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微泡臭氧化抗氧化剂丁基羟基甲苯:降解动力学和毒性降低。

Microbubble ozonation of the antioxidant butylated hydroxytoluene: Degradation kinetics and toxicity reduction.

机构信息

Division of Environmental Science and Ecological Engineering, Korea University, Seoul, Republic of Korea.

Department of Geosciences, Federal University of Bahia, Salvador, Brazil.

出版信息

Environ Res. 2020 Jul;186:109496. doi: 10.1016/j.envres.2020.109496. Epub 2020 Apr 11.

Abstract

Butylated hydroxytoluene (BHT) is recognized as a crucial pollutant in aquatic environments, but efforts to achieve its complete removal are without success. The aim of this study was to investigate the degradation efficiency of BHT in water using ozone microbubbles (OMB), coupled with toxicity change assessment at sub-lethal BHT concentrations (0.34, 0.45 and 0.90 μM) based on oxidative stress biomarkers in Daphnia magna. The efficiency of OMB on ozone gas mass transfer was assessed and the contribution of hydroxyl radicals (·OH) in the degradation of BHT was determined using p-chlorobenzoic acid (pCBA) probe compound and a ·OH radical scavenger (sodium carbonate, NaCO). The ozone gas mass transfer coefficient (k = 1.02 × 10 s) was much larger than the ozone self-decomposition rate (k = 8 × 10 s) implying little influence of self-decomposing ozone in the volumetric ozone transfer during OMB generation. Generally, OMB improved ozone gas mass transfer (1.3-19-fold) relative to conventional ozone techniques, while indirect reaction of BHT with ·OH was dominant (82%) over the direct reaction with molecular ozone. Addition of 15, 25 and 35 mM NaCO reduced BHT degradation by 30, 50 and 65%, respectively, indicating the significance of ·OH in the degradation of BHT. Increase in initial BHT concentration correspondingly reduced its removal rate by OMB possibly due to increase in metabolites produced during ozonation. Post BHT treatment exposure tests recorded significant (p < 0.05) reductions in oxidative stress (according to enzyme activities changes) in D. magna compared to pretreatment tests, demonstrating the effectiveness of OMB in detoxification of BHT. Overall, the results of the study indicate that OMB is extremely efficient in complete degradation of BHT in water and, consequently, significantly (p < 0.05) reducing its toxicity.

摘要

丁基羟基甲苯(BHT)是水生环境中一种公认的重要污染物,但目前仍无法完全去除它。本研究旨在考察臭氧气泡(OMB)对水中 BHT 的降解效率,并在亚致死 BHT 浓度(0.34、0.45 和 0.90 μM)下,基于秀丽隐杆线虫体内的氧化应激生物标志物,评估其毒性变化。评估了 OMB 对臭氧气体传质的效率,并使用对氯苯甲酸(pCBA)探针化合物和·OH 自由基清除剂(碳酸钠,NaCO)确定了·OH 自由基在 BHT 降解中的作用。臭氧气体传质系数(k = 1.02×10-2 s-1)远大于臭氧自分解速率(k = 8×10-2 s-1),这意味着在 OMB 产生过程中,体积臭氧传递过程中自分解臭氧的影响很小。一般来说,与传统臭氧技术相比,OMB 提高了臭氧气体传质效率(1.3-19 倍),而 BHT 与·OH 的间接反应(82%)比与分子臭氧的直接反应更为重要。分别添加 15、25 和 35 mM 的 NaCO 会使 BHT 的降解率降低 30%、50%和 65%,这表明·OH 在 BHT 降解中起着重要作用。初始 BHT 浓度的增加相应地降低了 OMB 对其的去除率,这可能是由于臭氧化过程中产生的代谢物增加所致。与预处理试验相比,BHT 处理后暴露试验记录到秀丽隐杆线虫体内氧化应激(根据酶活性变化)显著降低(p < 0.05),这表明 OMB 对 BHT 的解毒效果显著。总的来说,该研究结果表明,OMB 对水中 BHT 的完全降解非常有效,从而显著(p < 0.05)降低其毒性。

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