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Engineered Nanoparticle Adhesion and Removal from Tomato Surfaces

机译:工程化的纳米颗粒附着力和从番茄表面的去除

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Engineered nanoparticles (NPs) are being used in different industries due to their unique physicochemical properties. NPs may be toxic and could pose both public health and environmental contamination risks. In this study, two concentrations (50 and 500 μg mL~(-1)) of titania (TiO2), silica (SiO2), and alumina (Al2O3) were applied to contaminate the surface of cherry tomato as a food model, followed by washing with deionized water (DI) to remove the NPs from the tomato surfaces. The NP surface charge and hydrodynamic diameter results showed that the isoelectric point (IEP) for alumina was at pH 9—9.6, for silica at pH <3, and for titania was at pH 6.5—6.8; in addition, the highest hydrodynamic size for all NPs was observed at the IEP. Inductively coupled plasma mass spectrometry (ICP-MS) indicated that the highest NP concentration was observed on tomato surfaces contaminated at the higher concentration (500 μg rnL~(-1)) (P < 0.05). After the tomatoes had been washed with DI, alumina levels decreased significantly, whereas for titania and silica, no significant difference in NP concentration on tomato surface was observed following the washing treatment. This study shows that removal of NPs may be possible with a simple washing treatment but that removal of NPs is likely to be more effective when the moment ratio is >1, which can occur if the pH of the washing solution is significantly different from the IEP of NPs.
机译:工程纳米颗粒(NPs)由于其独特的物理化学特性而被用于不同的行业。 NP可能有毒,并可能构成公共健康和环境污染风险。在这项研究中,以二氧化钛(TiO2),二氧化硅(SiO2)和氧化铝(Al2O3)的两种浓度(50和500μgmL〜(-1))作为食品模型污染了樱桃番茄的表面,然后用去离子水(DI)洗涤以除去番茄表面的NP。 NP表面电荷和流体动力学直径结果表明,氧化铝的等电点(IEP)为pH 9-9.6,二氧化硅的等电点为pH <3,二氧化钛的等电点为pH 6.5-6.8。此外,在IEP上观察到所有NP的最大流体动力学尺寸。电感耦合等离子体质谱法(ICP-MS)表明,在较高浓度(500μgrnL〜(-1))污染的番茄表面上观察到最高的NP浓度(P <0.05)。番茄用去离子水清洗后,氧化铝含量显着下降,而二氧化钛和二氧化硅在清洗后未观察到番茄表面NP浓度的显着差异。这项研究表明,通过简单的洗涤处理即可去除NP,但当力矩比> 1时,去除NP可能更有效,如果洗涤液的pH值与IEP明显不同,则可能发生这种情况。 NP。

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