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About the database ScholarIQanswers from OpenAlex & ORCID
How has Hang Yang's publication output changed over time?
ScholarIQpublication output · 2020–2023
Output declined33% over the shown period — from 3 works in 2020 to 2 in 2023.
3
4
2
2
2020202120222023
What are the most-cited papers on Hang Yang?
ScholarIQmost cited works
Co-pyrolysis of waste polyvinyl chloride and oil-based drilling cuttings: Pyrolysis process and product characteristics analysis
Zebang Xia, Hang Yang, Jianfa Sun, Zejun Zhou, Jing Wang, Yi Zhang
Journal of Cleaner Production. 202173 Citations
Enhanced humic acid degradation by Fe3O4/ultrasound-activated peroxymonosulfate : Synergy index, non-radical effect and mechanism
Hang Yang, Binhua Luo, Saihai Lei, Yeyu Wang, Jianfa Sun, Zejun Zhou, Yi Zhang, Shibin Xia
S69753523. 202164 Citations
Thermogalvanic gel patch for self-powered human motion recognition enabled by photo-thermal-electric conversion
Hang Yang, Saeed Ahmed Khan, Ning Li, Rui Fang, Zhiquan Huang, Hulin Zhang
S149937609. 202363 Citations
Enhanced Adsorption of Rhodamine B on Modified Oil-Based Drill Cutting Ash: Characterization, Adsorption Kinetics, and Adsorption Isotherm
Yuqing Zhao, Hang Yang, Jianfa Sun, Yi Zhang, Shibin Xia
ACS Omega. 202155 CitationsOPEN ACCESS
Treatment and novel resource-utilization methods for shale gas oil based drill cuttings – A review
Hang Yang, Hongli Diao, Yi Zhang, Shibin Xia
S44455300. 202254 Citations
Related on ScholarIQ
Southwest University
Institution
Co-pyrolysis of waste polyvinyl chloride and oil-based drilling cuttings: Pyrolysis process and product characteristics analysis
Paper
Enhanced humic acid degradation by Fe3O4/ultrasound-activated peroxymonosulfate : Synergy index, non-radical effect and mechanism
Paper
Thermogalvanic gel patch for self-powered human motion recognition enabled by photo-thermal-electric conversion
Paper
Enhanced Adsorption of Rhodamine B on Modified Oil-Based Drill Cutting Ash: Characterization, Adsorption Kinetics, and Adsorption Isotherm
Paper
Treatment and novel resource-utilization methods for shale gas oil based drill cuttings – A review
Paper