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China Occupational Medicine ; (6): 668-672, 2022.
Article Zh | WPRIM | ID: wpr-976097

@#Objective To analyze the research status and hotspot of occupational methanol poisoning at home and abroad. Methods , The China National Knowledge Resource Database Wanfang Data Knowledge Service Platform and Web of Science were used as the data sources. The relevant literatures on occupational methanol poisoning published in domestic and foreign , Results journals up to June 30 2021 were searched. The bibliometrics was used to analyzed the literatures. A total of 255 literatures were included in analysis. There were 187 Chinese articles and 68 English articles. Most of Chinese articles were , , published from 2001 to 2005 with an average of 26.7 literatures per five years until June 2021. Among them 72 literatures ( ), , were published in core journals 38.5% and 176 authors from 27 provinces autonomous regions and municipality directly , under the central government published relevant literatures. The research contents mainly focused on the classification , , poisoning mode clinical manifestations visual impairment and poisoning prevention and treatment of occupational methanol - , poisoning. Most of the English literatures were published in 2016 2020 with an average of 4.9 articles per five years until June , ( ), 2021. Among them 36 were published in SCI journals 52.9% and 57 authors from 11 countries published relevant , , , literatures. The research contents mainly focused on the clinical diagnosis drug treatment intoxication mechanism visual Conclusion sequelae and brain injury of occupational methanol poisoning. The research on occupational methanol poisoning , , , mainly focuses on clinical diagnosis clinical manifestations treatment and prognosis and pathogenesis. The focus of relevant research at home and abroad is different.

2.
Huan Jing Ke Xue ; 40(8): 3501-3508, 2019 Aug 08.
Article Zh | MEDLINE | ID: mdl-31854755

The external pollution of Dianchi Lake has been effectively controlled with the implementation of the integrated water environment control project. However, further attention should be paid to endogenous pollutants, such as surface sediments. To investigate the distribution of 16 polycyclic aromatic hydrocarbons (PAHs) in surface sediments of Dianchi Lake, PAH concentrations in 19 surface sediment samples (collected in December 2016) were quantitatively measured by gas chromatography-mass spectrometry (GC-MS). The spatial and temporal distribution, sources, and ecological risks were also analyzed. The concentration of total PAHs (TPAHs) in the Dianchi Lake surface sediments varied in the range of 92.31-1546.78 ng·g-1 with an average of 496.30 ng·g-1. The average concentration of TPAHs in the surface sediments from Caohai (932.37 ng·g-1) was much greater than that from Waihai (380.02 ng·g-1). With the implement of the integrated water environment control project, the concentration of TPAHs in the surface sediments from Dianchi Lake was significantly lower than those detected in 2012, and was already relatively low level among other key waterbodies in China. The PAH with the highest concentration was fluoranthene (80.65 ng·g-1) and the substance with the highest toxic equivalent quantity (TEQ) was dibenz[a, h] anthracene (42.97 ng·g-1). The PAHs were mainly composed of 4 ring and 5-6 ring compounds (with the concentration ratio of 40.38% and 40.22%, respectively), which indicated that the proportions of middle-ring and high-ring compounds were generally consistent. The results of the molecular diagnostic ratio analysis showed that the primary source of PAHs in Dianchi Lake surface sediments are biomass and coal combustion. Based on the potential ecological risk marker comparison method, the entire lake was classified as having a low ecological risk, while the ecological risk of Caohai was relatively higher, which should be concerned further. The results provide initial data and act as an important reference for the conservation and improvement of water quality in Dianchi Lake.

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