Efficient removal of succinic acid by continuous hydrodynamic cavitation combined with ozone and side influent injection.

IF 8 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Y Huaccallo-Aguilar, A Kumar, M Meier, A Lerch, S F Reinecke
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引用次数: 0

Abstract

Micropollutants (MPs) encompass a range of human-made pollutants present in trace amounts in environmental systems. MPs include pharmaceuticals, personal care products, pesticides, persistent organic pollutants, micro- and nano-plastics, and artificial sweeteners, all posing ecological risks. Conventional municipal wastewater treatment methods often face challenges in completely removing MPs due to their chemical characteristics, stability, and resistance to biodegradation. In this research, an Advanced Oxidation Process, combining hydrodynamic cavitation (HC) with dissolved ozone (O3) and side injection, was employed to efficiently degrade succinic acid (SA), an ozone-resistant compound and common byproduct. The HC/O3 process was run to treat different synthetic effluents, focusing on evaluating the influence of O3-to-total organic carbon (TOC) ratio, cavitation number (Cv) and O3 dosage. Notably, the results from a series of 14 experiments highlighted the critical significance of a low O3-to-TOC ratio value of 0.08 mg/mg and Cv value of 0.056 in HC for achieving efficient SA removal of 41.2% from an initial SA solution (106.3 mg/L). Regarding a series of four proof-of-concept experiments and their replications, the average TOC removal reached 62% when treating wastewater treatment plant effluent spiked with SA. This significant removal rate was achieved under initial conditions: Cv of 0.02, O3-to-TOC ratio set at 0.77 mg/mg, TOC concentration of 47.7 mg/L, 106 mg/L of SA, and a temperature of 25 °C. Notably, the electrical energy per order required for the 62% reduction in TOC was a modest 12.5 kWh/m3/order, indicating the potential of the continuous HC/O3 process as a promising approach for degrading a wide range of MPs.

通过连续水动力空化结合臭氧和侧进水注入高效去除琥珀酸。
微污染物(MPs)包括一系列存在于环境系统中的痕量人为污染物。微污染物包括药品、个人护理产品、杀虫剂、持久性有机污染物、微塑料和纳米塑料以及人造甜味剂,它们都会对生态环境造成危害。由于 MPs 的化学特性、稳定性和耐生物降解性,传统的城市污水处理方法在完全去除 MPs 方面往往面临挑战。在这项研究中,采用了一种结合了流体动力空化(HC)、溶解臭氧(O3)和侧喷的高级氧化工艺,以高效降解琥珀酸(SA)这种耐臭氧的化合物和常见副产品。利用 HC/O3 工艺处理了不同的合成废水,重点评估了 O3 与总有机碳 (TOC) 的比率、空化数 (Cv) 和 O3 用量的影响。值得注意的是,14 项系列实验的结果表明,要从初始 SA 溶液(106.3 mg/L)中有效去除 41.2% 的 SA,HC 中 0.08 mg/mg 的低 O3-TOC 比值和 0.056 的 Cv 值至关重要。在四个概念验证实验及其重复实验中,在处理添加了 SA 的污水处理厂出水时,平均 TOC 去除率达到 62%。这一显著的去除率是在初始条件下实现的:Cv 为 0.02,O3 与 TOC 的比率设定为 0.77 mg/mg,TOC 浓度为 47.7 mg/L,SA 为 106 mg/L,温度为 25 °C。值得注意的是,将 TOC 降低 62% 所需的电能仅为 12.5 kWh/m3/order,这表明连续 HC/O3 工艺有望成为降解各种 MPs 的有效方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Environmental Management
Journal of Environmental Management 环境科学-环境科学
CiteScore
13.70
自引率
5.70%
发文量
2477
审稿时长
84 days
期刊介绍: The Journal of Environmental Management is a journal for the publication of peer reviewed, original research for all aspects of management and the managed use of the environment, both natural and man-made.Critical review articles are also welcome; submission of these is strongly encouraged.
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