水合镧铝氧化物共改性季铵盐聚苯胺纳米复合材料对磷酸盐的去除性能及机理。

IF 1.9 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Haixia Wu, Enhui Ji, Biming Liu, Junze Wang, Minglong Fang
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引用次数: 0

摘要

采用前驱体浸渍扩散和原位共沉淀法,以季铵化聚苯胺(PN)为载体,水合氧化镧(LaOOH)和水合氧化铝(AlOOH)为原料,合成了季铵化聚苯胺基复合材料(HLAO-PN)。系统地研究了HLAO-PN的吸附效率和除磷机理。SEM、XPS和FT-IR表征结果表明,HLAO-PN呈聚集颗粒状结构,La和Al均匀分布在PN载体上。HLAO-PN吸附磷酸盐的主要机理包括静电吸引、离子交换和配体交换。在2.0 ~ 7.0的pH范围内,HLAO-PN表现出稳定有效的磷酸盐吸附能力,在308 K条件下,其最大吸附容量为101.6 mg/g。在多种物质共存的情况下,表现出较强的抗干扰能力。固定床系统的动态吸附实验表明,HLAO-PN在第一次和第二次循环中对磷酸盐的有效处理能力分别为2800和2650床体积(BV)(从10.0 mg P/L到0.5 mg P/L以下)。此外,用NaOH/NaCl二元溶液可以有效地原位再生耗尽的HLAO-PN。经过5次吸附-再生循环后,HLAO-PN对磷酸盐的吸附量为初始吸附量(93.87 mg/g)的70.64%。研究了一种新型的提高废水除磷效果的化学药剂。从业者要点:以季铵化聚苯胺、LaOOH和AlOOH为原料合成了吸附磷酸盐的复合材料(HLAO-PN)。在308 K时,HLAO-PN的吸附容量达到101.60 mg/g。HLAO-PN对磷酸盐的吸附机制主要有静电吸引、离子交换和配体交换。研究了HLAO-PN固定床对磷酸盐的动态吸附,为实际废水处理提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced phosphate removal using hydrated lanthanum and aluminum oxides co-modified quaternized polyaniline nanocomposite: Performance and mechanism.

Through precursor impregnation diffusion and in-situ co-precipitation methods, a quaternized polyaniline-based composite material (HLAO-PN) was synthesized using quaternized polyaniline (PN) as a carrier, hydrated lanthanum oxide LaOOH, and hydrated alumina AlOOH. The adsorption efficiency and mechanism of phosphate removal by HLAO-PN were systematically studied. Characterization results from SEM, XPS, and FT-IR revealed that HLAO-PN exhibited an aggregated granular structure, with La and Al uniformly distributed on the PN carrier. The main mechanisms of phosphate adsorption by HLAO-PN include electrostatic attraction, ion exchange, and ligand exchange. HLAO-PN demonstrated stable and effective phosphate adsorption capacity across a pH range of 2.0-7.0, with a maximum adsorption capacity of 101.6 mg/g at 308 K. Furthermore, it showed strong anti-interference capabilities in the presence of various coexisting substances. The dynamic adsorption experiments in a fixed-bed system indicated that the effective treatment capacities of HLAO-PN for phosphate during the first and second cycles were 2800 and 2650 bed volumes (BV), respectively (from 10.0 mg P/L to below 0.5 mg P/L). Moreover, the exhausted HLAO-PN could be efficiently regenerated in situ by binary NaOH/NaCl solution. After five adsorption-regeneration cycles, the adsorption capacity of HLAO-PN for phosphate was 70.64% of its initial adsorption capacity (93.87 mg/g). This study presents a novel chemical agent for enhancing phosphorus removal from wastewater. PRACTITIONER POINTS: Composite material (HLAO-PN) was synthesized for phosphate adsorption using quaternized polyaniline, LaOOH, and AlOOH. The adsorption capacity of HLAO-PN reaches 101.60 mg/g at 308 K. The main adsorption mechanisms of phosphate by HLAO-PN are electrostatic attraction, ion exchange, and ligand exchange. The fixed bed dynamic adsorption of phosphate by HLAO-PN was investigated which provides a reference for actual wastewater treatment.

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来源期刊
Water Environment Research
Water Environment Research 环境科学-工程:环境
CiteScore
6.30
自引率
0.00%
发文量
138
审稿时长
11 months
期刊介绍: Published since 1928, Water Environment Research (WER) is an international multidisciplinary water resource management journal for the dissemination of fundamental and applied research in all scientific and technical areas related to water quality and resource recovery. WER''s goal is to foster communication and interdisciplinary research between water sciences and related fields such as environmental toxicology, agriculture, public and occupational health, microbiology, and ecology. In addition to original research articles, short communications, case studies, reviews, and perspectives are encouraged.
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