Treatment of high concentration phenol wastewater by low-frequency ultrasonic cavitation and long-term pilot scale study.

Haohao Sun, Jie Li, Yunian Zhang, Lu Zhuang, Zhou Zhou, Yanfang Ren, Xia Xu, Junyu He, Yingang Xue
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Abstract

Acoustic cavitation is an advanced, eco-friendly oxidation technology effective in removing organic pollutants from water. However, research on its use for degrading phenol, a common and challenging phenolic pollutant, is limited. This study explores the optimal conditions for phenol degradation using acoustic cavitation and assesses its practical application through extensive pilot tests. Results from batch tests show that low-frequency (15 kHz) ultrasonic cavitation effectively treats high concentrations of phenol (1000 mg L-1). Aeration and acidic pH enhance removal efficiency, while alkaline conditions inhibit degradation. Analysis of total organic carbon (TOC), degradation products, and volatile organic compounds (VOCs) reveals that the primary intermediates are substituted benzenes and alkanes. Long-term pilot tests demonstrated the device's effectiveness in phenol removal and its operational stability over 180 days. The study also establishes a relationship between removal efficiency, hydraulic retention time (HRT), and operating costs, highlighting the feasibility of low-frequency ultrasonic cavitation for treating high-concentration phenolic wastewater and its potential role in the pretreatment stage of biochemical processes.

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声空化是一种先进的环保型氧化技术,可有效去除水中的有机污染物。然而,利用声空化技术降解苯酚(一种常见且具有挑战性的酚类污染物)的研究还很有限。本研究探讨了利用声空化技术降解苯酚的最佳条件,并通过大量的中试试验评估了其实际应用情况。批量试验结果表明,低频(15 kHz)超声空化能有效处理高浓度苯酚(1000 mg L-1)。通气和酸性 pH 值提高了去除效率,而碱性条件则抑制了降解。对总有机碳 (TOC)、降解产物和挥发性有机化合物 (VOC) 的分析表明,主要的中间产物是取代苯和烷烃。长期试验测试证明了该装置在去除苯酚方面的有效性及其 180 天的运行稳定性。研究还确定了去除效率、水力停留时间(HRT)和运行成本之间的关系,突出了低频超声空化处理高浓度酚类废水的可行性及其在生化工艺预处理阶段的潜在作用。
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