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A novel anti-counterfeiting method: Application and decomposition of RB for broad bean seeds (Vicia faba L.)

机译:一种新颖的防伪方法:RB在蚕豆种子中的应用和分解(蚕豆(Vicia faba L.))

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摘要

Combining with seed coating method, rhodamine B (RB), a kind of fluorescent compounds had been used in seed labeling as an anti-counterfeiting technology. Effects of broad bean seed coating with RB on physiological parameters and fluorescence performance in broad bean seedlings were performed. The prolonged fluorescence in vascular bundles of seedlings treated with RB could be used as a marker of seed anti-counterfeiting. The experiment showed that RB had no negative effect on seed germination, seedling growth, seedling protective enzyme activities, and the contents of malondialdehyde (MDA) and chlorophyll, after coating seeds with ratio I kg RB to 10-30 kg seeds. In addition, the RB adsorption by soil was accorded with the isothermal adsorption equations of Langmuir, which exhibited the linear correlation as 0.9959, the maximum adsorption as 1.716 mg/g, and the adsorption equilibrium constant as 0.042 L/mg. The soil adsorption of RB could be effectively degraded by UV/Fenton. Present research suggested that coating broad bean seeds with appropriate concentration RB were safe to seed germination and this technology was suitable for anti-counterfeiting application
机译:结合种子包衣法,若丹明B(RB),一种荧光化合物已被用于种子标记中作为一种防伪技术。进行了RB蚕豆种子包衣对蚕豆幼苗生理参数和荧光性能的影响。 RB处理的幼苗维管束中荧光的延长可作为种子防伪的标志。试验表明,以10 kg到30 kg的比例包被种子后,RB对种子发芽,幼苗生长,幼苗保护酶活性以及丙二醛(MDA)和叶绿素含量均无负面影响。此外,土壤对RB的吸附符合Langmuir的等温吸附方程,其线性相关性为0.9959,最大吸附为1.716 mg / g,吸附平衡常数为0.042 L / mg。 UV / Fenton可以有效地降解RB的土壤吸附。目前的研究表明,用适当浓度的RB包衣蚕豆种子对于种子发芽是安全的,并且该技术适用于防伪应用。

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