Sandia National Laboratories has conducted research in chemical sensing and analysis of explosives for many years. Recently, that experience has been directed towards detecting mines and unexploded ordnance (UXO) by sensing the low-level explosive signatures associated with these objects. The authors focus has been on the classification of UXO in shallow water and anti-personnel/anti tank mines on land. The objective of this work is to develop a field portable chemical sensing system which can be used to examine mine-like objects (MLO) to determine whether there are explosive molecules associated with the MLO. Two sampling subsystems have been designed, one for water collection and one for soil/vapor sampling. The water sampler utilizes a f...
Civilian populations in many parts of the world are threatened by hidden land mines. Detection of th...
A large number of defense-related sites are contaminated with elevated levels of secondary explosive...
The explosive charge within a landmine is the source for a mixture of chemical vapours that form a d...
This paper briefly describes a prototype sensor for detecting land mines placed in shallow water. An...
Clearing large areas that are suspected of containing landmines is an expensive and time-consuming t...
Of all the buried landmine identification technologies currently available, sensing the chemical sig...
The concentration of the chemical vapors emanating from landmines is very low. The equilibrium vapor...
Includes bibliographical references (pages 333-349) and index.xxv, 363 pages :This timely book cover...
Abstract The detection of landmines by using available technologies is a time consuming, expensive...
Soils contaminated with explosives constitute a problem at DOE facilities and Army installations. Be...
The detection and removal of buried unexploded ordnance (UXO) and landmines is one of the most impor...
The detection of landmines by using available technologies is a time consuming, expensive and extrem...
The detection of landmines by using available technologies is a time consuming, expensive and extrem...
Here we present progress made in the development of an organic semiconductor based sensor system for...
Civilian populations in many parts of the world are threatened by hidden land mines. Detection of th...
Civilian populations in many parts of the world are threatened by hidden land mines. Detection of th...
A large number of defense-related sites are contaminated with elevated levels of secondary explosive...
The explosive charge within a landmine is the source for a mixture of chemical vapours that form a d...
This paper briefly describes a prototype sensor for detecting land mines placed in shallow water. An...
Clearing large areas that are suspected of containing landmines is an expensive and time-consuming t...
Of all the buried landmine identification technologies currently available, sensing the chemical sig...
The concentration of the chemical vapors emanating from landmines is very low. The equilibrium vapor...
Includes bibliographical references (pages 333-349) and index.xxv, 363 pages :This timely book cover...
Abstract The detection of landmines by using available technologies is a time consuming, expensive...
Soils contaminated with explosives constitute a problem at DOE facilities and Army installations. Be...
The detection and removal of buried unexploded ordnance (UXO) and landmines is one of the most impor...
The detection of landmines by using available technologies is a time consuming, expensive and extrem...
The detection of landmines by using available technologies is a time consuming, expensive and extrem...
Here we present progress made in the development of an organic semiconductor based sensor system for...
Civilian populations in many parts of the world are threatened by hidden land mines. Detection of th...
Civilian populations in many parts of the world are threatened by hidden land mines. Detection of th...
A large number of defense-related sites are contaminated with elevated levels of secondary explosive...
The explosive charge within a landmine is the source for a mixture of chemical vapours that form a d...