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在近中性 pH 值条件下通过非均相电芬顿强化布洛芬的降解。

Enhanced degradation of ibuprofen by heterogeneous electro-Fenton at circumneutral pH.

机构信息

School of Environment and State Key Joint Laboratory of Environment Simulation and Pollution Control, Tsinghua University, Beijing 100084, China.

School of Environment and State Key Joint Laboratory of Environment Simulation and Pollution Control, Tsinghua University, Beijing 100084, China.

出版信息

Chemosphere. 2018 Oct;209:998-1006. doi: 10.1016/j.chemosphere.2018.06.164. Epub 2018 Jun 28.

DOI:10.1016/j.chemosphere.2018.06.164
PMID:30114751
Abstract

Fenton based reactions are effective for pharmaceutical removals, but traditional Fenton processes have drawbacks of pH adjustment and large amount of produced iron sludge. To overcome these challenges, a heterogeneous electro-Fenton process was proposed for effective contaminant degradation at circumneutral pH without iron sludge production. The anti-inflammatory drug ibuprofen (a common pharmaceutical in natural waters) was used as a representative contaminant. Activated carbon fibers (ACFs) supported ferric citrate (Cit-Fe/ACFs) was synthesized and used as the cathode, and RuO/Ti was used as the anode. HO was electro-generated in situ from O reduction and the production rate of OH per unit area was 6.8 μM W cm using Cit-Fe/ACFs cathode. A maximal ibuprofen degradation of 97% was obtained after 120 min at the current density of 7 mA cm. The electrical energy per order (E) varied from 0.24±0.03 to 2.65±0.04 kWh log m when the current density ranged from 1 to 7 mA cm. The Cit-Fe/ACFs cathode showed relatively good reusability and ∼85% IBP removal was achieved after 6 cycles of degradation. Our results showed that the prepared Cit-Fe/ACFs cathode was promising for the treatment of pharmaceutical contaminants.

摘要

基于芬顿的反应可有效去除药物,但传统的芬顿工艺存在 pH 值调节和大量产生铁污泥的缺点。为了克服这些挑战,提出了一种非均相电芬顿工艺,可在中性 pH 值下无需产生铁污泥即可有效降解污染物。以抗炎药布洛芬(天然水中常见的一种药物)为代表污染物。合成了负载柠檬酸铁(Cit-Fe/ACFs)的活性炭纤维(ACFs)作为阴极,并使用 RuO/Ti 作为阳极。通过 O 还原原位产生 HO,使用 Cit-Fe/ACFs 阴极时单位面积的 OH 生成速率为 6.8 μM W cm。在电流密度为 7 mA cm 时,经过 120 min 可获得最大的布洛芬降解 97%。当电流密度从 1 到 7 mA cm 时,每阶的电能(E)从 0.24±0.03 变化到 2.65±0.04 kWh log m。Cit-Fe/ACFs 阴极显示出相对较好的可重复使用性,在 6 次降解循环后,IBP 的去除率达到了 85%左右。我们的结果表明,所制备的 Cit-Fe/ACFs 阴极有望用于处理药物污染物。

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