College of Chemistry and Chemical Engineering, Central South University, Changsha 410083, China.
College of Chemistry and Chemical Engineering, Central South University, Changsha 410083, China.
Sci Total Environ. 2021 Oct 20;792:148345. doi: 10.1016/j.scitotenv.2021.148345. Epub 2021 Jun 8.
Increasing microplastics (MPs) cause significant threats to the ecosystem and society. The tremendous advances concerning the sources, occurrence, chemical behavior, toxicology, and ecological effects contribute to the emerging MPs removal. Based on the intrinsic hydrophobicity of MPs, froth flotation can remove MPs from water environments via bubble attachment on hydrophobic surfaces. This study comprehensively investigated plastic, aqueous, and operating variables in the flotation removal of polyethylene terephthalate (PET) and polystyrene (PS) MPs, assisted by numerous bench-scale experiments and a first-order model with rectangular distribution of floatability. Froth flotation performed better to remove MPs with higher density, larger size, and lower concentration. K (0-50 mM), Na (0-150 mM), and Ca (0-10 mM) did not affect the flotation recovery of MPs. MPs particles could be thoroughly removed by froth flotation when humic acid (HA) and Al concentrations were less than 30 mg/L and 0.05 mM, respectively. 100% of MPs could be removed at a rapid flotation rate under aeration volume of 5.4 mL/min and frother dosage of 28 mg/L. Non-covalent interactions and near-surface water film might favor the adhesion of hydrophilic species and obstruct the flotation removal of MPs. The froth flotation-based MPs removal had potential application in multiple flow systems due to its simplicity and continuity.
微塑料(MPs)的增加对生态系统和社会造成了重大威胁。关于 MPs 的来源、出现、化学行为、毒理学和生态影响的巨大进展有助于新兴的 MPs 去除。基于 MPs 的固有疏水性,泡沫浮选可以通过气泡附着在疏水性表面上来从水环境中去除 MPs。本研究通过大量的实验室规模实验和具有矩形浮选性分布的一阶模型,全面研究了浮选去除聚对苯二甲酸乙二醇酯(PET)和聚苯乙烯(PS) MPs 中的塑料、水和操作变量。浮选在去除密度更高、尺寸更大、浓度更低的 MPs 方面表现更好。K(0-50 mM)、Na(0-150 mM)和 Ca(0-10 mM)对 MPs 的浮选回收率没有影响。当腐殖酸(HA)和 Al 浓度分别小于 30 mg/L 和 0.05 mM 时, MPs 颗粒可以通过泡沫浮选被彻底去除。在通气量为 5.4 mL/min 和起泡剂用量为 28 mg/L 的快速浮选速率下,MPs 的去除率可达 100%。非共价相互作用和近表面水膜可能有利于亲水性物质的附着,并阻碍 MPs 的浮选去除。由于其简单性和连续性,基于泡沫浮选的 MPs 去除法具有在多种流动系统中应用的潜力。