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Hexane

About: Hexane is a research topic. Over the lifetime, 3759 publications have been published within this topic receiving 57996 citations. The topic is also known as: CH3-[CH2]4-CH3 & hexyl hydride.


Papers
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TL;DR: In this paper, enzyme linked immunosorbent assay (ELISA), using microtiter plates for covalent immobilization of the respective monoclonal antibodies K4E7 and B76-BF5.

20 citations

Journal ArticleDOI
TL;DR: The efficiency of the process, measured through the recoveries from spiked samples of edible oil was higher than 95% and the procedure has been applied to determine mineral oil in olive oil from the retailed market.

20 citations

Journal ArticleDOI
TL;DR: In this paper, the solid-liquid equilibrium of benzoic acid has been determined in six monosolvents (tributyl phosphate, diacetone alcohol, methyl-n-propyl ketone, methyl acetate, amyl acetate and isooctane).
Abstract: The solid–liquid equilibrium of benzoic acid has been determined in six monosolvents—tributyl phosphate, diacetone alcohol, methyl-n-propyl ketone, methyl acetate, amyl acetate, and isooctane—at temperatures from 283.15 to 328.15 K and five binary systems—ethanol + hexane (288.15–328.15 K), isopropyl alcohol + hexane and chloroform + hexane (288.15–323.15 K), acetone + hexane (288.15–318.15 K), and acetone + water (288.15–318.15 K)—at atmospheric pressure with varying mole fraction of the binary mixture. The solubility was estimated by three different methods—titrimetry, gravimetry, and high-pressure liquid chromatography methods. The solubility of benzoic acid was found to increase with an increase in temperature and mole fraction. Experimental solubility data was correlated with various thermodynamic models such as the Buchowski equation, the NRTL model, and the modified Apelblat–Jouyban–Acree model. The mathematical models demonstrated that the calculated and experimental solubilities of benzoic acid i...

20 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
2023205
2022429
202186
202092
201999
201891