删除或更新信息,请邮件至freekaoyan#163.com(#换成@)

Synergetic effect of bio-photocatalytic hybrid system: g-C3N4 and Acinetobacter sp JLS1 for enhanced

本站小编 Free考研考试/2020-03-20

论文编号:
论文题目: Synergetic effect of bio-photocatalytic hybrid system: g-C3N4 and Acinetobacter sp JLS1 for enhanced degradation of C-16 alkane
英文论文题目: Synergetic effect of bio-photocatalytic hybrid system: g-C3N4 and Acinetobacter sp JLS1 for enhanced degradation of C-16 alkane
第一作者: 徐兴健
英文第一作者: Xu, X. J.
联系作者: 于洪文
英文联系作者: Yu, H. W.
外单位作者单位:
英文外单位作者单位:
发表年度: 2017
卷: 323
期:
页码: 520-529
摘要: Petroleum hydrocarbons are ubiquitous in nature and generally lead to contamination. The aim of this study was to establish a bio-photocatalytic system using graphite-like carbon nitride (g-C3N4) and petroleum-degrading bacterium Acinetobacter sp. JLS1 and evaluate its effect on C-16 alkane degradation. The successfully synthesized g-C3N4 produced no obvious lethal effect to strain JLS1 until 1 g/L. C-16 alkane (0.25% v/v) degradation was investigated in the individual (photocatalytic or biocatalytic) and hybrid (bio-photocatalytic) systems. The C16 alkane removal efficiency of the hybrid system under visible light irradiation was 78.2% within 4 h, which was more effective than that of photocatalytic (26.8%) and biocatalytic (38.3%) systems. This positive synergetic effect between g-C3N4 and strain JLS1 was due to the photocatalytic activity of g-C3N4 for C-16 alkane degradation and increased porosity and permeability of bacterial membrane, thus facilitating the entry of targeted compound into bacterial cells. In the hybrid system, hexadecanoic acid, dodecanoic acid and octanoic acid were examined out in bacterial cells, which were biostransformed by strain JLS1 from initial C-16 alkane and its photocatalytic degradation products (alkanes with relative lower C atoms). In addition, alkB gene transcription was strongly upregulated by g-C3N4 under visible-light irradiation, however, growth of strain JLS1 slightly improved compared to that in other tested systems, suggesting that continuous attack of photocatalytic reaction constantly impeded the repair process of bacterial cell. The established effective bio-photocatalytic system not only drew a new sight for further research but also provided a promising remediation approach for dealing with petroleum hydrocarbons. (C) 2017 Elsevier B.V. All rights reserved.
英文摘要: Petroleum hydrocarbons are ubiquitous in nature and generally lead to contamination. The aim of this study was to establish a bio-photocatalytic system using graphite-like carbon nitride (g-C3N4) and petroleum-degrading bacterium Acinetobacter sp. JLS1 and evaluate its effect on C-16 alkane degradation. The successfully synthesized g-C3N4 produced no obvious lethal effect to strain JLS1 until 1 g/L. C-16 alkane (0.25% v/v) degradation was investigated in the individual (photocatalytic or biocatalytic) and hybrid (bio-photocatalytic) systems. The C16 alkane removal efficiency of the hybrid system under visible light irradiation was 78.2% within 4 h, which was more effective than that of photocatalytic (26.8%) and biocatalytic (38.3%) systems. This positive synergetic effect between g-C3N4 and strain JLS1 was due to the photocatalytic activity of g-C3N4 for C-16 alkane degradation and increased porosity and permeability of bacterial membrane, thus facilitating the entry of targeted compound into bacterial cells. In the hybrid system, hexadecanoic acid, dodecanoic acid and octanoic acid were examined out in bacterial cells, which were biostransformed by strain JLS1 from initial C-16 alkane and its photocatalytic degradation products (alkanes with relative lower C atoms). In addition, alkB gene transcription was strongly upregulated by g-C3N4 under visible-light irradiation, however, growth of strain JLS1 slightly improved compared to that in other tested systems, suggesting that continuous attack of photocatalytic reaction constantly impeded the repair process of bacterial cell. The established effective bio-photocatalytic system not only drew a new sight for further research but also provided a promising remediation approach for dealing with petroleum hydrocarbons. (C) 2017 Elsevier B.V. All rights reserved.
刊物名称: Chemical Engineering Journal
英文刊物名称: Chemical Engineering Journal
论文全文:
英文论文全文:
全文链接:
其它备注:
英文其它备注:
学科:
英文学科:
影响因子:
第一作者所在部门:
英文第一作者所在部门:
论文出处:
英文论文出处:
论文类别:
英文论文类别:
参与作者: Zhai, Z. H.,Li, H. Y.,Wang, Q. Y.,Han, X. R.,Yu, H. W.
英文参与作者: Zhai, Z. H.,Li, H. Y.,Wang, Q. Y.,Han, X. R.,Yu, H. W.
相关话题/Synergetic effect photocatalytic