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Electricity generation and dibenzothiophene biodegradation using a novel electroactive bacterium Lysinibacillus macroides AP in microbial fuel cells
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作者 Zihan Huang Lei Zhang +3 位作者 Ting Cai Ruijun Liu Xiaoyan Qi Xia Wang 《Engineering Microbiology》 2025年第4期1-11,共11页
Polycyclic aromatic sulfur heterocycles,such as dibenzothiophene(DBT),and their alkylated derivatives are recognized as persistent and toxic contaminants that pose major risks to the environment and human health.Here,... Polycyclic aromatic sulfur heterocycles,such as dibenzothiophene(DBT),and their alkylated derivatives are recognized as persistent and toxic contaminants that pose major risks to the environment and human health.Here,a novel electroactive gram-positive bacterium,Lysinibacillus macroides AP,was isolated and identified from a microbial fuel cell(MFC)powered by aromatic compounds.An electricity generation performance with a maximum discharge voltage of 424.59 mV and a power density of 420.95 mW m^(-2) was obtained using L.macroides AP in an MFC fueled with sodium formate.An analysis of the extracellular electron transfer(EET)mechanism indicated that the endogenous redox mediators produced by L.macroides AP were not detected,but exogenous redox mediators such as thionine acetate and anthraquinone-2,6-disulfonate could temporarily enhance EET.The characterization of biofilm morphology revealed a dense network of microbial nanowires on the cell surface of L.macroides AP;the abundance of these nanowires was positively correlated with the discharge efficiency of the MFC,suggesting that the nanowires generated by L.macroides AP cells were likely to promote EET.Additionally,effective bioelectricity generation and simultaneous DBT degradation were successfully achieved using L.macroides AP in MFCs,with a power density of 385.20 mW m^(-2) and 88.72%DBT removal.This is the first report on a novel ecological role of L.macroides AP as a gram-positive electroactive bacterium,emphasizing its potential applications in environmental remediation and energy recovery. 展开更多
关键词 Lysinibacillus macroides Dibenzothiophene degradation NANOWIRES Extracellular electron transfer Microbial fuel cells
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太湖土著激浪鱼内脏中溶藻菌R1的筛选及其特性研究 被引量:6
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作者 董小娜 陈泽慧 +1 位作者 毛林强 张文艺 《工业安全与环保》 2018年第8期69-72,共4页
从长期生活在蓝藻暴发区域的太湖土著激浪鱼体中,筛选出1株高效溶藻菌,命名为R1,经生理生化鉴定及其16S r DNA分析其与Lysinibacillus macroides相似性最高,达99.50%。以铜绿微囊藻(Microcystis aeruginosa)为受试对象,以Chl-a含量检验R... 从长期生活在蓝藻暴发区域的太湖土著激浪鱼体中,筛选出1株高效溶藻菌,命名为R1,经生理生化鉴定及其16S r DNA分析其与Lysinibacillus macroides相似性最高,达99.50%。以铜绿微囊藻(Microcystis aeruginosa)为受试对象,以Chl-a含量检验R1溶藻效果,考察了菌株的生长特性、溶藻能力及其溶藻过程等。结果表明:菌株R1具有较强的溶藻特性,10 d内chl-a质量浓度从205.11 mg/m^3降至35.61 mg/m^3,溶藻率达82.64%;菌株R1对数生长期末时溶藻能力最强,最适生长p H值为7.5,盐度为0.8%,最适碳源为葡萄糖,最适氮源为玉米汁;溶藻路径可总结为:菌液感染细胞—藻细胞细胞壁及膜被破坏—胞内物质(细胞质、细胞核及色素等)外泄—细胞死亡。本研究为生物除藻提供理论基础。 展开更多
关键词 溶藻细菌 铜绿微囊藻 Lysinibacillus macroides 溶藻路径
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