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首页> 外文期刊>Science of the total environment >Different electrically charged proteins result in diverse transport behaviors of plastic particles with different surface charge in quartz sand
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Different electrically charged proteins result in diverse transport behaviors of plastic particles with different surface charge in quartz sand

机译:不同的电荷蛋白质导致石英砂中具有不同表面电荷的塑料颗粒的多样化行为

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摘要

The influence of proteins on the transport and deposition behaviors of microplastics (MPs) in quartz sand was examined at both low (5 mM) and high ionic strength (25 mM) in NaCl solutions at pH 6. Carboxylate- and amine-modified polystyrene latex microspheres with size of 200 nm were employed as negatively (CMPs) and positively surface charged MPs (AMPs), respectively, while bovine serum albumin (BSA) and bovine trypsin were utilized as representative negatively and positively charged proteins, respectively. The results showed that for two examined protein concentrations (both 1 and 10 mg/L TOC) under both ionic strength conditions, the presence of BSA increased the transport of both CMPs and AMPs, while the presence of trypsin decreased the transport of CMPs yet increased the transport of AMPs in porous media. The mechanisms driving to the changed transport of MPs induced by two types of proteins were found to be different. Particularly, steric interaction induced by BSA corona adsorbed onto CMPs surface as well as the repel effects resulted from BSA suspending in solutions were found to contribute to the enhanced CMPs transport with BSA copresent in suspensions. The increased sizes and the decreased electrostatic repulsion of CMPs due to the adsorption of trypsin onto CMPs, together with the addition of extra deposition sites due to the adsorption of trypsin onto quartz sand drove to the decreased CMPs transport with trypsin copresent in suspensions. The increased electrostatic repulsion due to the adsorption of BSA onto AMPs surfaces caused the enhanced AMPs transport with BSA in solutions. While, the decreased electrostatic attraction of AMPs due to the adsorption of trypsin onto AMPs, as well as the competition of deposition sites due to the adsorption of trypsin onto quartz sand contributed to the increased AMPs transport with trypsin copresent in suspensions. The results showed that the presence of different types of proteins would induce different transport behaviors of microplastics with different surface charge in porous media. Since proteins are widely present in aquatic systems, to more accurately predict the fate and transport of MPs in natural environments, the effects and mechanisms of proteins on the transport of MPs should be considered.
机译:在pH6的NaCl溶液中,在低(5mm)和高离子强度(25mm)中检查蛋白质对微塑料(MPS)的转运和沉积行为的影响,在pH6的羧酸盐和胺改性聚苯乙烯乳胶尺寸为200nm的微球,分别是负(CMP)和正面带电的MPS(AMPS),而牛血清白蛋白(BSA)和牛胰蛋白酶分别被用作代表性的负面和带正电荷的蛋白质。结果表明,对于两种检查的蛋白质浓度(1和10mg / L TOC)在离子强度条件下,BSA的存在增加了CMP和AMP的运输,而胰蛋白酶的存在降低了CMP的运输而增加在多孔介质中的安培运输。发现驱动到由两种类型的蛋白质诱导的MPS的改变传输的机制不同。特别地,发现由BSA电晕吸附到CMPS表面上的空间相互作用以及由BSA悬浮在溶液中悬浮的BSA导致的次滤波效果有助于具有BSA共轭的增强的CMPS传输。由于将胰蛋白酶吸附到CMPS上,增加了CMP的尺寸和降低了CMP的静电排斥,以及由于胰蛋白酶吸附到石英砂中,加入额外的沉积位点驱动胰蛋白酶在悬浮液中的胰蛋白酶COPRESENT降低的CMPS输送。由于BSA吸附到AMPS表面上引起的静电排斥增加导致增强的AMPS运输与溶液中的BSA。虽然,由于胰蛋白酶的吸附到AMPS上,AMP的静电吸引力降低,以及由于胰蛋白酶的吸附到石英砂中,沉积位点的竞争导致胰蛋白酶在悬浮蛋白中的胰蛋白酶植物增加了AMPS输送。结果表明,不同类型的蛋白质的存在会诱导多孔介质中具有不同表面电荷的微塑料的不同传输行为。由于蛋白质广泛存在于水生系统中,因此更准确地预测天然环境中MP的命运和运输,应考虑蛋白质对MPS运输的影响和机制。

著录项

  • 来源
    《Science of the total environment》 |2021年第20期|143837.1-143837.10|共10页
  • 作者单位

    The Key Laboratory of Water and Sediment Sciences Ministry of Education State Environmental Protection Key Laboratory of All Material Fluxes in River Ecosystems International Joint Laborato) for Regional Pollution Control Ministry of Education College of Environmental Sciences and Engineering Peking University Beijing 100871 PR China;

    The Key Laboratory of Water and Sediment Sciences Ministry of Education State Environmental Protection Key Laboratory of All Material Fluxes in River Ecosystems International Joint Laborato) for Regional Pollution Control Ministry of Education College of Environmental Sciences and Engineering Peking University Beijing 100871 PR China;

    The Key Laboratory of Water and Sediment Sciences Ministry of Education State Environmental Protection Key Laboratory of All Material Fluxes in River Ecosystems International Joint Laborato) for Regional Pollution Control Ministry of Education College of Environmental Sciences and Engineering Peking University Beijing 100871 PR China;

    The Key Laboratory of Water and Sediment Sciences Ministry of Education State Environmental Protection Key Laboratory of All Material Fluxes in River Ecosystems International Joint Laborato) for Regional Pollution Control Ministry of Education College of Environmental Sciences and Engineering Peking University Beijing 100871 PR China;

    The Key Laboratory of Water and Sediment Sciences Ministry of Education State Environmental Protection Key Laboratory of All Material Fluxes in River Ecosystems International Joint Laborato) for Regional Pollution Control Ministry of Education College of Environmental Sciences and Engineering Peking University Beijing 100871 PR China;

    The Key Laboratory of Water and Sediment Sciences Ministry of Education State Environmental Protection Key Laboratory of All Material Fluxes in River Ecosystems International Joint Laborato) for Regional Pollution Control Ministry of Education College of Environmental Sciences and Engineering Peking University Beijing 100871 PR China;

    The Key Laboratory of Water and Sediment Sciences Ministry of Education State Environmental Protection Key Laboratory of All Material Fluxes in River Ecosystems International Joint Laborato) for Regional Pollution Control Ministry of Education College of Environmental Sciences and Engineering Peking University Beijing 100871 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Plastic particles; Proteins; Transport behaviors; DLVO interaction; Repel effects; Quartz sand;

    机译:塑料颗粒;蛋白质;运输行为;DLVO互动;击退效果;石英沙子;

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