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Behavior and mechanisms of ciprofloxacin adsorption on aged polylactic acid and polyethlene microplastics
Jinni Liang1, Jiahui Wu1, Zhi Zeng1
1School of Environment and Energy, South China University of Technology, Guangzhou, 510006, People's Republic of China.
Abstract:
Microplastics (MPs) and antibiotics are emerging pollutants in aquatic environments. MPs can absorb antibiotics, resulting in compound pollution. Batch adsorption experiments were used to investigate the adsorption behavior of CIP on polylactic (PLA) and polyethlene (PE) under various environmental conditions. After a lengthy aging process, both MPs underwent significant physicochemical changes. The equilibrium adsorption capacities of aged PLA and PE were 0.382 mg/g and 0.28 mg/g, respectively, which increased by 18.06% and 75% compared to pristine PLA and PE. The sorption capacity of MPs increased when the pH of the solution approached the dissociation constant (6.09, 8.74) of CIP. When the salinity of the solution was 3.5%, the adsorption capacity of MPs was reduced by more than 65%. The adsorption capacity of MPs rapidly decreased when 20 mg/L fulvic acid was added. Because norfloxacin (NOR) competes for adsorption sites on the microplastic, CIP adsorption is inhibited. Based on the adsorption models, FTIR, and XPS spectra, we demonstrated that the process was monolayer adsorption, with chemical and physical mechanisms including hydrogen bonding, π-π conjugation, ion exchange, and electrostatic interactions controlling it. Thus, PLA and PE microplastics may be a potential vector for CIP in water, and their interaction is mainly influenced by the physicochemical properties of the MPs and environmental factors.
Insights
Aged microplastics (MPs) like polylactic acid (PLA) and polyethylene (PE) significantly enhance the adsorption of ciprofloxacin (CIP). Environmental factors like pH, salinity, and other pollutants influence this compound pollution.
Area of Science:
- Environmental Science
- Environmental Chemistry
- Materials Science
Background:
- Microplastics (MPs) and antibiotics are prevalent aquatic pollutants.
- MPs can adsorb antibiotics, leading to compound pollution, posing risks to aquatic ecosystems.
Purpose of the Study:
- To investigate the adsorption behavior of ciprofloxacin (CIP) on aged polylactic acid (PLA) and polyethylene (PE) microplastics.
- To understand the influence of environmental factors on CIP adsorption by MPs.
Main Methods:
- Batch adsorption experiments were conducted under various conditions (pH, salinity, presence of fulvic acid and norfloxacin).
- Fourier-transform infrared (FTIR) spectroscopy and X-ray photoelectron spectroscopy (XPS) were used to analyze adsorption mechanisms.
- Adsorption isotherms and kinetic models were applied to describe the process.
Main Results:
- Aged PLA and PE showed increased CIP adsorption capacities (0.382 mg/g and 0.28 mg/g, respectively).
- Adsorption capacity was influenced by pH, salinity, fulvic acid, and the presence of norfloxacin (NOR).
- Mechanisms included hydrogen bonding, π-π conjugation, ion exchange, and electrostatic interactions, indicating monolayer adsorption.
Conclusions:
- PLA and PE microplastics, especially after aging, can act as vectors for ciprofloxacin in aquatic environments.
- The interaction between MPs and CIP is significantly affected by MP physicochemical properties and environmental conditions.
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