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Profil bibliographique

Xiaozhen Fang

Informations fournies par OpenAlex. Research Africa ne déduit ni nationalité, ni poste, ni coordonnées personnelles.

30Publications signalées
558Citations signalées
2Affiliations récentes

Les institutions déclarées

Les domaines associés

Air Quality and Health ImpactsAtmospheric chemistry and aerosolsAir Quality Monitoring and ForecastingVehicle emissions and performanceAtmospheric aerosols and clouds

Les publications récentes

2025 article OpenAlex

Characteristics and health risk assessment of PM 2.5 -PAHs in a select Chinese ceramic industrial site during winter

Xiaozhen Fang, Xiang Tu, Chenglong Yu, Qiulin Xiong et autres

During the winter of 2020–2021, PM2.5-PAH samples were collected and analyzed at the Jiangxi Architectural Ceramics Industry Park to evaluate the implementation of comprehensive air pollution control measures and determine their effect on the health risk of the local exposed population. The …

cn (code pays fourni par la source)

0 citations Journal of the Air & Waste Management Association
Accès ouvert 2025 article OpenAlex

Effects of Soil Moisture Heterogeneity on Temperature‐Humidity Dissimilarity in the Convective Boundary Layer

Heping Liu, Jianping Huang, Xiaozhen Fang, Ren‐Guo Zhu et autres

Abstract Surface moisture heterogeneity degrades temperature‐humidity (‐) similarity in the atmospheric surface layer, yet the underlying physical mechanisms driving this dissimilarity remain underexplored. This study employs large‐eddy simulations coupled with a land‐surface model to investigate ‐ similarity in the convective boundary layer …

cn, us (code pays fourni par la source)

2 citations Journal of Geophysical Research Atmospheres
2025 article OpenAlex

Characterization and Source Identification of Volatile Organic Compounds (VOCs) Pollution in an Industrial Park in Lianyungang City

Xinrui Miao, Cheng Liu, Xiaozhen Fang, Aijun Yan et autres

工业排放对大气挥发性有机物(VOCs)的贡献明显,但不同地区产业结构、交通及气象条件等不同,需要因地制宜进行研究。基于2023年5月至2024年4月在线监测数据,探讨连云港市某工业园VOCs的时间变化特征及其来源解析。结果表明:观测期间57种VOCs浓度平均值为(20.3±15.5)×10-9(以体积分数计),烷烃(70.4%)是VOCs的重要组分;臭氧生成潜势OFP平均体积分数为44.4×10-9,烯烃(45.7%)对臭氧生成贡献最大;VOCs月平均体积分数呈现冬高夏低的变化趋势,12月最高,8月最低;日变化呈现双峰型变化特征,高值主要出现在早晨6~9时和傍晚18~19时;PMF源解析结果表明该观测区VOCs来源分别是机动车排放源(31.3%)、溶剂使用源(30.7%)、石油化工源(15.3%)、工业燃烧源(12.9%)和油气挥发源(9.8%);潜在源贡献函数模型(PSCF)结果显示烷烃类VOCs潜在源区主要集中在山东省西部及北部区域。最后通过解析高值VOCs污染事件阐明对区域管控的启示。

0 citations EARTH AND ENVIRONMENT
Accès ouvert 2022 article OpenAlex

Chemical Composition Characteristics and Source Apportionment of PM2.5 in Ceramic Industrial Base during Winter

Xiang Tu, Xiaozhen Fang, Hansun Fang, Changlin Ye et autres

The national architectural ceramic industrial center in east China is suffering from serious ambient fine particle pollution. The study reported herein describes an effort to ascertain the degree and sources of the PM2.5 collected in a ceramic industrial base during winter. The …

cn (code pays fourni par la source)

9 citations Aerosol and Air Quality Research

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