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Electron beam agrobionanotechnologies for agriculture and food industry enabled by electron accelerators

机译:电子束农农业和食品工业的农业技术通过电子加速器启用

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Electron beam (EB) radiation technologies have been employed to increase efficiency of biologically active nanochips developed for agricultural plants seed pre-treatment with purpose of enhancing crop yield and productivity. Iron-containing nanoparticles (NPs), synthesized in reverse micelles following known radiation-chemical technique, have served as a multifunctional biologically active and phytosanitary substance of the chips. Porous chip carriers activation has been performed by EB ionization (doze 20kGy) of the active carbons (AC) prepared from agricultural waste and by-products: Jerusalem artichoke (Helianthus tuberosus) straw, rape (Brassica napus L. ssp. oleifera Metzg) straw, camelina (Camelina sativa (L.) Crantz) straw, wheat (Triticum aestivum) straw. Three methods, UV-VIS spectrophotometry, Electron Paramagnetic Resonance (EPR) spectroscopy, cyclic voltammetry (CV) have been used for process control and characterization of radiation-activated and NPs-modified ACs. The results show a notable effect of ACs activation by electron beam radiation, evidenced by FeNPs-adsorption capacity increase. Studies of the impact of Fe NPs-containing nanochip technology on enhancement of seeds germination rate and seedlings vigour suggest that reported electron beam radiation treatment techniques of the ACs from selected agricultural residues may be advantageous for industrial application.
机译:电子束(EB)辐射技术已被用于提高用于农业植物种子预处理的生物活性纳米切口的效率,目的是提高作物产量和生产率。含铁纳米颗粒(NPS),在已知的辐射 - 化学技术之后以反向胶束合成,用作芯片的多功能生物活性和植物检疫物质。多孔芯片载体激活已由由农业废物和副产品中制备的活性碳(ac)的EB电离(Doze 20kgy)进行:耶路撒冷朝鲜蓟(Helianthus tuberosus)稻草,强奸(芸苔属植物Napus SSP。Oleifera Metzg)稻草,Camelina(Camelina Sativa(L.)Crantz)稻草,小麦(Triticum aestivum)稻草。三种方法,UV-Vis分光光度法,电子顺磁共振(EPR)光谱,循环伏安法(CV)已被用于辐射活化和NPS改性AC的过程控制和表征。结果表明,电子束辐射的ACS激活的显着效果,由FENPS吸附容量增加证明。含Fe NPS纳米纤维技术对种子种子萌发率和幼苗活力的影响的研究表明,来自选定的农业残留物的ACS的电子束辐射处理技术可能是有利的工业应用。

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