Preparation and certification of benzoic acid reference material for calorimetry analysis

Sen, Arindam and Kundu, Rajen and Upadhyay, A K and Soni, Savita and Chakravarty, S (2024) Preparation and certification of benzoic acid reference material for calorimetry analysis. Measurement Energy . p. 100016.

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Abstract

Benzoic acid reference material is indispensable for bomb calorimeter instrument calibration and validation of gross calorific value (GCV) analysis of any substance. In this work, we demonstrated the preparation of benzoic acid reference material through a homogeneity study, round-robin analysis, and stability study. Two-factor analysis of variance (ANOVA) test for gross calorific value in the randomly selected sub-samples of benzoic acid exhibits a lower FTS value than the Fcrit value, indicating that the samples are sufficiently homogeneous. The calculated uncertainty of between-bottle (ubb) and uncertainty of homogeneity (uhom) for GCV of benzoic acid in the sub-samples were found as 1.82 and 4.42 cal/g respectively. We found that the observed homogeneity (uhom(Finding)) value is lower than the assumed homogeneity (uhom (Assume)) value for the prepared benzoic acid reference material. Overall observations confirm that the sub-samples are sufficiently homogeneous. Moreover, the round-robin analysis/or inter-laboratory comparison analysis was conducted to assign the gross calorific value and determine the characterization uncertainty. The seventh order of Grubbs' analysis was done using robust estimator Alogoritm A to assign the GCV of benzoic acid. Finally, the measurement uncertainty of the assigned GCV of benzoic acid was calculated with the combined uncertainties from various sources

Item Type:Article
Official URL/DOI:https://doi.org/10.1016/j.meaene.2024.100016
Uncontrolled Keywords:Reference materials; Homogeneity; Stability study; Benzoic acid; Gross calorific value; ANOVA
Divisions:Analytical Chemistry
ID Code:9728
Deposited By:Head IMDC
Deposited On:04 Apr 2025 12:21
Last Modified:04 Apr 2025 12:21
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