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采用响应面法研究臭氧和紫外辐射对新型药物污染物西地那非的降解和矿化作用。

Degradation and mineralization of the emerging pharmaceutical pollutant sildenafil by ozone and UV radiation using response surface methodology.

机构信息

Instituto de Desarrollo Tecnológico para la Industria Química (INTEC), CCT CONICET Santa Fe, Ruta Nacional No. 168 Km 0. (3000), Santa Fe, Argentina.

出版信息

Environ Sci Pollut Res Int. 2021 May;28(19):23868-23886. doi: 10.1007/s11356-020-11717-9. Epub 2020 Nov 21.

DOI:10.1007/s11356-020-11717-9
PMID:33219934
Abstract

Pharmaceuticals and their degradation products which are present in wastewater and superficial waters are becoming an ecological issue. This research investigated the degradation and mineralization of synthetic solutions of the pharmaceutical compound sildenafil citrate (SC) by single ozonation and ozonation jointed with UV radiation (O/UV). The effects of initial drug concentration (50-125 mg L), inlet ozone concentration (35-125 g Nm), and UV radiation on SC degradation and decrease of total organic carbon (TOC) were investigated using response surface methodology based on a central composite experimental design. Through the RSM analysis, it was possible to confirm the removal of SC for the entire experimental range. Major intermediates of SC degradation were identified and a degradation pathway was proposed. The kinetics of SC degradation was modeled as a pseudo-first-order reaction with a rate constant ranging between 0.072 and 1.250 min. The SC degradation and TOC removal were strongly enhanced by increasing the concentration of gaseous ozone at the inlet and incorporating UV radiation. The highest TOC removal reached at 60 min was 75%, in the O/UV system, with initial SC content of 50 mg L and inlet ozone concentration of 125 g Nm. The degradation rate of SC was increased 3 to 9 times in the presence of UV radiation. Ozone-based advanced oxidation processes appear as a suitable alternative for treatment of the emerging pollutant SC.

摘要

药物及其在废水和地表水的降解产物正成为一个生态问题。本研究考察了单一臭氧化和臭氧化联合紫外辐射(O/UV)对合成药物枸橼酸西地那非(SC)溶液的降解和矿化作用。采用基于中心复合实验设计的响应面法,考察了初始药物浓度(50-125 mg L)、进气臭氧浓度(35-125 g Nm)和紫外辐射对 SC 降解和总有机碳(TOC)去除的影响。通过 RSM 分析,可以确认在整个实验范围内去除 SC。鉴定了 SC 降解的主要中间产物,并提出了降解途径。SC 降解动力学被模拟为拟一级反应,速率常数范围在 0.072 和 1.250 min 之间。通过增加进气中气态臭氧的浓度并结合紫外辐射,SC 的降解和 TOC 的去除得到了强烈的增强。在初始 SC 浓度为 50 mg L 和进气臭氧浓度为 125 g Nm 的条件下,O/UV 体系在 60 min 时达到了 75%的最高 TOC 去除率。在紫外辐射存在的情况下,SC 的降解速率提高了 3 至 9 倍。基于臭氧的高级氧化工艺似乎是处理新兴污染物 SC 的一种合适的替代方法。

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