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Environmental Science & Technology|March 25, 2011
C-history method: rapid measurement of the initial emittable concentration, diffusion and partition coefficients for formaldehyde and VOCs in building materialsJianyin Xiong, Yuan Yao, Yinping ZhangEnvironmental Science & Technology|September 24, 2011
Variable volume loading method: a convenient and rapid method for measuring the initial emittable concentration and partition coefficient of formaldehyde and other aldehydes in building materialsJianyin Xiong, Wei Yan, Yinping ZhangEnvironmental Science & Technology|January 8, 2015
Impact of temperature on the ratio of initial emittable concentration to total concentration for formaldehyde in building materials: theoretical correlation and validationShaodan Huang, Jianyin Xiong, Yinping ZhangJournal of Hazardous Materials|September 3, 2013
A rapid and accurate method, ventilated chamber C-history method, of measuring the emission characteristic parameters of formaldehyde/VOCs in building materialsShaodan Huang, Jianyin Xiong, Yinping ZhangBuilding Simulation|May 16, 2023
Machine learning approach for estimating the human-related VOC emissions in a university classroomJialong Liu, Rui Zhang, Jianyin XiongChemosphere|November 7, 2021
Characterization of the off-body squalene ozonolysis on indoor surfacesMeixia Zhang, Ying Gao, Jianyin XiongPlos One|December 7, 2013
Influence of precision of emission characteristic parameters on model prediction error of VOCs/formaldehyde from dry building materialWenjuan Wei, Jianyin Xiong, Yinping ZhangPlos One|November 13, 2012
A novel method for measuring the diffusion, partition and convective mass transfer coefficients of formaldehyde and VOC in building materialsJianyin Xiong, Shaodan Huang, Yinping ZhangEnvironment International|August 13, 2022
Measurement methods and impact factors for the key parameters of VOC/SVOC emissions from materials in indoor and vehicular environments: A reviewHaimei Wang, Jianyin Xiong, Wenjuan WeiEnvironment International|August 18, 2019
An improved mechanism-based model for predicting the long-term formaldehyde emissions from composite wood products with exposed edges and seamsZhangcan He, Jianyin Xiong, Kazukiyo Kumagai, et al.Pageof 4