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PREPARATION OF A COMBINATION OF NANO- MEDICINAL PLANTS AS ANTIOXIDANTS AND MICROORGANISMS: PREPARATION OF A COMBINATION OF NANO- MEDICINAL PLANTS AS ANTIOXIDANTS AND MICROORGANISMS
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ABSTRACT

            The controversy is currently revolving around industrial additives, including antioxidants, their negative effects on consumer health and the emergence of various and various diseases, which led scientists and researchers to intensify most studies on natural antioxidants and their synthesis from medicinal plants mentioned in ancient medicine and in divine books as potential antioxidants of increasing importance. Therefore, this study was designed to synthesize silver nitrate particles from plant leaf extracts (Figs, Olives, and Moringa) and study their effect on bacterial inhibition of each of the undesirable Coliform bacteria (E-Coli,- gram) and the streptococcus bacteria of (Staphylococcus aureus + Gram) and antioxidants after analysis of phytochemicals and essential compounds of these plants. The results showed that it contained a high percentage of phenols and total flavonoids, followed by coumarin, then it contained good amounts of alkaloids, tannins, saponins, resins, terpenes and steroids. The study also showed a high and significant inhibition of the plant mixture nano extract on coliform bacteria, as well as streptococcus bacteria, in addition to its effectiveness as an antioxidant compared to the synthetic antioxidant Butylated Hydroxy Toluene (BHT) and the extract of the natural combination. The results of this study proved that the leaves of the plants blend (Fig, Olive and Moringa) are an excellent natural source of anti-bacterial and antioxidant effects that interfere with their effects on public health. Therefore, this botanical mixture, as mentioned in the Great Book of God (Figs, Olives, and Sennin phase) has great benefits and a promising future in several areas, including nutritional supplements and food additives for various food products instead of industrial oxidation additives and their known side effects, in addition to that this mixture has a promising future. Also in the manufacture of fast-curing Nano medicines in direct contact with pathogens.                                         .                                                      

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Publication Date
Sat Jan 02 2021
Journal Name
Kerbala Journal Of Pharmaceutical Sciences
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Wed May 08 2024
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Publication Date
Wed May 08 2024
Journal Name
Applied Sciences
Nano-Additives in Asphalt Binder: Bridging the Gap between Traditional Materials and Modern Requirements
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This research delves into the realm of asphalt technology, exploring the potential of nano-additives to enhance traditional asphalt binder properties. Focusing on Nano-Titanium Dioxide (NT), Nano-Aluminum Oxide (NA), and Nano-Silica Oxide (NS), this study investigates the effects of incorporating these nanomaterials at varying dosages, ranging from 0% to 8%, on the asphalt binder’s performance. This study employs a series of experimental tests, including consistency, storage stability, rotational viscosity, mass loss due to aging, and rheological properties, to assess the impact of nano-additives on asphalt binder characteristics. The findings indicate a substantial improvement in the consistency of the asphalt binder with the add

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Tue Oct 30 2018
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Publication Date
Thu Sep 06 2018
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Publication Date
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Deep Oxidative Desulfurization of Model fuels by Prepared Nano TiO2 with Phosphotungstic acid
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In this study, nano TiO2 was prepared with titanium isopropoxide (TTIP) as a resource to titanium oxide. The catalyst was synthesized using phosphotungstic acid (PTA) and, stearyl trimethyl ammonium bromide (STAB) was used as the structure-directing material. Characterization of the product was done by the X-ray diffraction (XRD), X-ray fluorescent spectroscopy (XRF), nitrogen adsorption/desorption measurements, Atomic Force Microscope (AFM) and Fourier transform infrared (FTIR) spectra, were used to characterize the calcined TiO2 nanoparticles by STAB and PWA. The TiO2 nanomaterials were prepared in three crystalline forms (amorphous, anatase, anatase-rutile). The results showed that the

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