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强化声化学降解与高级氧化剂结合的 2-皮考啉。

Intensified sonochemical degradation of 2-Picoline in combination with advanced oxidizing agents.

机构信息

Department of Chemical Engineering, Institute of Chemical Technology, Mumbai 400019, India.

Department of Chemical Engineering, Institute of Chemical Technology, Mumbai 400019, India.

出版信息

Ultrason Sonochem. 2021 Sep;77:105702. doi: 10.1016/j.ultsonch.2021.105702. Epub 2021 Aug 3.

Abstract

2-picoline is a very important pyridine derivative with significant applications though it is also poisonous and harmful having considerable adverse influence on aquatic life, environment and organisms. The need for developing effective treatment methodologies for 2-Picoline directed the current work focusing on degradation of 2-Picoline using the combination of ultrasound and advanced oxidants such as hydrogen peroxide (HO), potassium persulphate (KPS), Fenton's reagent, and Peroxymonosulphate (PMS) along with the use of Titanium oxide (TiO) as catalyst. Ultrasonic bath having 8 L capacity and operating frequency of 40 ± 2 kHz has been used. The effect of parameters like power, initial pH, temperature, time and initial concentration of 2-Picoline were studied to establish best operating conditions which were further used in the combination treatment approaches of ultrasound with oxidising agents. The chemical oxygen demand (COD) reduction for the optimized approaches of ultrasound in combination with oxidizing agents was also determined. Degradation experiments were performed using oxidising agents also in absence of ultrasound to investigate the individual treatment capacity of the oxidants and also the synergetic index for the combination. Kinetic study demonstrated that second order model suited for all the treatment approaches except US/Fenton where first order model fitted better. Ultrasound in combination with Fenton reagent demonstrated a substantial synergy for the degradation of 2-Picoline compared to other treatment approaches showing highest degradation of 97.6 %, synergetic index as 5.71, cavitational yield of 1.82 × 10 mg/J and COD removal of 82.4 %.

摘要

2-皮考啉是一种非常重要的吡啶衍生物,尽管它具有毒性和危害性,对水生生物、环境和生物有相当大的不利影响,但它具有重要的应用。因此,需要开发有效的 2-皮考啉处理方法,这促使当前的工作集中在使用超声和高级氧化剂(如过氧化氢(HO)、过硫酸钾(KPS)、芬顿试剂和过一硫酸盐(PMS))的组合以及使用二氧化钛(TiO)作为催化剂来降解 2-皮考啉。使用了容量为 8 L、工作频率为 40 ± 2 kHz 的超声浴。研究了功率、初始 pH 值、温度、时间和 2-皮考啉初始浓度等参数的影响,以确定最佳操作条件,然后将这些条件进一步用于超声与氧化剂的组合处理方法中。还确定了优化的超声与氧化剂组合方法的化学需氧量(COD)降低。在没有超声的情况下,使用氧化剂进行降解实验,以研究氧化剂的单独处理能力以及组合的协同指数。动力学研究表明,除了 US/Fenton 之外,所有处理方法都适合二级模型,而 US/Fenton 则更适合一级模型。与其他处理方法相比,超声与芬顿试剂的组合对 2-皮考啉的降解表现出显著的协同作用,显示出最高的降解率为 97.6%,协同指数为 5.71,空化产率为 1.82×10mg/J,COD 去除率为 82.4%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4785/8358469/d0c4cfa6d0b3/gr1.jpg

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