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使用新型无机-有机复合混凝剂提高腐殖酸(HA)去除率:α-苛达酸作为聚氯化铝性能的改性剂

Improvement of humic acid (HA) removal using a new inorganic-organic composite coagulant: α-costic acid as a modifier of polyaluminum chloride properties.

作者信息

Maaghloud Fatima Ezzahra, Elfoulani Anouar Abdellah, Abdou Achraf, Chafi Mohamed, El Hakmaoui Ahmed, Elmakssoudi Abdelhakim, Jamal Eddine Jamal, Akssira Mohamed, Dakir Mohamed

机构信息

Laboratory of Organic Synthesis, Extraction and Valorization, Faculty of Sciences Ain Chock, Hassan II University of Casablanca, Casablanca, Morocco.

Laboratory of Engineering, Processes and Environment, Higher School of Technology, University Hassan II, Eljadida Road, Km 7, B.P. 8012, Casablanca, Morocco.

出版信息

Anal Sci. 2024 Jan;40(1):29-36. doi: 10.1007/s44211-023-00450-1. Epub 2023 Oct 30.

Abstract

In this work, α-costic acid (αCA), a plant sesquiterpenoid from Dittrichia viscosa, was grafted into polyaluminum chloride (PAC), forming a new eco-sustainable composite coagulant PAC-αCA with improved functionality. The α-costic acid fraction grafted into the PAC and the distribution of aluminum forms in the composite coagulant were evaluated for their effectiveness in removing bentonite and humic acid from synthetic water. The interaction mechanism between PAC and α-CA was examined by the Al-Ferron time spectrophotometric method, density functional theory (DFT), and FTIR analysis. By monitoring the aluminum speciation in the composite coagulant PAC-αCA, it was discovered that the introduction of α-CA impacted the distribution of various aluminum forms, including mononuclear Ala, highly polymeric Alb, colloidal, and medium polymeric Alc. The theoretical analysis identified the Alb species as particularly sensitive to reacting with α-CA. Furthermore, coagulation performance tests demonstrated that increasing the percentage of α-CA and promoting the prevalence of Alb and Alc species over Ala species in PAC-αCA led to improved removal of turbidity and UV254. This study provides an attractive and practical option for water treatment plants to remove colloidal suspensions in raw water effectively.

摘要

在本研究中,将来自粘毛白酒草的植物倍半萜α-木香酸(αCA)接枝到聚合氯化铝(PAC)中,形成了一种具有改进功能的新型生态可持续复合混凝剂PAC-αCA。对接枝到PAC中的α-木香酸部分以及复合混凝剂中铝形态的分布进行了评估,以考察其去除合成水中膨润土和腐殖酸的效果。采用Al-Ferron时间分光光度法、密度泛函理论(DFT)和傅里叶变换红外光谱(FTIR)分析研究了PAC与α-CA之间的相互作用机理。通过监测复合混凝剂PAC-αCA中的铝形态,发现引入α-CA会影响各种铝形态的分布,包括单核Ala、高聚合度Alb、胶体态和中等聚合度Alc。理论分析表明,Alb形态对与α-CA反应特别敏感。此外,混凝性能测试表明,提高α-CA的百分比并促进PAC-αCA中Alb和Alc形态相对于Ala形态的占比,可提高浊度和UV254的去除率。本研究为水处理厂有效去除原水中的胶体悬浮液提供了一种有吸引力且实用的选择。

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