deprivation

机译:氮素剥夺在乙酸Tris乙酸盐酵母提取物(TAPY)培养基上紫色非硫细菌的光异养生长及其在氢气中的产氢量

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In this study, an active photoheterotrophic growth 'of purple non-sulfur bacteria (PNSB) on Tris Acetate Phosphate Yeast extract (TAPY) medium is reported. TAPY medium is a modified TAP medium supplemented with filter sterilized yeast extract (0.3 g L-1) and vitamin B12. Heterotrophic growth of PNSB on nitrogen replete TAPY medium in dark could be obtained but much slower than that in light where cells could grow but without formation of pigments. The medium showed high potency for hydrogen production under nitrogen deprivation in light by Rhodobacter sphaeroides DSM 5864. Through using TAPY medium, 1 mole of acetate provided as glacial acetic acid produced 0.819 mole of hydrogen gas by R. sphaeroides on nitrogen deprived TAPY medium (initial pH 7 adjusted by HCI) with a maximum H-2 production rate of (0.669 mmol H(2)h(-1)L(1)) obtained at 42 h after start of fermentation. Repeated-batch hydrogen production could be achieved with high efficiency for three cycles by supplementing the nitrogen deprived culture with filter sterilized sodium acetate at the end of the log hydrogen production phase of each cycle. The medium was also applicable for photoheterotrophic growth in light and heterotrophic growth in dark of other PNSB namely Rhodobacter capsulatus JCM-21090 and Rhodospirillum rubrum DSM 467. Although R. rubrum could actively grow on TAPY medium under nitrogen deprivation in light, it was the lowest in hydrogen production compared to R. sphaeroides and R. capsulatus. The active growth of R. rubrum on nitrogen deprived TAPY medium suggests its possible use for producing biodegradable plastic polymers better than hydrogen. The results suggest that it's possible to use TAPY medium for growth and producing variable bioproducts by PNSB in future studies and applications. The repeated-batch hydrogen production by R. sphaeroides on nitrogen deprived TAPY medium is promising for large-scale applications of hydrogen production industry by only sequential supply with sodium acetate to the culture for three rounds of batch fermentation. This is the first report in using TAPY medium for growth and hydrogen production by PNSB. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,报道了在Tris醋酸磷酸盐酵母提取物(TAPY)培养基上紫色非硫细菌(PNSB)的活性光异养生长。 TAPY培养基是一种改良的TAP培养基,其中添加了过滤除菌的酵母提取物(0.3 g L-1)和维生素B12。在黑暗中,可以在充满氮的TAPY培养基上获得PNSB的异养生长,但比在细胞可以生长但不形成色素的光照下慢得多。该介质在球形短红细菌DSM 5864的光照下显示出在缺氮的情况下具有很高的产氢能力。通过使用TAPY介质,提供的1摩尔乙酸盐作为冰醋酸,在球形球形脱氮后的TAPY介质上产生了0.819摩尔氢气。发酵开始后42小时获得的最大H-2产生率为(0.669 mmol H(2)h(-1)L(1))(通过HCI调节的pH 7)。在每个循环的对数产氢阶段结束时,通过用过滤器灭菌的乙酸钠补充缺氮培养物,可以高效地重复生产三个批次的氢气。该培养基还适用于其他PNSB的荚膜红细菌JCM-21090和红螺螺旋藻DSM 467在光下的光养营养生长和在黑暗中的异养生长。尽管在光剥夺氮的条件下,R。rubrum可以在TAPY培养基上活跃生长,但最低。与球形红景天和荚膜红景天相比,在氢气产生方面的优势。红枯菌在缺乏氮的TAPY培养基上的活跃生长表明其可能比氢更好地用于生产可生物降解的塑料聚合物。结果表明,在未来的研究和应用中,可以将TAPY培养基用于PNSB的生长和生产可变的生物产品。通过仅在培养物中连续供应乙酸钠连续三轮分批发酵,由球形红球菌在脱氮的TAPY培养基上重复分批生产氢气对于氢气生产行业的大规模应用是有希望的。这是PNSB将TAPY培养基用于生长和制氢的第一份报告。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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