Khoshmanesh Madineh, Sanati Ali Mohammad, Ramavandi Bahman
Department of Environmental Science, Persian Gulf Research Institute, Persian Gulf University, Bushehr, Iran.
Systems Environmental Health and Energy Research Center, The Persian Gulf Biomedical Sciences Research Institute, Bushehr University of Medical Sciences, Bushehr, 7518759577, Iran.
Heliyon. 2024 Sep 10;10(18):e37775. doi: 10.1016/j.heliyon.2024.e37775. eCollection 2024 Sep 30.
This paper explores the impact of environmental factors on the adsorption of cadmium (Cd) and cephalexin (CEX) onto polyethylene (PE) microplastics. The study focused on Cd adsorption behavior on microplastics (MPs) of various sizes, revealing that particles sized 30-63 μm exhibited the highest adsorption capacity compared to other sizes. Cd sorption was significantly influenced by initial pH and salinity levels. Experimental data closely matched both the Langmuir (R > 0.91) and Freundlich (R > 0.92) isotherms. Cd adsorption onto PE particles was greater than CEX adsorption, with the maximum Cd uptake capacity measured at 1.8 mg/g. FTIR analysis indicated that Cd and CEX adsorption onto MPs was likely governed by physical interactions, as no new functional groups were detected post-uptake. The desorption rates of Cd and CEX from PE microplastics were evaluated in various liquids, including aqueous solution, tap water, seawater, and synthetic gastric juice. The health risks associated with Cd, in combination with MPs and CEX, for both children and adults were assessed in groundwater and aqueous solutions. This study offers scientific insights and guidelines for examining the environmental behavior, migration, and transformation of microplastics and their related ecological risks in scenarios of combined pollution.
本文探讨了环境因素对镉(Cd)和头孢氨苄(CEX)在聚乙烯(PE)微塑料上吸附的影响。该研究聚焦于不同尺寸微塑料(MPs)对Cd的吸附行为,结果表明,与其他尺寸相比,粒径为30 - 63μm的颗粒表现出最高的吸附能力。Cd的吸附受到初始pH值和盐度水平的显著影响。实验数据与朗缪尔(R > 0.91)和弗伦德利希(R > 0.92)等温线均高度吻合。Cd在PE颗粒上的吸附大于CEX的吸附,测得的最大Cd吸附量为1.8mg/g。傅里叶变换红外光谱(FTIR)分析表明,Cd和CEX在MPs上的吸附可能受物理相互作用控制,因为吸附后未检测到新的官能团。在包括水溶液、自来水、海水和合成胃液在内的各种液体中评估了Cd和CEX从PE微塑料上的解吸率。评估了在地下水和水溶液中,Cd与MPs和CEX结合对儿童和成人造成的健康风险。本研究为考察微塑料在复合污染场景下的环境行为、迁移和转化及其相关生态风险提供了科学见解和指导方针。