Showing posts with label Lina Ge. Show all posts
Showing posts with label Lina Ge. Show all posts

Monday, March 2, 2015

Abstract-Optical characterization of the principal hydrocarbon components in natural gas using terahertz spectroscopy



Energy Fuels, Just Accepted Manuscript
DOI: 10.1021/ef5028235
Publication Date (Web): March 2, 2015
Copyright © 2015 American Chemical Society
http://pubs.acs.org/doi/abs/10.1021/ef5028235?journalCode=enfuem
A rapid technique is necessary to detect the natural gas which is a more and more significant fuel resource in modern industry. Terahertz (THz) technique was employed in this research to detect the principal hydrocarbon components of natural gas including methane, ethane and propane. Two- and three-component mixtures were measured by THz setup, respectively. The amplitude ratio and time delay deviation of THz peaks between samples and reference were calculated. Phase projection pictures were obtained between the component concentrations and the amplitude ratio as well as time deviation. The phase figures evidently reflected the concentration dependent THz response and a greatly different distribution was located in the whole phase projection area. In addition, back propagation artificial neural networks method was utilized for the quantitative determination of components concentration and total pressure, and the correlation coefficient of prediction set was proved to be 0.9859. Therefore, THz technique can satisfy the increasing need of the rapid and efficient detection in natural gas industry.

Monday, January 12, 2015

Abstract-Water adsorption dynamics into active carbon probed by terahertz spectroscopy



Honglei Zhan,   Shixiang Wu,   Rima Bao,   Kun Zhao,   Lizhi Xiao,  Lina Ge and   Hongjie Shi  
RSC Adv., 2015, Accepted Manuscript

DOI: 10.1039/C4RA14730H
Received 17 Nov 2014, Accepted 12 Jan 2015
First published online 12 Jan 2015

http://pubs.rsc.org/en/content/articlelanding/2015/ra/c4ra14730h#!divAbstract


It is vital to characterize the adsorption dynamics in oil-gas reservoirs and pollution control industry. Terahertz (THz) spectroscopy was used to study the adsorption of the water molecules into active carbons. The absorbance at selected frequencies and the first principal component scores over the whole THz range were related to the corresponding time lengths. The collective tendency expressly tracked the dynamics of water adsorbed into active carbon pores. Therefore, THz technique can be used as a promising tool to monitor the adsorption issue in petroleum and environment fields.