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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Visible-light-driven photocatalytic inactivation of Escherichia coli K-12 over thermal treated natural magnetic sphalerite: Band structure analysis and toxicity evaluation
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Visible-light-driven photocatalytic inactivation of Escherichia coli K-12 over thermal treated natural magnetic sphalerite: Band structure analysis and toxicity evaluation

机译:热处理天然磁性闪锌矿大肠杆菌C大肠杆菌K-12的可见光光催化剂:带结构分析和毒性评价

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摘要

The cost-effective natural magnetic sphalerite (NMS) was thermally treated to further enhance its photocatalytic activity for water disinfection. Within 6 h visible light irradiation, the calcined NMS700 exhibited enhanced Escherichia coli inactivation with 6 log(10) cfu/mL of cell reduction, while the pristine NMS (NMSO) only showed 2.5 log(10) cfu/mL of cell reduction. After calcination, the pristine binary composite of ZnS/FeS for NMSO was transformed into a ternary ZnS/ZnFe2O4/ZnO composite for NMS700. The optimum photocatalytic activity of NMS700 was attributed to the efficient charge separation originated from the three-level electron transfer system, well evidenced by the highest photocurrent and fastest electron-hole separation among all the calcined NMS samples. Scavenger study and probe determination demonstrated that the dominant bactericidal agent was changed from superoxide radical (center dot O-2(-)) for NMSO to hole (h(+)) and hydroxyl radical (center dot OH) for NMS700. Moreover, vibrating sampling magnetizer (VSM) analysis revealed that the saturated magnetism was enhanced from 0.03 emu/g for NMSO to 0.15 emu/g for NMS700, due to the appearance of magnetic component like ZnFe2O4. In addition, NMSO were not genotoxic but cytotoxic, while NMS700 was toxic of both, indicating the superior stability of NMS700 was obtained after calcination treatment. The study demonstrated that the calcination is an effective strategy to modify natural mineral-photocatalyst into highly effective photocatalyst activated by solar energy.
机译:热处理经济效益的天然磁性闪锌矿(NMS)以进一步增强其对水消毒的光催化活性。在6小时可见光照射中,煅烧的NMS700显示出增强的大肠杆菌灭活与6个log(10)CFU / ml的细胞减少,而原始NMS(NMSO)仅显示2.5对数(10)CFU / mL的细胞还原。煅烧后,将NMSO的ZnS / FeS的原始二进制复合物转化为NMS700的三元ZnS / ZnFe2O4 / ZnO复合材料。 NMS700的最佳光催化活性归因于源自三级电子转移系统的有效电荷分离,并且通过所有煅烧的NMS样品中的最高光电流和最快的电子空穴分离良好地证明。清除剂研究和探针测定表明,主要的杀菌剂从用于NMSO(H(+))和NMS700的孔(H(+))和羟基自由基(中心点OH)改变。此外,振动采样磁化器(VSM)分析显示,由于磁性分量如ZnFe2O4,从0.15mO / g的NMSO至0.15 emu / g增强了饱和磁性的0.15mu / g。此外,NMSO不是遗传毒性但细胞毒性,而NMS700两者都毒性,表明在煅烧处理后获得NMS700的卓越稳定性。该研究表明,煅烧是将天然矿物光催化剂改性到太阳能激活的高效光催化剂的有效策略。

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