Wumu Xu
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Graduate Assistant
Also affiliated: Second Military Medical University (2020)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Wumu Xu's research has explored topics across remote sensing, machine learning, and materials science. Recent publications include work on "Open water detection in urban environments using high spatial resolution remote sensing imagery" (2020) and "Fast Automatic Airport Detection in Remote Sensing Images Using Convolutional Neural Networks" (2018). Xu also co-authored a 2022 study comparing machine learning classifiers for land cover mapping and a 2021 paper on structured graph learning for subspace clustering. Further research includes an investigation into "Doped Cu0 and sulfidation induced transition from R-O• to •OH in peracetic acid activation by sulfidated nano zero-valent iron-copper" (2024). Xu's work has been supported by collaborations with researchers at the University of Arkansas at Fayetteville, including Yiting Xiao, Jun Zhu, Yang Tian, and Xianghong Qian, with whom Xu shares multiple publications. Xu's scholarship metrics include an h-index of 4 and a total of 73 citations across 5 publications.
Metrics
- h-index: 4
- Publications: 5
- Citations: 73
Positions
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Graduate Assistant publications 2025University of Arkansas at Fayetteville Biomedical Engineering ORCID
Selected Publications
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Optimization and scale-up of pervaporation for dehydration of 2-MeTHF: An enabling technology for pharmaceutical processing (2026)
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Visualizing the Effect of Process Pause on Virus Entrapment During Constant Flux Virus Filtration (2025)
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The effects of membrane structure and filtration conditions on virus filtration (2025)
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Photodegradation of Microplastics through Nanomaterials: Insights into Photocatalysts Modification and Detailed Mechanisms (2024)
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Photodegradation of microplastics through nanomaterials: Insights into photocatalysts modification and detailed mechanisms (2024)
Collaboration Network
Top Collaborators
- Photodegradation of Microplastics through Nanomaterials: Insights into Photocatalysts Modification and Detailed Mechanisms
- Photodegradation of microplastics through nanomaterials: Insights into photocatalysts modification and detailed mechanisms
- Photodegradation of Microplastics through Nanomaterials: Insights into Photocatalysts Modification and Detailed Mechanisms
- Photodegradation of microplastics through nanomaterials: Insights into photocatalysts modification and detailed mechanisms
- Photodegradation of Microplastics through Nanomaterials: Insights into Photocatalysts Modification and Detailed Mechanisms
- Photodegradation of microplastics through nanomaterials: Insights into photocatalysts modification and detailed mechanisms
- The effects of membrane structure and filtration conditions on virus filtration
- Visualizing the Effect of Process Pause on Virus Entrapment During Constant Flux Virus Filtration
- The effects of membrane structure and filtration conditions on virus filtration
- Visualizing the Effect of Process Pause on Virus Entrapment During Constant Flux Virus Filtration
- The effects of membrane structure and filtration conditions on virus filtration
- The effects of membrane structure and filtration conditions on virus filtration
- Visualizing the Effect of Process Pause on Virus Entrapment During Constant Flux Virus Filtration
- Visualizing the Effect of Process Pause on Virus Entrapment During Constant Flux Virus Filtration
- Optimization and scale-up of pervaporation for dehydration of 2-MeTHF: An enabling technology for pharmaceutical processing
- Optimization and scale-up of pervaporation for dehydration of 2-MeTHF: An enabling technology for pharmaceutical processing
- Optimization and scale-up of pervaporation for dehydration of 2-MeTHF: An enabling technology for pharmaceutical processing
- Optimization and scale-up of pervaporation for dehydration of 2-MeTHF: An enabling technology for pharmaceutical processing
- Optimization and scale-up of pervaporation for dehydration of 2-MeTHF: An enabling technology for pharmaceutical processing
- Optimization and scale-up of pervaporation for dehydration of 2-MeTHF: An enabling technology for pharmaceutical processing
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