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针-水结构纳秒脉冲气液放电降解四环素

陈鹏举 周子凯 王森 方志

强激光与粒子束2024,Vol.36Issue(3):125-133,9.
强激光与粒子束2024,Vol.36Issue(3):125-133,9.DOI:10.11884/HPLPB202436.230270

针-水结构纳秒脉冲气液放电降解四环素

Optimization of tetracycline degradation by nanosecond pulsed gas-liquid discharge with needle-water configuration

陈鹏举 1周子凯 2王森 2方志2

作者信息

  • 1. 南京工业大学机械与动力工程学院,南京 211816
  • 2. 南京工业大学电气工程与控制科学学院,南京 211816
  • 折叠

摘要

Abstract

Water pollution caused by the overuse of antibiotics poses a major threat to the natural environment and human health.As a green and environmentally friendly advanced oxidation technology,low-temperature plasma is considered to be one of the most promising antibiotic degradation methods,but it needs to be further improved in terms of degradation efficiency and energy efficiency.In this study,transient spark discharge was obtained by using nanosecond pulse power supply with a needle-water electrode configuration,and applied to tetracycline degradation in water.The effect of pulse voltage,frequency,initial concentration,initial pH value on tetracycline degradation was studied,and the results show that the degradation rate of tetracycline was the highest under the condition that the initial concentration was 50 mg/L,the pulse voltage was 9 kV,the frequency was 2 kHz,the initial pH is neutral,and the degradation rate reached 91.6%when the processing time was 10 min.The energy efficiency and electrical energy per order are 0.165 g·kW-1·h-1 and 0.78 kW·h·m-3,respectively.Free radical quenching experiments showed that hydroxyl radicals(·OH)played a major role in the degradation of tetracycline,while H2O2 and O3 played a slightly weaker role.Cytotoxicity experiments also showed that the toxicity of the solution decreased significantly after 10 min of gas-liquid discharge treatment.

关键词

低温等离子体/气液放电/四环素抗生素/抗生素降解/活性氧物种

Key words

non-thermal plasma/gas-liquid discharge/tetracycline antibiotics/antibiotic degradation/reactive oxygen species

分类

数理科学

引用本文复制引用

陈鹏举,周子凯,王森,方志..针-水结构纳秒脉冲气液放电降解四环素[J].强激光与粒子束,2024,36(3):125-133,9.

基金项目

国家自然科学基金项目(52277151、51907088) (52277151、51907088)

强激光与粒子束

OA北大核心CSTPCD

1001-4322

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