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Studies on the Attached Cultivation of Filamentous Oleaginous Microalga Tribonema minus 被引量:3
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作者 ZHANG Yan JI Chunli +3 位作者 ZHOU Wenjun WANG Hui WANG Junfeng LIU Tianzhong 《Journal of Ocean University of China》 SCIE CAS CSCD 2020年第3期691-699,共9页
Attached cultivation is a promising method for microalgal biomass production. Filamentous oleaginous microalga Tribonema minus(hereafter T. minus) has shown a remarkable potential for biofuel production in terms of it... Attached cultivation is a promising method for microalgal biomass production. Filamentous oleaginous microalga Tribonema minus(hereafter T. minus) has shown a remarkable potential for biofuel production in terms of its high lipid content. However, the strain has only been cultivated in suspended cultivation systems including open pond and closed photobioreactors. Here, we attempted to study the attached cultivation of T. minus, which might be helpful for its scale-up cultivation and industrial applications. As the results, the optimal conditions for T. minus growth in the attached biofilm are 200 μmol photons m^-2 s^-1 of light intensity and 5% of CO2, and the maximum biomass density of 223 g m^-2 has been achieved under the light intensity. The non-woven fabric as substratum was found as the best substratum in thin layer attached bioreactor, on which the average biomass productivity of T. minus is about(9.73 ± 2.19) g m^-2)d^-1. Furthermore, two attached bioreactor systems, rotary drum and rotation disc, were designed following the light dilution strategy and introduced into T. minus cultivation. The highest footprint areal biomass productivity of these two systems is 33 and 47.1 g m^-2 d^-1, respectively, much higher than that in suspended cultivation system. The results shows that T. minus can be cultured with attached cultivation method to improve its biomass productivity. 展开更多
关键词 tribonema minus attached culture biomass productivity light dilution
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In vitro Antibacterial Activity of Palmitoleic Acid Isolated from Filamentous Microalga Tribonema minus Against Fish Pathogen Streptococcus agalactiae 被引量:1
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作者 WANG Feifei GUO Yuhao +1 位作者 CAO Yan ZHANG Chengwu 《Journal of Ocean University of China》 SCIE CAS CSCD 2022年第6期1615-1621,共7页
Filamentous microalgae from genus Tribonema are promising sustainable sources of omega-7 palmitoleic acid,but their ability to accumulate this compound varies among species and depends on the initial nitrogen concentr... Filamentous microalgae from genus Tribonema are promising sustainable sources of omega-7 palmitoleic acid,but their ability to accumulate this compound varies among species and depends on the initial nitrogen concentration(INC)supply.In this study,the palmitoleic acid accumulation capacities of five Tribonema species were examined under three different INCs to select the alga species with the highest production.Results showed that a high INC was associated with increased palmitoleic acid accumulation but led to decreased biomass concentration in all tested species.In particular,T.minus grown at 18 mmol L^(−1)INC had the highest palmitoleic acid content(20.72%of dry weight)and productivity(90.88 mg L^(−1)d−1).The combination of alkali metal freezing precipitation(AMFP)and urea complexation successfully isolated and enriched palmitoleic acid from T.minus and obtained a purity of 80.11%and a yield of 7.39 g(100 g)^(−1) of algal powder.The compound was identified as(9Z)-hexadecenoic acid(C16:1ω-7).Antibacterial activity evaluation for the highly concentrated palmitoleic acid(10 mg mL^(−1))against Streptococcus agalactiae revealed the formation of a 12.10 mm-diameter inhibition zone and the minimum inhibitory concentration of 31.25μg mL^(−1),indicating that palmitoleic acid is an effective antibacterial agent.This study is the first to report that palmitoleic acid derived from T.minus can antagonize S.agalactiae,which further broadens the potential application of Tribonema biomass in green aquaculture. 展开更多
关键词 tribonema palmitoleic acid ENRICHMENT Streptococcus agalactiae antibacterial activity
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柠檬酸调节水体酸碱度抑制黄丝藻藻华的研究 被引量:3
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作者 王爱卿 杨仕豪 +1 位作者 李西雨 潘连德 《淡水渔业》 CSCD 北大核心 2016年第3期52-59,共8页
用柠檬酸调节试验水体p H值,并保持在5.0、5.5、6.0和6.5四个梯度下,将采自养殖池塘的黄丝藻(Tribonema sp.)藻华的10 g藻丝体放入试验水体,每隔48 h采样一次,观察黄丝藻藻丝体外部形态、显微结构的变化。同时测定其叶绿素a(Chl a)、丙... 用柠檬酸调节试验水体p H值,并保持在5.0、5.5、6.0和6.5四个梯度下,将采自养殖池塘的黄丝藻(Tribonema sp.)藻华的10 g藻丝体放入试验水体,每隔48 h采样一次,观察黄丝藻藻丝体外部形态、显微结构的变化。同时测定其叶绿素a(Chl a)、丙二醛(MDA)的含量和超氧化物歧化酶(SOD)、过氧化氢酶(CAT)的活性。结果表明:96 h黄丝藻藻丝体大量下沉,有些藻丝体断裂,无气泡产生,水体开始混浊;192 h水体混浊、藻丝体断裂并溶解的现象进一步明显;192 h各试验组藻细胞内叶绿体集于中央,并呈现不同程度的解体,细胞结构也变得模糊,细胞质膜与细胞壁之间的空隙增大。四个试验组Chl a含量明显低于对照组。对于SOD、CAT的活性,p H5.0的试验组呈现下降趋势,而p H 5.5、6.0、6.5的试验组呈现先增长后下降的趋势;各个试验组MDA明显高于对照组,这说明192 h后黄丝藻藻丝体受到严重的破坏,开始解体、死亡。试验得出结论:用柠檬酸降低水体p H值,可以有效抑制或杀死了黄丝藻,从而控制了黄丝藻藻华。 展开更多
关键词 柠檬酸 黄丝藻(tribonema sp) 叶绿素A 抗氧化酶
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黄丝藻提油藻渣与牛粪共厌氧发酵研究
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作者 陈木子 刘彬 《湖北农业科学》 2019年第5期25-28,共4页
以黄丝藻(Tribonema minus)提油后剩余藻渣为原料,与牛粪混合进行厌氧发酵。结果表明,藻渣与牛粪混合发酵工艺能使发酵液维持在适于厌氧发酵菌群生长的pH环境。在藻渣和牛粪混合比为4∶6的厌氧发酵体系下,累计产气量(783 mL)、产甲烷速... 以黄丝藻(Tribonema minus)提油后剩余藻渣为原料,与牛粪混合进行厌氧发酵。结果表明,藻渣与牛粪混合发酵工艺能使发酵液维持在适于厌氧发酵菌群生长的pH环境。在藻渣和牛粪混合比为4∶6的厌氧发酵体系下,累计产气量(783 mL)、产甲烷速率[9.8 mL/(d·g VS)]均为最大,日产气量(86 mL/d)和累计产甲烷量(88.07 mL/g VS)较高,发酵滞留时间最短(2.1 d)。 展开更多
关键词 黄丝藻(tribonema minus) 藻渣 牛粪 共厌氧发酵
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