Publications by authors named "Jiyuan Weng"

Article Synopsis
  • Coking processes release a wide range of polycyclic aromatic hydrocarbons (PAHs) and benzofuran derivatives, but past studies have mainly focused on a limited number of these compounds.
  • A novel analysis method identified a total of 56 emerging PAHs, 64 alkylated PAHs, and 32 furans, highlighting 69 compounds previously unrecognized.
  • Emerging PAHs pose a significant carcinogenic risk, with concentrations in the top 20% of toxicological priority compounds being 3.4 times more hazardous than the traditional EPA PAHs, indicating a need for better monitoring and regulation.
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Article Synopsis
  • The study emphasizes the importance of analyzing pollutants in human milk to understand both maternal and infant exposure, noting that previous research often overlooked many substances.
  • A comprehensive analysis of 15 pooled human milk samples from the Yangtze River Delta revealed a total of 171 compounds, with 16 detected for the first time in human milk.
  • The research identified area-specific pollutants and established that polycyclic aromatic hydrocarbons (PAHs) only made up a small portion of the risk index, highlighting the need for increased focus on pollutants with various functional groups that have potential health risks.
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Short-chain and medium-chain chlorinated paraffins (SCCPs and MCCPs) have garnered significant attention because they have persistence and potential toxicity, and can undergo long-distance transport. Chlorinated paraffins (CPs) inhaled in the size-fractionated particulate phase and gas phase can carry different risks to human health due to their ability to accumulate in different regions of the respiratory tract and exhibit varying deposition efficiencies. In our study, large-volume ambient air samples in both the size-fractionated particulate phase (Dp < 1.

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Liquid crystal monomers (LCMs) comprise a class of organic pollutants that have garnered considerable attention because of their dioxin-like toxicity (i.e., modulation of genes) and presence in various environments.

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Chlorinated paraffins (CPs) can accumulate in sediment and pose risks to ecological systems and human health. The Haihe River Basin is one of the seven main river basins in China and is mainly in the Beijing-Tianjin-Hebei region, which is densely populated and very urbanized. There is therefore a high probability of CP pollution in the Haihe River Basin.

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There is concern about the large amounts of aromatic compounds emitted during coking. Previous studies of coking emissions have been focused on polycyclic aromatic hydrocarbons, dioxin-like compounds, phenols, and volatile organic compounds, but previously unidentified compounds produced during coking may also harm human health. Here, the main pollutants in 69 soil samples from an abandoned coking plant were identified by non-target screening using two-dimensional gas chromatography time-of-flight mass spectrometry.

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Chlorinated paraffins (CPs) are used in many products, including soft poly(vinyl chloride) curtains, which are used in many indoor environments. Health hazards posed by CPs in curtains are poorly understood. Here, chamber tests and an indoor fugacity model were used to predict CP emissions from soft poly(vinyl chloride) curtains, and dermal uptake through direct contact was assessed using surface wipes.

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Short-chain (SC) and medium-chain (MC) chlorinated paraffins (CPs) are found widely in the environment. Little research into air-soil exchange of SCCPs and MCCPs has been performed. In this study, CP concentrations, congener group profiles, and air-soil exchange in a typical contaminated area were investigated.

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Chlorinated paraffins (CPs) are used as additives in metal processing in the metal smelting industry. Data on CPs in the environment near metal smelting plants are limited. The objectives of this study were to investigate the concentrations and congener profiles of CPs in soil around factories in a non-ferrous metal recycling park located in Hebei, China, and to investigate human exposure to CPs in the soil.

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