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Street dust mercury levels among different land-use categories in Ho Chi Minh city, Vietnam: Source apportionment and risk estimation

Mercury (Hg) in street dust has gained prominent research attention in several regions worldwide owing to its implication as an environmental risk. However, similar studies in Southeast Asia (SEA) remain scarce. In this study, the characteristics, distribution, source apportionment and risk evaluati...

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Bibliographic Details
Published in:Atmospheric pollution research 2023-01, Vol.14 (1), p.101623, Article 101623
Main Authors: Dat, Nguyen Duy, Truong, Minh Tri, Nguyen, Ly Sy Phu, Kim Tran, Anh Thi, Duc, Nguyen Minh, Vo, Thi-Dieu-Hien, Sheu, Guey-Rong
Format: Article
Language:English
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Summary:Mercury (Hg) in street dust has gained prominent research attention in several regions worldwide owing to its implication as an environmental risk. However, similar studies in Southeast Asia (SEA) remain scarce. In this study, the characteristics, distribution, source apportionment and risk evaluation of Hg in street dust samples collected in 2020 across Ho Chi Minh City (HCMC), were assessed. The average Hg street dust concentration is determined by ICP-MS, at 0.132 ± 0.182 mg kg−1 (n = 96) and being comparable with cities in China and India. Among three land-use categories (industrial–IN, urban–UR and background–BG), IN showed the highest Hg concentration (0.21 ± 0.21 mg kg−1) which was 1.6 and 6-time higher than those of UR and BG, implying the contribution of industrial sectors. Furthermore, a Hg background level of 0.035 ± 0.020 mg kg−1 is proposed for southern Vietnam. Spatial assessment proposed a southwest > northeast Hg concentration gradient within inner HCMC, showing higher Hg fractions over industrial areas and highways than suburban and residential areas. A PMF solution features minor associations of street dust Hg to traffic and combustion activity while highlighting other possible sources or mechanisms (photoreduction, back-partitioning) for street dust Hg in HCMC. A moderate Igeo value for IN sites (0.1 ± 1.6) showed slight Hg enrichment while insignificant non-carcinogenic Hg risk (ΣHI
ISSN:1309-1042
1309-1042
DOI:10.1016/j.apr.2022.101623