Environmental Monitoring

Environmental Monitoring
Author: Ema Ekundayo
Publisher: BoD – Books on Demand
Total Pages: 542
Release: 2011-11-04
Genre: Technology & Engineering
ISBN: 9533077247

"Environmental Monitoring" is a book designed by InTech - Open Access Publisher in collaboration with scientists and researchers from all over the world. The book is designed to present recent research advances and developments in the field of environmental monitoring to a global audience of scientists, researchers, environmental educators, administrators, managers, technicians, students, environmental enthusiasts and the general public. The book consists of a series of sections and chapters addressing topics like the monitoring of heavy metal contaminants in varied environments, biolgical monitoring/ecotoxicological studies; and the use of wireless sensor networks/Geosensor webs in environmental monitoring.

Green Electronics

Green Electronics
Author: Cristian Ravariu
Publisher: BoD – Books on Demand
Total Pages: 254
Release: 2018-06-20
Genre: Technology & Engineering
ISBN: 1789233046

The Green Electronics book is intended to stimulate people's thinking toward the new concepts of an environment-friendly electronics - the main challenge in the future. The book offers multiple solutions to push the classical electronic industry toward green concepts, aided by nanotechnologies, with revolutionary features that provide low power consumption in electronics, use biomaterials for integrated structures, and include environmental monitoring tools. Based on organic semiconductors/insulators without toxic precursors, green electronic technologies launched promising devices like OLED, OTFT, or nano-core-shell transistors. The Green Electronics book successfully presents the recent directions collected worldwide and leaves free space for continuing year by year with new subtopics.

Air Monitoring by Spectroscopic Techniques

Air Monitoring by Spectroscopic Techniques
Author: Markus W. Sigrist
Publisher: John Wiley & Sons
Total Pages: 564
Release: 1994-03-31
Genre: Technology & Engineering
ISBN: 9780471558750

Leading experts discuss the characteristics, advantages, limitations and future aspects of modern spectroscopic techniques for environmental analysis. Demonstrates how these methods can be applied to trace gas detection and assessment. Concentrates on the latest techniques--both laser and non-laser based--which offer advantages for air pollution and gas monitoring as opposed to more conventional methods. Numerous examples of applications illustrate the potential of the techniques backed up by cutting-edge information and representative data.

The Proceedings of the International Workshop on Detecting Environmental, Industrial and Biomedical Signals, Bari, Italy, 11-12 October 2002

The Proceedings of the International Workshop on Detecting Environmental, Industrial and Biomedical Signals, Bari, Italy, 11-12 October 2002
Author: Mauro De Palma
Publisher: World Scientific
Total Pages: 232
Release: 2003-01-01
Genre: Science
ISBN: 9789812704245

This volume contains reports on state-of-the-art studies relevant to signal detection in important scientific areas such as environmental, industrial and biomedical monitoring. Critical issues in the fields of material development for advanced sensing applications, nuclear techniques using neutrons for humanitarian demining, sensors for biomedical, industrial and environmental monitoring as well as solid state detectors for biomedical applications are confronted with the cross-disciplinary approach of physicists, chemists and biologists.

Laser Chemistry

Laser Chemistry
Author: Helmut H. Telle
Publisher: John Wiley & Sons
Total Pages: 516
Release: 2007-04-30
Genre: Science
ISBN: 9780470059401

Laser Chemistry: Spectroscopy, Dynamics and Applications provides a basic introduction to the subject, written for students and other novices. It assumes little in the way of prior knowledge, and carefully guides the reader through the important theory and concepts whilst introducing key techniques and applications.

Laser Spectroscopy for Sensing

Laser Spectroscopy for Sensing
Author: Matthieu Baudelet
Publisher: Elsevier
Total Pages: 601
Release: 2014-02-15
Genre: Technology & Engineering
ISBN: 085709873X

Laser spectroscopy is a valuable tool for sensing and chemical analysis. Developments in lasers, detectors and mathematical analytical tools have led to improvements in the sensitivity and selectivity of spectroscopic techniques and extended their fields of application. Laser Spectroscopy for Sensing examines these advances and how laser spectroscopy can be used in a diverse range of industrial, medical, and environmental applications. Part one reviews basic concepts of atomic and molecular processes and presents the fundamentals of laser technology for controlling the spectral and temporal aspects of laser excitation. In addition, it explains the selectivity, sensitivity, and stability of the measurements, the construction of databases, and the automation of data analysis by machine learning. Part two explores laser spectroscopy techniques, including cavity-based absorption spectroscopy and the use of photo-acoustic spectroscopy to acquire absorption spectra of gases and condensed media. These chapters discuss imaging methods using laser-induced fluorescence and phosphorescence spectroscopies before focusing on light detection and ranging, photothermal spectroscopy and terahertz spectroscopy. Part three covers a variety of applications of these techniques, particularly the detection of chemical, biological, and explosive threats, as well as their use in medicine and forensic science. Finally, the book examines spectroscopic analysis of industrial materials and their applications in nuclear research and industry. The text provides readers with a broad overview of the techniques and applications of laser spectroscopy for sensing. It is of great interest to laser scientists and engineers, as well as professionals using lasers for medical applications, environmental applications, military applications, and material processing. - Presents the fundamentals of laser technology for controlling the spectral and temporal aspects of laser excitation - Explores laser spectroscopy techniques, including cavity-based absorption spectroscopy and the use of photo-acoustic spectroscopy to acquire absorption spectra of gases and condensed media - Considers spectroscopic analysis of industrial materials and their applications in nuclear research and industry

Instrument Development for Atmospheric Research and Monitoring

Instrument Development for Atmospheric Research and Monitoring
Author: Jens Bösenberg
Publisher: Springer Science & Business Media
Total Pages: 420
Release: 2013-04-17
Genre: Science
ISBN: 3662034050

Jens Bosenberg Max-Planck-Institut fur Meteorologie, Bundesstr. 55, D-20146 Hamburg, Germany TESLAS, which stands for Tropospheric Environmental Studies by Laser Sounding, was formed in November 1987 as a subproject of EUROTRAC to enhance the measurement capabilities for vertical profiling of ozone in the troposphere by means of laser remote sensing. For studies of several atmospheric processes related to the formation and redistribution of photo-oxidants there was a clear need for measuring extended time series with appropriate vertical and temporal resolution. These could not be obtained by conventional in situ techniques, at least not with affordable effort, so remote sensing appeared to be the best way to obtain the required information. At the beginning of the subproject, some Differential Absorption Lidar (DIAL) systems for measuring the vertical distribution of ozone already existed, but their use was restricted to very few laboratories and very few measurement campaigns, since the instruments were highly complex, rather unreliable, and required extensive efforts for maintenance and operation by skilled scientists. In addition, the accuracy of these measurements under a variety of meteorological conditions was not really well established. The main tasks within TESLAS therefore were to develop fully the DIAL-methodology for remote sensing of tropospheric ozone, and to develop instruments which are accurate, reliable, easy to operate, and suitable for field deployment or airborne operation.