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Engineered Silica Nanoparticles and silica nanoparticles containing Controlled Release Fertilizer for drought and saline areas.

机译:工程化二氧化硅纳米粒子和含有控制释放肥的二氧化硅纳米粒子用于干旱和盐水区。

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Silicon supplementation was explored to increase salinity tolerance in plants, in the beginning of this cenutury, therefore silica nanoparticles (SiO2 Nps ) can also be used as a trial to improve salinity tolerance in plants. In this study SiO2 Nps have been synthesyzied by some modification in the conventional method of Stober by thermal hydrolysis of Tetraethylorthosilicate. A compound Controlled Release Fertilizer (CRF) was synthesized that carried NPK and SiO2 Nps inside the core and Chitosan as the first semi-permeable coating and Sodium Alginate and Kaolin as an outer most superabsorbent coating. The synthesized SiO2 Nps were characterized by TEM and XRD. The water absorbency of CRF beads showed that they can absorb large amounts of water and double their weight. The Nutrient released rate from CRF beads was very slow and sustained for six months at room temperature. The SiO2 Nps containing superabsorbent CRF was capable of releasing the nutrients slowly, withhold large amounts of water therefore can help plants control salinity and survive better in drought and saline conditions without harming the environment. The synthesized compound fertilizer is biocompatible, biodegradable and nontoxic so ideal for growing plants in drought and salt effected areas.
机译:探讨了硅补充剂,以提高植物中的盐度耐受性,因此在这种Cenutury的开始,因此二氧化硅纳米颗粒(SiO 2 NPS)也可用作改善植物中盐度耐受性的试验。在本研究中,SiO2 NPS已经通过热水水解的四乙酯硅酸盐的传统方法中的一些修饰来合成。合成化合物控释肥料(CRF),其在核心和壳聚糖内携带NPK和SiO2 NP,作为第一半透涂层和海藻酸钠和高岭土,作为外超吸收涂层。通过TEM和XRD表征合成的SiO2 NPS。 CRF珠子的吸水性表明它们可以吸收大量水并加倍重量。来自CRF珠粒的营养释放率在室温下非常缓慢并持续六个月。含有超吸收性CRF的SiO2 NPS能够缓慢释放营养物质,因此含有大量水,因此可以帮助植物控制盐度,在干旱和盐水条件下更好地存活,而不会损害环境。合成的复合肥是生物相容性的,可生物降解和无毒,其适用于干旱和盐发生区域的种植植物。

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