Research Group
- Overview
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Development of portable Lab-on-CD instrument for in-situ and high precision detection of spilled oil particles in coastal water system and related testing results
Identified On: Dec 22 2024 09:37 UTC
UDI: R6.x831.000:0001
Data collected to analyze the burst frequency of each valve tested to achieve accurate sequential control of micro-valving system.
Published On: Jun 18 2019 21:14 UTC
File Format: docx, png
UDI: R6.x831.000:0002
File Size: 1.39 MB
Dataset for: A 3D printed centrifugal microfluidic platform for solid-phase-extraction and fluorescent detection of spilled oil in water
Published On: Jun 18 2019 19:57 UTC
File Format: docx, xlsx, png
UDI: R6.x831.000:0003
File Size: 1.04 MB
Eurico D'Sa
Louisiana State University / Department of Oceanography and Coastal Sciences
ejdsa@lsu.edu
Binbin Wang
Assistant Professor
University of Missouri / Civil and Environmental Engineering
wangbinb@missouri.edu
Wang, Y., Zhang, Y., Qiao, Z., & Wang, W. (2020). A 3D Printed Jet Mixer for Centrifugal Microfluidic Platforms. Micromachines, 11(7), 695. doi:10.3390/mi11070695
Zhang, Y., Xiang, J., Wang, Y., Qiao, Z., & Wang, W. (2019). A 3D printed centrifugal microfluidic platform for solid-phase-extraction and fluorescent detection of spilled oil in water. Microfluidics, BioMEMS, and Medical Microsystems XVII. doi:10.1117/12.2515719