首页> 外文OA文献 >Kinetic analysis of 2-chlorophenol photodegradation over alpha-feooh nanoparticles prepared in cationic surfactant electrolyte
【2h】

Kinetic analysis of 2-chlorophenol photodegradation over alpha-feooh nanoparticles prepared in cationic surfactant electrolyte

机译:阳离子表面活性剂电解质中制备的α-Feooh纳米粒子对2-氯苯酚光降解的动力学分析

摘要

2-Chlorophenol (2-CP) which widely used in various chemical processes such as in agriculture, paper, cosmetic, biocide, and public health industries, presents serious threats to the surrounding ecosystem. In recent years, photocatalytic treatment system was found to be the most promising alternative for the abatement of this recalcitrant pollutant1. a–FeOOH as a semiconductor catalyst, has been widely used in the degradation of many chlorinated compounds due to its unique electrical, optical and photoluminescence properties2. Owing to the advantages of using electrochemical as a catalyst preparation method3, this study reports the electrosynthesis of a– FeOOH nanoparticles in a cationic surfactant, IS (IS-FeOOH). IS that acts as an only electrolyte is capable in producing IS-FeOOH nanoparticles without any agglomeration4. Its crystallinity and morphology were analyzed using an X–ray diffractometer and a transmission electron microscope, respectively. The characterization results verified that IS plays an important role in the miniaturization of the a–FeOOH nanoparticles, with a diameter range of 5–10 nm (Figure 1). The activity of IS–FeOOH was tested on a photodegradation of 2– chlorophenol (2–CP). Results showed that at nearly neutral condition of pH 5 was able to completely degrade 2–CP within 180 min of reaction at 50°C, using 0.03 g L-1 of catalyst dosage and 50 mg L-1 of 2–CP initial concentration. Kinetic analysis indicates that the apparent rate constant, kapp increased with increasing initial concentration of 2–CP up to 50 mg L-1 and then reduced as the initial concentration increased to 70 mg L-1. The calculated kr and KLH were 8.3 mg L–1 min–1 and 2.8 × 10-4 L mg–1, respectively, suggesting a surface reaction was the controlling step of the process. The results provide strong evidence to support the potential use of IS as an alternative electrolyte to synthesize nanosized photocatalyst that can be used to treat organic pollutants.
机译:2-氯苯酚(2-CP)已广泛用于农业,造纸,化妆品,杀菌剂和公共卫生行业等各种化学过程,对周围的生态系统构成了严重威胁。近年来,发现光催化处理系统是消除这种顽固性污染物的最有希望的替代方法1。 a–FeOOH作为半导体催化剂,由于其独特的电,光和光致发光特性,已被广泛用于许多氯化物的降解2。由于使用电化学作为催化剂制备方法的优势3,本研究报道了在阳离子表面活性剂IS(IS-FeOOH)中α-FeO​​OH纳米粒子的电合成。作为唯一电解质的IS能够生产IS-FeOOH纳米颗粒而不会发生团聚4。分别使用X射线衍射仪和透射电子显微镜分析了其结晶度和形态。表征结果证实,IS在直径为5-10 nm的a–FeOOH纳米粒子的微型化中起着重要作用(图1)。通过光降解2-氯酚(2-CP)测试了IS-FeOOH的活性。结果表明,在0.05 g L-1的催化剂用量和50 mg L-1的2-CP初始浓度下,在接近中性的pH 5条件下,可以在50°C的反应180分钟内完全降解2-CP。动力学分析表明,表观速率常数kapp随2–CP的初始浓度增加至50 mg L-1而增加,然后随初始浓度增加至70 mg L-1而降低。计算得出的kr和KLH分别为8.3 mg L–1 min-1和2.8×10-4 L mg–1,表明表面反应是该过程的控制步骤。该结果提供了有力的证据来支持将IS用作替代电解质来合成可用于处理有机污染物的纳米级光催化剂的潜在用途。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号