中国环境科学
中國環境科學
중국배경과학
CHINA ENVIRONMENTAL SCIENCE
2014年
4期
889-895
,共7页
魏红%杨虹%赵琳%李克斌%于雪丽
魏紅%楊虹%趙琳%李剋斌%于雪麗
위홍%양홍%조림%리극빈%우설려
粉煤灰%超声/H2O2%左氧氟沙星%HPLC/MS/MS%反应路径
粉煤灰%超聲/H2O2%左氧氟沙星%HPLC/MS/MS%反應路徑
분매회%초성/H2O2%좌양불사성%HPLC/MS/MS%반응로경
fly ash%ultrasonic/hydrogen peroxide%levofloxacin%HPLC/MS/MS analysis%degradation pathway
研究粉煤灰对超声/H2O2体系降解左氧氟沙星的增强效果,考察了粉煤灰添加量、H2O2浓度、溶液初始pH值、左氧氟沙星初始浓度等对降解效果的影响.结果表明,与单独超声,H2O2氧化,超声/H2O2,超声/粉煤灰,粉煤灰/H2O2氧化相比,粉煤灰有效增强了超声/H2O2体系对左氧氟沙星的降解,降解反应符合一级反应动力学.粉煤灰添加量为1.5g/L,H2O2浓度为15.0mmol/L,pH=7.16,超声功率325W,左氧氟沙星初始浓度20mg/L,反应160min,左氧氟沙星的去除率达到99.12%,TOC去除率为17.37%.利用荧光探针法对不同体系产生的·OH浓度进行了分析比较,粉煤灰作为非均相催化剂,主要在于发生类Fenton反应.采用HPLC/MS/MS方法对3种反应产物进行了分析,结果表明左氧氟沙星主要是通过喹诺酮环失去-C2,哌嗪环去亚甲基化以及·OH进攻喹诺酮环发生降解.
研究粉煤灰對超聲/H2O2體繫降解左氧氟沙星的增彊效果,攷察瞭粉煤灰添加量、H2O2濃度、溶液初始pH值、左氧氟沙星初始濃度等對降解效果的影響.結果錶明,與單獨超聲,H2O2氧化,超聲/H2O2,超聲/粉煤灰,粉煤灰/H2O2氧化相比,粉煤灰有效增彊瞭超聲/H2O2體繫對左氧氟沙星的降解,降解反應符閤一級反應動力學.粉煤灰添加量為1.5g/L,H2O2濃度為15.0mmol/L,pH=7.16,超聲功率325W,左氧氟沙星初始濃度20mg/L,反應160min,左氧氟沙星的去除率達到99.12%,TOC去除率為17.37%.利用熒光探針法對不同體繫產生的·OH濃度進行瞭分析比較,粉煤灰作為非均相催化劑,主要在于髮生類Fenton反應.採用HPLC/MS/MS方法對3種反應產物進行瞭分析,結果錶明左氧氟沙星主要是通過喹諾酮環失去-C2,哌嗪環去亞甲基化以及·OH進攻喹諾酮環髮生降解.
연구분매회대초성/H2O2체계강해좌양불사성적증강효과,고찰료분매회첨가량、H2O2농도、용액초시pH치、좌양불사성초시농도등대강해효과적영향.결과표명,여단독초성,H2O2양화,초성/H2O2,초성/분매회,분매회/H2O2양화상비,분매회유효증강료초성/H2O2체계대좌양불사성적강해,강해반응부합일급반응동역학.분매회첨가량위1.5g/L,H2O2농도위15.0mmol/L,pH=7.16,초성공솔325W,좌양불사성초시농도20mg/L,반응160min,좌양불사성적거제솔체도99.12%,TOC거제솔위17.37%.이용형광탐침법대불동체계산생적·OH농도진행료분석비교,분매회작위비균상최화제,주요재우발생류Fenton반응.채용HPLC/MS/MS방법대3충반응산물진행료분석,결과표명좌양불사성주요시통과규낙동배실거-C2,고진배거아갑기화이급·OH진공규낙동배발생강해.
The intensification of levofloxacin degradation in ultrasonic/H2O2/fly ash combined system was studied. The experimental parameters such as fly ash adding amount, H2O2 concentration, pH value and levofloxacin initial concentration on degradation efficiency were evaluated. The results indicated that when compared with single sonolysis, H2O2 oxidation, ultrasonic/H2O2 and fly ash/H2O2 binary systems, levofloxacin degradation was markedly promoted in ultrasonic/H2O2/fly ash ternary system. Levofloxacin degradation in ultrasonic/H2O2/fly ash system followed apparent first-order kinetics. The removal efficiency for 20mg/L levofloxacin under fly ash adding amount of 1.5g/L, H2O2 concentration of 15.0mmol/L, pH 7.16, and ultrasonic power of 325W could achieve 99.12% within 160min treatment, whereas TOC removal only attained 17.37%. Fluorescence probe analysis indicated that the combination of ultrasonic/H2O2/fly ashenhanced the heterogeneous Fenton-like reaction on fly ash surface. HPLC/MS/MS analysis revealed that three intermediates were generated, which derived from demethylation of the piperazinyl ring,the transformation of the quinolone moiety through the loss of C2 and attack of quinolone moiety by?OH.