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高效藻类塘在热带条件下去除城市生活污水中药物化合物的应用。案例研究:哥伦比亚卡利市。

High-rate algal pond for removal of pharmaceutical compounds from urban domestic wastewater under tropical conditions. Case study: Santiago de Cali, Colombia.

机构信息

Escuela EIDENAR-Facultad de Ingeniería, Universidad del Valle, Cali, Colombia E-mail:

Escuela de Ciencias Básicas-Facultad de Ciencias Naturales y Exactas, Universidad del Valle, Cali, Colombia.

出版信息

Water Sci Technol. 2020 Sep;82(6):1031-1043. doi: 10.2166/wst.2020.362.

DOI:10.2166/wst.2020.362
PMID:33055394
Abstract

This study evaluated the capacity of a pilot-scale high-rate algal pond (HRAP) to remove pharmaceutical compounds (PCs) from domestic wastewater in the city of Santiago de Cali, Colombia. The compounds analyzed included antiepileptics, hypolipidemic drugs, tranquilizers and analgesics, and anti-inflammatory drugs. The HRAP operated under a continuous water flow of 0.2 md and a 3-day hydraulic retention time (HRT). Removal efficiencies were high (>70%) for fenofibric acid, ibuprofen, and paracetamol; medium (30-70%) for gabapentin, lamotrigine, fenofibrate, gemfibrozil, diclofenac, ketoprofen, naproxen, and pentoxifylline; and low (<30%) for carbamazepine and its metabolite 10,11-Dihidro-10,11-dihidroxicarbamazepine (CBZ-Diol). The findings herein are similar to other studies, but were obtained with a shorter HRT. These results show that tropical environmental conditions favor photodegradation and contribute to the development of microalgae and the biodegradation process. Twenty microalgae species were identified, with the phylum Chlorophyta as the most abundant, particularly due to its natural introduction. The removal of the PCs also reflected a percentage reduction (>50%) in the ecological hazard posed by most of the compounds, although it is important to note that the hazard from gemfibrozil and ibuprofen remained high even after treatment, indicating the need for complementary treatment.

摘要

本研究评估了中试规模的高效藻类塘(HRAP)从哥伦比亚卡利市的生活污水中去除药物化合物(PCs)的能力。分析的化合物包括抗癫痫药、降血脂药、镇静剂和止痛药以及抗炎药。HRAP 在 0.2 md 的连续水流和 3 天的水力停留时间(HRT)下运行。芬诺菲布酸、布洛芬和扑热息痛的去除效率很高(>70%);加巴喷丁、拉莫三嗪、非诺贝特、吉非贝齐、双氯芬酸、酮洛芬、萘普生和己酮可可碱的去除效率中等(30-70%);卡马西平和其代谢物 10,11-Dihidro-10,11-dihidroxicarbamazepine(CBZ-Diol)的去除效率较低(<30%)。这些发现与其他研究相似,但 HRT 更短。这些结果表明,热带环境条件有利于光降解,并有助于微藻和生物降解过程的发展。鉴定出 20 种微藻,其中绿藻门是最丰富的,特别是由于其自然引入。PCs 的去除也反映了大多数化合物的生态危害降低了一个百分比(>50%),尽管值得注意的是,即使经过处理,gemfibrozil 和布洛芬的危害仍然很高,这表明需要进行补充治疗。

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