01 مهر 1405
علي محمد صنعتي

علی محمد صنعتی

مرتبه علمی: استادیار
نشانی: پژوهشکده خلیج فارس - گروه محیط زیست
تحصیلات: دکترای تخصصی / محیط زیست - آلودگی
تلفن: 07731222231
دانشکده: پژوهشکده خلیج فارس

مشخصات پژوهش

عنوان Plankton-mediated coupling of phthalate esters across seawater, biota, and sediments in the northern Persian Gulf: Industrial vs urban coasts
نوع پژوهش مقالات در نشریات
کلیدواژه‌ها
Phthalate esters Plankton bioaccumulation Semi-enclosed marine basin Industrial coastal contamination Sediment–water coupling mechanisms
مجله MARINE POLLUTION BULLETIN
شناسه DOI 10.1016/j.marpolbul.2026.120169
پژوهشگران پیکسان ژانگ (نفر اول) ، الله کرم اخلاقی (نفر دوم) ، علی محمد صنعتی (نفر سوم) ، مهدی احمدی (نفر چهارم) ، قربان اصغری (نفر پنجم) ، بهمن رماوندی (نفر ششم به بعد)

چکیده

Phthalate esters (PAEs) are widely used plastic additives continuously released into marine environments, yet biologically mediated partitioning and sediment–biota coupling in semi-enclosed industrial basins remain insufficiently quantified. This study presents an integrated multi-matrix assessment of six priority PAEs (DMP, DEP, DBP, BBP, DEHP, DnOP) in seawater, plankton, and surface sediments from the northern Persian Gulf, comparing a petrochemical-dominated coastline (Assaluyeh) with an urban shoreline (Bushehr) across cold and warm seasons. Total PAE concentrations (ΣPAEs) followed a consistent matrix-dependent hierarchy: sediment > plankton > > seawater (Kruskal–Wallis, p < 0.001; ε2 ≈ 0.88). Sediment concentrations reached 59.00 ng g− 1 dw in warm-season Assaluyeh, while plankton ranged from 16.80 to 30.60 ng g− 1 dw and seawater from 0.325 to 0.597 ng L− 1 . Warm-season levels were significantly elevated across matrices (p = 0.029), coinciding with increased plankton lipid content (up to 16.52%) and higher sediment TOC (up to 1.93%). Biota–water bioaccumulation factors (BAFs) were on the order of 104 –105 L kg− 1 , confirming lipid-driven enrichment of hydrophobic congeners, particularly DEHP (~41% of ΣPAEs) and DBP (~22%). In contrast, lipid- and TOCnormalized biota–sediment accumulation factors (BSAFs) were close to unity, indicating near-equilibrium partitioning rather than trophic magnification. Strong plankton–sediment correlations (ρ = 0.84, p < 0.001) support biologically mediated vertical transfer. These findings highlight the critical role of plankton in regulating contaminant redistribution in semi-enclosed industrial seas, with implications for bioavailability, benthic exposure, and sedimentary accumulation of PAEs. The results provide a framework for improving coastal monitoring in rapidly industrializing marine regions.