Evaluating the Use of UV Absorbance for the Differentiation of Humified From Non-Humified Materials

Author:

Rahbari Mohammad1,Psutka Jarrod1ORCID,Lamar Richard2,Rosario-Ortiz Fernando L34

Affiliation:

1. BioLiNE Corporation, 3971 Old Walnut Rd., P.O Box 429, Alvinston, Ontario, N0N-1A0, Canada

2. Huma, Inc.   1331 W. Houston Ave., Gilbert, Arizona, 85233, USA

3. Department of Civil, Environmental and Architectural Engineering, University of Colorado Boulder, UCB 607, SEEC S295B, Boulder, Colorado, 80309, USA

4. Environmental Engineering Program, University of Colorado Boulder, UCB 607, SEEC S295B, Boulder, Colorado, 80309, USA

Abstract

Abstract Background Products containing humic acids (HA) and fulvic acids (FA) have significant commercial potential; however, unknown to the consumer, some products may be mislabeled or contain adulterants. The prevalence of mislabeling and adulterants is found primarily in FA products. Using UV-Vis spectroscopy to differentiate between real and fake FA products is practical and desirable. Objective The objective of this study was to expand the dataset generated using a UV-Vis-based method proposed by Mayhew et al., 2023. Methods In total, 30 test samples were used to generate 90 test portions (three replicates per test sample) for analysis using the UV-Vis methodology outlined in Mayhew et al., 2023, which in this study is referred to as the UVAC (UV absorbance confirmation) method. Results None of the 13 FA test samples investigated were determined as humified using the UVAC method. The FA samples studied consisted of two IHSS standards, five commercial FA products (CFAP), and six full FA fractions (SFA), which were isolated from six known solid humic material sources (SHMS). There was a leonardite, a humalite, and four peat sources used as the SHMS. Analysis of the neutralized extract of the SHMS found only 3/6 SHMS were determined as humified. Six HA (SHA) test samples were also generated by isolating the HA from the SHMS, and only 3/6 SHA were determined as humified. Conclusions Given the high prevalence of false determinations, more work is needed to improve the method so that it can be used by industry or regulators. Highlights The proposed method failed to determine IHSS FA standards as humified. Although the method is practical, it needs improvement and further study before it can be used for reliable differentiation of real from fake FA.

Publisher

Oxford University Press (OUP)

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