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介质阻挡放电等离子体联合活性炭纤维降解水溶液中的三氯生

Degradation of triclosan in aqueous solution by dielectric barrier discharge plasma combined with activated carbon fibers.

作者信息

Xin Lu, Sun Yabing, Feng Jingwei, Wang Jian, He Dong

机构信息

State Key Laboratory of Pollution Control & Resources Reuse, School of the Environment, Nanjing University, Nanjing 210046, PR China.

State Key Laboratory of Pollution Control & Resources Reuse, School of the Environment, Nanjing University, Nanjing 210046, PR China.

出版信息

Chemosphere. 2016 Feb;144:855-63. doi: 10.1016/j.chemosphere.2015.09.054. Epub 2015 Sep 28.

Abstract

The degradation of triclosan (TCS) in aqueous solution by dielectric barrier discharge (DBD) plasma with activated carbon fibers (ACFs) was investigated. In this study, ACFs and DBD plasma coexisted in a planar DBD plasma reactor, which could synchronously achieve degradation of TCS, modification and in situ regeneration of ACFs, enhancing the effect of recycling of ACFs. The properties of ACFs before and after modification by DBD plasma were characterized by BET and XPS. Various processing parameters affecting the synergetic degradation of TCS were also investigated. The results exhibited excellent synergetic effects in DBD plasma-ACFs system on TCS degradation. The degradation efficiency of 120 mL TCS with initial concentration of 10 mg L(-1) could reach 93% with 1 mm thick ACFs in 18 min at input power of 80 W, compared with 85% by single DBD plasma. Meanwhile, the removal rate of total organic carbon increased from 12% at pH 6.26-24% at pH 3.50. ACFs could ameliorate the degradation efficiency for planar DBD plasma when treating TCS solution at high flow rates or at low initial concentrations. A possible degradation pathway of TCS was investigated according to the detected intermediates, which were identified by liquid chromatography-hybrid quadrupole time-of-flight mass spectrometry (LC-QTOF-MS) combined with theoretical calculation of Gaussian 09 program.

摘要

研究了采用活性炭纤维(ACF)的介质阻挡放电(DBD)等离子体对水溶液中三氯生(TCS)的降解情况。在本研究中,ACF与DBD等离子体共存于平面DBD等离子体反应器中,该反应器可同步实现TCS的降解、ACF的改性及原位再生,增强了ACF的循环利用效果。采用BET和XPS对DBD等离子体改性前后ACF的性能进行了表征。还研究了影响TCS协同降解的各种工艺参数。结果表明,DBD等离子体-ACF体系对TCS降解具有优异的协同效应。在80 W输入功率下,18 min内,1 mm厚的ACF对初始浓度为10 mg L(-1)的120 mL TCS的降解效率可达93%,而单一DBD等离子体的降解效率为85%。同时,总有机碳的去除率从pH 6.26时的12%提高到pH 3.50时的24%。在处理高流速或低初始浓度的TCS溶液时,ACF可提高平面DBD等离子体的降解效率。根据检测到的中间体,结合高斯09程序的理论计算,研究了TCS可能的降解途径,这些中间体通过液相色谱-混合四极杆飞行时间质谱(LC-QTOF-MS)进行了鉴定。

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