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◆ Molecules (Basel, Switzerland)2026-08-27

Identification and Chemometric Profiling of C10- and C11-Decalins as Novel Hydrodesulfurization Products for Diesel Spill Environmental Forensics.

Wei-Hsuan Hsu, Zhi-Han Lin, Steve S-F Yu, Shih-Han Lin

原始摘要(英文原文)· Original abstract
This study introduces decahydronaphthalenes (C10- and C11-decalins; C0De and C1De) as a novel class of hydrodesulfurization (HDS)-associated forensic markers. Diesel-contaminated soil residues from 12 gas station spills and fresh ultra-low-sulfur diesel (ULSD) reference samples (2018-2025) in Taiwan were evaluated. The decalin abundances, derived from gas chromatography/mass spectrometry (GC/MS) peak areas, were converted into diagnostic ratios (DRs) using a conserved C15 sesquiterpane (BS3) internal reference. These ratios were correlated with conventional fingerprint parameters and alternative HDS products to support source identification and manufacturing-era estimation. Notably, Pearson correlations revealed that C0De and C1De weathering behaviors mimic those of short- (CH-6/CH-7) and medium-chain (CH-9) n-alkylcyclohexanes, respectively. Furthermore, C1De's negative correlation with CxD proxies indicates the premise that rigorous HDS processing lowers sulfur concentration while elevating these hydrogenated side products. Expanding on a framework using dimethylbiphenyls (C2B) and trimethyltetralins (C3T), adding these novel decalin markers in principal component analysis (PCA) maintained manufacturer-specific source discrimination, with collinear loading vectors confirming C1De and C3T as codependent HDS markers. Cross-validated (CV) linear discriminant analysis (LDA) showed that replacing C3T with C0De or C1De improved discrimination among broad sulfur-regulatory manufacturing-era groups, although residual classification uncertainty remained for strongly weathered samples. These results support C0De and C1De as complementary HDS-associated markers for semi-quantitative manufacturing-era assessment rather than exact chronological dating.
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Identification and Chemometric Profiling of C10- and C11-Decalins as Novel Hydrodesulfurization Products for Diesel Spill Environmental Forensics. — 科研速览 Science Skim