Evaluation of nano-silica, microwave heating, and ultraviolet irradiation effects on zearalenone detoxification in sunflower oils

IF 1.7 4区 医学 Q3 FOOD SCIENCE & TECHNOLOGY World Mycotoxin Journal Pub Date : 2022-02-18 DOI:10.3920/wmj2021.2733
N. Ghafari, G. Paimard, E. Sadeghi, N. Choobkar, M. A. Lalabadi
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Abstract

In the present study, we report three methods of silica nanoparticles (SNPs) as adsorbent, ultraviolet (UV) irradiation, and microwave heating and evaluate their capabilities in reducing and eliminating zearalenone (ZEN). The offered method not only was used for ZEN detoxification, but also greatly enhanced the sensitivity of ZEN measurement. The aim of this study was to evaluate ZEN concentration in sunflower oil samples by high-performance liquid chromatography (HPLC) method. This method was successfully validated for sunflower oil samples while the limit of detection (LOD) method (signal-to-noise ratio of 3:1) was 0.5 μg/l. The acquired removal data with the HPLC method through SNPs were fitted well with Freundlich isotherm, denoting that the multi-layer adsorption took place on the adsorbent. The equilibrium adsorption capacity of ZEN was 61.02 μg/g in an optimum time of 240 min on SNPs. The experimental results were evaluated by the adsorption kinetic model, which specified the adsorption kinetics of ZEN on SNPs, obeying the pseudo-second order model. This model demonstrated that the sorption rate depended on the sorption capacity but not the concentration of the sorbate. Moreover, the method presented to determine ZEN based on the use of SNPs in sunflower oil was accomplished by the adsorption process. Furthermore, the removal efficiencies of ZEN by SNPs, UV irradiation, and microwave heating were compared and obtained to be 92.1, 96.22, and 37.30%, respectively for determined times. These results confirm the removal efficiency of these methods is sensitive enough to ZEN analysis in sunflower oil samples.
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纳米二氧化硅、微波加热和紫外线照射对向日葵油中玉米赤霉烯酮解毒作用的评价
在本研究中,我们报道了二氧化硅纳米颗粒(SNPs)作为吸附剂、紫外线(UV)照射和微波加热的三种方法,并评估了它们在减少和消除玉米赤霉烯酮(ZEN)方面的能力。所提供的方法不仅用于ZEN的解毒,而且大大提高了ZEN测量的灵敏度。本研究的目的是通过高效液相色谱法(HPLC)评估葵花油样品中ZEN的浓度。该方法在葵花油样品中得到了成功验证,而检测限(LOD)方法(信噪比为3:1)为0.5μg/l。通过SNPs的HPLC方法获得的去除数据与Freundlich等温线拟合良好,表明吸附剂上发生了多层吸附。ZEN在SNPs上的平衡吸附量为61.02μg/g,最佳吸附时间为240min。实验结果采用吸附动力学模型进行评价,该模型规定了ZEN在SNPs上的吸附动力学,符合拟二阶模型。该模型表明,吸附速率取决于吸附容量,而不取决于吸附剂的浓度。此外,基于葵花油中SNPs的使用,提出的测定ZEN的方法是通过吸附过程实现的。此外,通过SNPs、紫外线照射和微波加热对ZEN的去除效率进行了比较,在确定的时间内分别为92.1%、96.22%和37.30%。这些结果证实了这些方法的去除效率对葵花油样品中的ZEN分析足够敏感。
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来源期刊
CiteScore
4.60
自引率
5.00%
发文量
25
审稿时长
>12 weeks
期刊介绍: ''World Mycotoxin Journal'' is a peer-reviewed scientific journal with only one specific area of focus: the promotion of the science of mycotoxins. The journal contains original research papers and critical reviews in all areas dealing with mycotoxins, together with opinions, a calendar of forthcoming mycotoxin-related events and book reviews. The journal takes a multidisciplinary approach, and it focuses on a broad spectrum of issues, including toxicology, risk assessment, worldwide occurrence, modelling and prediction of toxin formation, genomics, molecular biology for control of mycotoxigenic fungi, pre-and post-harvest prevention and control, sampling, analytical methodology and quality assurance, food technology, economics and regulatory issues. ''World Mycotoxin Journal'' is intended to serve the needs of researchers and professionals from the scientific community and industry, as well as of policy makers and regulators.
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