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        Reliability based partial safety factor of concrete containing nano silica and silica fume

        Anil Kumar Nanda,Prem Pal Bansal,Maneek Kumar 사단법인 한국계산역학회 2020 Computers and Concrete, An International Journal Vol.26 No.5

        The influence of combination of nano silica and silica fume, as partial cement replacement materials, on the properties of concrete has been studied through the measurement of compressive strength. The compressive strength of concrete in terms of mean, standard deviation and with-in-test coefficient of variation related to the variation in the nominated parameters have also been developed. The compressive strength data developed experimentally has been analyzed using normal-probability distribution and partial safety factors of composite concretes have been evaluated by using first order second moment approach with Hasofer Lind’s method. The use of Nano silica and silica fume in concrete decreases the partial safety factor of concrete i.e., increase the reliability of concrete. The experimental results show that the properties of concrete having nano silica and silica fume in combination were better than that of a plain concrete. The SEM test results showing the level of Ca(OH)2 in plain concrete and consumption level Ca(OH)2 of concrete containing nano silica & silica fume have also been presented.

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        AStudy on Optimization of Marigold Petal Yield, Pure Lutein, and Formulation of Free-Flowing Lutein Esters

        Bipransh Kumar Tiwary,Anil Kumar,Ashis Kumar Nanda,Ranadhir Chakraborty 한국작물학회 2014 Journal of crop science and biotechnology Vol.17 No.3

        The present study was conducted with the main objective to optimize petal yield from important marigold cultivars in WestBengal, and to standardize isolation of lutein from petals because these dietary xanthophylls are known to reduce the risks of agerelatedmacular degeneration (AMD) and cataracts. Six cultivars were studied viz. African marigold-Double (AFM-D), Africanmarigold-Single (AFM-S), African marigold-Orange (AFM-O), French marigold-Orange (FRM-O), French marigold-Double (FRMD),and LC (Local type), which withstand typical environmental conditions of northern West Bengal and produce flowers that do notvary in color and are relatively unaffected by pests and diseases. Lutein esters were extracted from milled marigold petals using nhexane. However, overall performance showed that LC is superior to the other cultivars. Pure lutein was obtained after saponificationwith 50% KOH. The re-crystallized lutein was characterized by UV-VIS, IR spectroscopy, and HPLC. A free-flowing lutein esterwas also formulated. This free-flowing lutein ester was found to be suitable to undergo commercialization or subsequent processing. An economic method for petal yield and isolation of lutein was thus standardized

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