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在饱和石英砂中低分子量有机酸存在的情况下,纳米和微塑料的迁移减少。

Decreased transport of nano- and micro-plastics in the presence of low-molecular-weight organic acids in saturated quartz sand.

作者信息

Liu Yanan, Gu Genyao, Lu Jizhe, Zhu Luxiang, Chen Quanyuan, Kim Hyunjung, Wang Jiajun, Ji Peng, Cai Li

机构信息

College of Environmental Science and Engineering, Donghua University, Shanghai 201620, PR China.

Department of Earth Resources and Environmental Engineering, Hanyang University, 222 Wangsimni-ro, Seongdong-gu, Seoul 04763, Republic of Korea.

出版信息

Sci Total Environ. 2024 Apr 15;921:171195. doi: 10.1016/j.scitotenv.2024.171195. Epub 2024 Feb 24.

Abstract

Low-molecular-weight organic acids (LMWOAs) and nano- and micro-plastics (NPs and MPs) are both widely distributed in terrestrial systems. To better understand the influence of LMWOAs on the transport of NPs and MPs, the effects of 0.5 mM citric- (CA), malic- (MA), and tartaric- (TA) acid on the transport of nano- (0.51 μm, PS NPs) and micro- (1.1 μm, PS MPs) polystyrene particles (2 mg L) in saturated quartz sand were investigated. All three LMWOAs decreased the transport of PS NPs and MPs, regardless of ionic composition or strength (0.1-10 mM NaCl and 0.1-1 mM CaCl). Further investigation revealed that the interfacial interactions between PS-quartz sand surfaces and PS-PS were altered by LMWOAs. LMWOAs adsorbed to quartz sand surfaces could serve as new deposition sites, as evidenced by the decreased transport of PS NPs and MPs in quartz sand that was subjected to pre-equilibration with selected MA, the low inhibition of PS transport with low concentrations of LMWOAs (0.1 mM), and also the adsorption of LMWOAs onto quartz sand surfaces by batch experiments. Meanwhile, the adsorption of LMWOAs on PS, hydrodynamic measurement and visual TEM observation together clarified the slight aggregation of PS NPs and MPs in suspensions, inducing the subsequent decrease in transport. Among them, the adsorption of LMWOAs onto quartz sand surfaces was found to be the main factor dominating the decreased transport of both PS NPs and MPs in saturated quartz sand.

摘要

低分子量有机酸(LMWOAs)以及纳米和微塑料(NPs和MPs)在陆地系统中均广泛分布。为了更好地理解LMWOAs对NPs和MPs迁移的影响,研究了0.5 mM柠檬酸(CA)、苹果酸(MA)和酒石酸(TA)对饱和石英砂中纳米级(0.51μm,PS NPs)和微米级(1.1μm,PS MPs)聚苯乙烯颗粒(2 mg L)迁移的影响。无论离子组成或强度如何(0.1 - 10 mM NaCl和0.1 - 1 mM CaCl₂),所有三种LMWOAs均降低了PS NPs和MPs的迁移。进一步研究表明,LMWOAs改变了PS - 石英砂表面以及PS - PS之间的界面相互作用。吸附在石英砂表面的LMWOAs可作为新的沉积位点,这一点可通过在经选定的MA预平衡的石英砂中PS NPs和MPs迁移减少、低浓度LMWOAs(0.1 mM)对PS迁移的低抑制作用以及通过批量实验证明LMWOAs吸附到石英砂表面得到证实。同时,LMWOAs在PS上的吸附、流体动力学测量以及可视化透射电镜观察共同阐明了悬浮液中PS NPs和MPs的轻微聚集,从而导致随后迁移的减少。其中,LMWOAs在石英砂表面的吸附被发现是饱和石英砂中PS NPs和MPs迁移减少的主要主导因素。

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