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Updated: Feb 22, 2026

Sampling and Analysis of Animal Scent Signals
Published on: February 13, 2021
Comprehensive Analytical Profiling for Sustainable Jewelry: A Multi-Technique Characterization of Essential
Dantong Huang1,2, Kaewbucha Manus2, Apiwathnasorn Chalisa3
1School of Arts and Design, Guangdong Eco-Engineering Polytechnic, Guangzhou 510520, China.
Abstract:
Rosin, a renewable natural resin derived from pine trees, is a promising biomass material for sustainable product development, though its distinct intrinsic odor limits broader use. This study implemented a comprehensive analytical strategy to mitigate the odor by incorporating essential oils (EOs)-eucalyptus (EUC) and peppermint (MINT)-and to conduct a multi-analytical characterization of the modified rosin jewelry. By integrating complementary analytical techniques, including LC-Q/TOF-MS for non-volatile components and GC-Q/TOF-MS for volatile organic compounds (VOCs), we achieved a systematic chemical profiling of the materials. The core composition of rosin, dominated by abietic acid (>48%), remained stable across all samples. The incorporation of EOs significantly altered the VOC profiles: The total VOC signal (summed peak area) in MINT-modified rosin was 2.57-fold that of the EUC-modified sample, with monoterpenoids comprising 87.62% of its VOC signature. Eucalyptol and limonene were tentatively identified as the major components in the EUC sample, whereas menthone, menthol, and limonene predominated in the MINT sample. Multivariate statistical analysis highlighted that variations in specific VOCs-particularly menthone, menthol, eucalyptol, and allo-ocimene-were closely associated with differences in the scent profiles of each modification. This work illustrates how a multi-technique analytical strategy can both guide and assess the functional modification of sustainable biomass materials. The findings offer a practical approach to improving rosin's functional properties while providing a methodological framework for the integrated characterization of complex biomaterials, supporting the development of eco-friendly products aligned with green chemistry and sustainable design principles.
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