Department of Civil and Environmental Engineering, Korea Advanced Institute of Science and Technology, 291 Daehak-ro, Yuseong-gu, Daejeon 305-701, Republic of Korea.
Department of Civil and Environmental Engineering, Korea Advanced Institute of Science and Technology, 291 Daehak-ro, Yuseong-gu, Daejeon 305-701, Republic of Korea.
J Hazard Mater. 2014 Sep 15;280:31-7. doi: 10.1016/j.jhazmat.2014.07.054. Epub 2014 Aug 1.
Degradation of off-gas toluene from a toluene reservoir and a soil vapor extraction (SVE) process was investigated in a continuous pyrite Fenton system. The removal of off-gas toluene from the toluene reservoir was >95% by 8h in the pyrite Fenton system, while it was ∼97 % by 3h in classic Fenton system and then rapidly decreased to initial level by 8h. Continuous consumption of low Fe(II) concentration dissolved from pyrite surface (0.05-0.11 mM) was observed in the pyrite Fenton system, which can lead to the effective and successful removal of the gas-phase toluene due to stable production of OH radical (OH). Inhibitor and spectroscopic test results showed that OH was a dominant radical that degraded gas-phase toluene during the reaction. Off-gas toluene from the SVE process was removed by 96% in the pyrite Fenton system, and remnant toluene from rebounding effect was treated by 99%. Main transformation products from toluene oxidation were benzoic acid (31.4%) and CO2 (38.8%) at 4h, while traces of benzyl alcohol (1.3%) and benzaldehyde (0.7%) were observed. Maximum operation time of continuous pyrite Fenton system was estimated to be 56-61 d and its optimal operation time achieving emission standard was 28.9 d.
在连续黄铁矿芬顿系统中研究了从甲苯储层和土壤气相抽提(SVE)过程中降解废气甲苯。在黄铁矿芬顿系统中,经过 8 小时处理,甲苯储层中的废气甲苯去除率超过 95%,而在经典芬顿系统中,去除率约为 97%,然后在 8 小时内迅速降至初始水平。在黄铁矿芬顿系统中连续消耗低浓度溶解的黄铁矿表面的 Fe(II)(0.05-0.11 mM),这可以导致由于 OH 自由基(OH)的稳定产生而有效地成功去除气相甲苯。抑制剂和光谱测试结果表明,在反应过程中,OH 是降解气相甲苯的主要自由基。废气甲苯从 SVE 过程中通过黄铁矿芬顿系统去除了 96%,而反弹效应的残余甲苯则处理了 99%。甲苯氧化的主要转化产物在 4 小时时为苯甲酸(31.4%)和 CO2(38.8%),而痕量的苄醇(1.3%)和苯甲醛(0.7%)也被观察到。连续黄铁矿芬顿系统的最大运行时间估计为 56-61 天,达到排放标准的最佳运行时间为 28.9 天。