Treatment of volatile organic chemicals on the EPA contaminant candidate list using ozonation and the O3/H2O2 advanced oxidation process

被引:44
|
作者
Chen, WR
Sharpless, CM
Linden, KG
Suffet, IHM [1 ]
机构
[1] Univ Calif Los Angeles, Dept Environm Hlth Sci, Environm Sci & Engn Program, Los Angeles, CA 90095 USA
[2] Duke Univ, Dept Civil & Environm Engn, Durham, NC 27708 USA
关键词
D O I
10.1021/es051961m
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Seven volatile organic chemicals (VOCs) on the EPA Contaminant Candidate List together with 1,1-dichloropropane were studied for their reaction kinetics and mechanisms with ozone and OH radicals during ozonation and the ozone/ hydrogen peroxide advanced oxidation process (O-3/H2O2 AOP) using batch reactors. The three aromatic VOCs demonstrated high reactivity during ozonation and were eliminated within minutes after ozone addition, The high reactivity is attributed to their fast, indirect 0 H radical reactions with k(OH,M) of (5.3-6.6) x 10(9) M-1 s(-1). Rates of aromatic VOC degradation are in the order 1,2,4-trimethyl benzene > p-cymene > bromobenzene. This order is caused by the selectivity of the direct ozone reactions (k(O3,M) ranges from 0.16 to 304 M-1 s(-1))and appears to be related to the electron-donating or -withdrawing ability of the substituent groups on the aromatic ring. The removal rates for the five aliphatic VOCs are much lower and are in the order 1,1-dichloropropane > 1,3-dichloropropane > 1,1-dichloroethane > 2,2-dichloropropane > 1,1,2,2-tetrachloroethane. The second-order indirect rate constants for the aliphatic VOCs range from 0.52 x 10(8) to 5.5 x 10(8) M-1 s(-1). The relative stability of the carbon-centered intermediates seems to be related to the relative reactivity of the aliphatic VOCs with OH radicals. Except for 1,3-dichloropropane, ozonation and the O-3/H2O2 AOP are not effective for the removal of other aliphatic VOCs. Bromide formation during the ozonation of bromobenzene indicates that bromate can be formed, and thus, ozonation and O-3/H2O2 AOP may not be suitable for the treatment of bromobenzene.
引用
收藏
页码:2734 / 2739
页数:6
相关论文
共 50 条
  • [1] Rate of dibutylsulfide decomposition by ozonation and the O3/H2O2 advanced oxidation process
    Popiel, Stanislaw
    Nalepa, Tomasz
    Dzierzak, Dorota
    Stankiewicz, Romuald
    Witkiewicz, Zygfryd
    JOURNAL OF HAZARDOUS MATERIALS, 2009, 164 (2-3) : 1364 - 1371
  • [2] Kinetic studies of volatile organic chemicals on the EPA contaminant candidate list by advanced oxidation processes.
    Chen, WR
    Sharpless, CM
    Linden, KG
    Suffet, IH
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2004, 228 : U551 - U551
  • [3] Degradation mechanism of alachlor during direct ozonation and O3/H2O2 advanced oxidation process
    Qiang, Zhimin
    Liu, Chao
    Dong, Bingzhi
    Zhang, Yalei
    CHEMOSPHERE, 2010, 78 (05) : 517 - 526
  • [4] Oxidative degradation of endotoxin by advanced oxidation process (O3/H2O2 & UV/H2O2)
    Oh, Byung-Taek
    Seo, Young-Suk
    Sudhakar, Dega
    Choe, Ji-Hyun
    Lee, Sang-Myeong
    Park, Youn-Jong
    Cho, Min
    JOURNAL OF HAZARDOUS MATERIALS, 2014, 279 : 105 - 110
  • [5] Characterization of oxidation processes:: ozonation and the AOP O3/H2O2
    Acero, JL
    Von Gunten, U
    JOURNAL AMERICAN WATER WORKS ASSOCIATION, 2001, 93 (10): : 90 - 100
  • [6] Removal of diethyl phthalate from water solution by adsorption, photo-oxidation, ozonation and advanced oxidation process (UV/H2O2, O3/H2O2 and O3/activated carbon)
    Medellin-Castillo, Nahum A.
    Ocampo-Perez, Raul
    Leyva-Ramos, Roberto
    Sanchez-Polo, Manuel
    Rivera-Utrilla, Jose
    Mendez-Diaz, Jose D.
    SCIENCE OF THE TOTAL ENVIRONMENT, 2013, 442 : 26 - 35
  • [7] Removal of pharmaceuticals using combination of UV/H2O2/O3 advanced oxidation process
    Lester, Y.
    Avisar, D.
    Gozlan, I.
    Mamane, H.
    WATER SCIENCE AND TECHNOLOGY, 2011, 64 (11) : 2230 - 2238
  • [8] Advanced oxidation of synthetic dyehouse effluent by O3,H2O2/O3 and H2O2/UV processes
    Arslan, I
    Balcioglu, IA
    Tuhkanen, T
    ENVIRONMENTAL TECHNOLOGY, 1999, 20 (09) : 921 - 931
  • [9] Comparison of the efficiency of •OH radical formation during ozonation and the advanced oxidation processes O3/H2O2 and UV/H2O2
    Rosenfeldt, Erik J.
    Linden, Karl G.
    Canonica, Silvio
    von Gunten, Urs
    WATER RESEARCH, 2006, 40 (20) : 3695 - 3704
  • [10] Treatment of berberine hydrochloride pharmaceutical wastewater by O3/UV/H2O2 advanced oxidation process
    Qin, Weiwei
    Song, Yonghui
    Dai, Yunrong
    Qiu, Guanglei
    Ren, Meijie
    Zeng, Ping
    ENVIRONMENTAL EARTH SCIENCES, 2015, 73 (09) : 4939 - 4946