Towards sustainable microplastic cleanup: Al/Fe ionotropic chitosan hydrogels for efficient PET removal

IF 3 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES Environmental Monitoring and Assessment Pub Date : 2025-02-03 DOI:10.1007/s10661-025-13661-y
Tejesvi Patel, Roselyn Lata, Joachim Emeka Arikibe, David Rohindra
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Abstract

Chitosan (CHI) was modified with iron and aluminum salts to create ionotropic beads, Fe-CHI and Al-CHI, for the removal of polyethylene terephthalate microplastics (PET-MP) from water. Infrared spectroscopy revealed reduced hydrogen bonding associated with N–H vibration of CHI (3500–3100 cm−1) due to the interaction with the metal ions, and absorption peaks between 500 and 916 cm⁻1 predominantly due to metal–oxygen stretching vibrations. The swelling behavior of the beads increased with temperature but decreased as pH and metal doping concentration increased. Conductivity and PET-MP removal efficiency improved with higher metal ion concentrations, with Al-CHI exhibiting greater swelling and conductivity compared to Fe-CHI. The highest efficiency for MP remediation was recorded at low pH levels. MP adsorption decreased with rising temperatures and varied with pH changes due to protonation and deprotonation reactions of CHI, along with the various cationic and anionic species formed by the metals. At pH 7, MP removal by Fe-CHI beads declined as the doping concentration increased, attributed to specific Fe species that emerged at this pH. The zeta potential measurements showed that both the beads and the MP were in an unstable range at low pH but shifted towards stability at higher pH levels. Re-adsorption efficiencies exceeded 70% for both low and high-doped Fe-CHI and Al-CHI beads when tested with ~ 40 MP/mL of MP suspension over three different cycles. Overall, the use of ionotropic CHI beads offers a promising, eco-friendly method for effectively reducing PET-MPs in water.

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可持续的微塑料清理:Al/Fe离子型壳聚糖水凝胶,用于高效去除PET
用铁盐和铝盐对壳聚糖(CHI)进行改性,制备了Fe-CHI和Al-CHI两种离子型微球,用于去除水中的聚对苯二甲酸乙二醇酯微塑料(PET-MP)。红外光谱显示,由于与金属离子的相互作用,CHI (3500-3100 cm−1)的N-H振动与氢键的减少有关,并且在500 - 916 cm−1之间的吸收峰主要是由于金属-氧拉伸振动。微球的膨胀性能随温度的升高而升高,但随pH和金属掺杂浓度的增加而降低。随着金属离子浓度的增加,导电率和PET-MP的去除效率提高,Al-CHI比Fe-CHI表现出更大的溶胀性和导电性。在低pH水平下,MP修复效率最高。由于CHI的质子化和去质子化反应以及金属形成的各种阳离子和阴离子,MP的吸附随温度的升高而下降,并随pH的变化而变化。在pH值为7时,Fe- chi微珠对MP的去除率随着掺杂浓度的增加而下降,这是由于在该pH值下出现了特定的Fe物种。zeta电位测量表明,微珠和MP在低pH值下处于不稳定范围,但在高pH值下转向稳定。在~ 40 MP/mL的MP悬浮液中进行三次循环测试时,低掺杂和高掺杂Fe-CHI和Al-CHI微珠的再吸附效率均超过70%。总的来说,使用离子亲性CHI珠提供了一种有前途的、环保的方法来有效减少水中的PET-MPs。
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来源期刊
Environmental Monitoring and Assessment
Environmental Monitoring and Assessment 环境科学-环境科学
CiteScore
4.70
自引率
6.70%
发文量
1000
审稿时长
7.3 months
期刊介绍: Environmental Monitoring and Assessment emphasizes technical developments and data arising from environmental monitoring and assessment, the use of scientific principles in the design of monitoring systems at the local, regional and global scales, and the use of monitoring data in assessing the consequences of natural resource management actions and pollution risks to man and the environment.
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