Occurrence and distribution of C6-C40 chlorinated paraffins in deep-sea sediments from the Indian Ocean basins.
作者 AuthorsXu Weikun, Wang Qi, Yao Shengchao, Xie Naiyu, Jin Linjie, Shao Yetong, Zhang Lu, Liu Mengyang, Xie Anqi, Gao Wei, Chen Xuguang, Leung Kenneth M Y, Ruan Yuefei
Chlorinated paraffins (CPs) are high-production-volume industrial chemicals, yet their occurrence and distribution in deep-ocean basins remain poorly understood. Here, this study investigated 771 homologues of CPs with various carbon chain lengths (i.e., C6-C40), including very short-chain (vSCCPs, C6-C9; semi-quantified), short-chain (SCCPs, C10-C13), medium-chain (MCCPs, C14-C17), long-chain (LCCPs, C18-C20), and very long-chain CPs (vLCCPs, C21-C40; semi-quantified) in surface sediment samples collected from 17 sites in the Indian Ocean basins using high-resolution mass spectrometry. CPs were detected in 65% of the samples, with total concentrations of 15-100 ng/g dry weight (dw) (mean: 40 ± 27 ng/g dw). MCCPs (51%) and SCCPs (43%) predominated the homologue profiles, while vSCCPs, LCCPs, and vLCCPs were also frequently semi-quantitatively detected, indicating the widespread dispersion of lesser-monitored CP classes into deep-sea sediments. A clear spatial fractionation was observed: Western sediments (Arabian Sea) were enriched in heavier CP groups (MCCPs, 64%; C14-C15 homologues), whereas eastern sediments showed higher proportions of lighter CP groups (SCCPs, 53%; C10-C11 homologues). The positive correlation between concentrations of CPs and total organic carbon suggests that organic matter and particle-associated transport play an important role in CP accumulation, whereas the lack of a depth trend indicates that overlying water depth alone is not a primary predictor of sedimentary CP burdens. This study provides first-hand baseline data on C6-C40 CPs in deep-sea sediments, revealing the previously unrecognized presence of vSCCPs and vLCCPs in remote basins, and highlighting the need to include homologue-specific transport and deep-sea sequestration in future CP monitoring and risk assessment frameworks.