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首页> 外文期刊>Separation and Purification Technology >CdS QDs modified BiOI/Bi2MoO6 nanocomposite for degradation of quinolone and tetracycline types of antibiotics towards environmental remediation
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CdS QDs modified BiOI/Bi2MoO6 nanocomposite for degradation of quinolone and tetracycline types of antibiotics towards environmental remediation

机译:CDS QDS改性BioI / Bi2Moo6纳米复合材料用于降解喹诺酮和四环素类型的抗生素对环境修复

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Prevention of future threat of antibiotic-resistant bacteria and genes by elimination of discharged antibiotics from environment pleas for growth of cutting edge technologies with high efficiency. Herein, CdS QDs modified BiOI-Bi doped Bi2MoO6 nanocomposite (BOI-CBBMO) was synthesized by in-situ precipitation deposition method. The unique composite with 3% CdS QDs i.e. BOI-CBBMO-3 exhibits best degradation performance of four ubiquitous antibiotics i.e. 87%, 87% 75% and 93% for tetracycline, oxy-tetracycline, ciprofloxacin, norfloxacin in 60 min of sunlight irradiation and %OH is mainly responsible for degradation process. Real environmental factors like pH, inorganic salts are also considered for degradation. The chemical interaction exists between catalyst and antibiotics are ascertained by zeta potential and contact angle experiment. This evidenced hydrophobic-hydrophilic interaction rather electrostatic interaction. Intermediate products are detected Liquid Chromatography-Mass Spectrometry analysis reveals presence of no anti-bacterially active products.
机译:通过从环境请求中消除来自环境的排出的抗生素来预防抗生素抗性细菌和基因的未来威胁,以高效率。这里,通过原位沉淀沉积方法合成CDS QDS改性BioI-Bi掺杂Bi2Moo6纳米复合材料(Boi-CBBMO)。具有3%CDS QD的独特复合材料,即Boi-CBBMO-3表现出四种无处不在的抗生素的最佳降解性能,即四环素,氧 - 四环素,环丙沙星,60分钟的阳光照射和%OH主要负责降解过程。还认为pH值等实际环境因素也被认为是降解的。通过Zeta电位和接触角实验确定催化剂和抗生素之间的化学相互作用。这证明了疏水性亲水性相互作用相当静电相互作用。检测中间产物检测液相色谱 - 质谱分析显示没有抗细胞活性产物的存在。

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