Faculty of Civil Engineering and Technology, Universiti Malaysia Perlis, Arau, Malaysia.
Centre of Excellence for Water Research and Environmental Sustainability Growth (WAREG), Universiti Malaysia Perlis, Arau, Malaysia.
Bioengineered. 2023 Dec;14(1):2276391. doi: 10.1080/21655979.2023.2276391. Epub 2023 Nov 9.
Microplastic (MP) is an emerging contaminant of concern due to its abundance in the environment. Wastewater treatment plant (WWTP) can be considered as one of the main sources of microplastics in freshwater due to its inefficiency in the complete removal of small MPs. In this study, a column-based MP removal which could serve as a tertiary treatment in WWTPs is evaluated using granular activated carbon (GAC) as adsorbent/filter media, eliminating clogging problems commonly caused by powder form activated carbon (PAC). The GAC is characterized via N adsorption-desorption isotherm, field emission scanning electron microscopy, and contact angle measurement to determine the influence of its properties on MP removal efficiency. MPs (40-48 μm) removal up to 95.5% was observed with 0.2 g/L MP, which is the lowest concentration tested in this work, but still higher than commonly used MP concentration in other studies. The performance is reduced with further increase in MP concentration (up to 1.0 g/L), but increasing the GAC bed length from 7.5 to 17.5 cm could lead to better removal efficiencies. MP particles are immobilized by the GAC predominantly by filtration process by being entangled with small GAC particles/chips or stuck between the GAC particles. MPs are insignificantly removed by adsorption process through entrapment in GAC porous structure or attachment onto the GAC surface.
微塑料(MP)是一种新兴的关注污染物,因为它在环境中大量存在。污水处理厂(WWTP)由于其不能完全去除小尺寸的 MPs,因此可以被认为是淡水中微塑料的主要来源之一。在本研究中,使用颗粒状活性炭(GAC)作为吸附剂/过滤介质,评估了一种可作为 WWTP 三级处理的基于柱的 MP 去除方法,以消除粉末状活性炭(PAC)常见的堵塞问题。通过氮气吸附-解吸等温线、场发射扫描电子显微镜和接触角测量对 GAC 进行了表征,以确定其性质对 MP 去除效率的影响。在 0.2g/L 的 MP 浓度下,观察到 MPs(40-48μm)的去除率高达 95.5%,这是本工作中测试的最低浓度,但仍高于其他研究中常用的 MP 浓度。随着 MP 浓度的进一步增加(高达 1.0g/L),性能会降低,但将 GAC 床层长度从 7.5cm 增加到 17.5cm 可以提高去除效率。MP 颗粒主要通过过滤过程被 GAC 固定,即与小 GAC 颗粒/碎片缠结或卡在 GAC 颗粒之间。通过 GAC 多孔结构的捕获或 GAC 表面的附着,MP 颗粒通过吸附过程去除的量微不足道。