Liu Yen-Shan, Ugaz Victor M, North Simon W, Rogers William J, Mannan M Sam
Department of Chemical Engineering, Texas A&M University, College Station, TX 77843, USA.
J Hazard Mater. 2007 Apr 11;142(3):662-8. doi: 10.1016/j.jhazmat.2006.08.050. Epub 2006 Aug 30.
The development of versatile systems capable of providing rapid, portable, and inexpensive detection of explosives and energetic compounds are critically needed to offer enhanced levels of protection against current and future threats to homeland security, as well as satisfying a wide range of applications in the fields of forensic analysis, emergency response, and industrial hazards analysis. Calorimetric techniques have been largely overlooked in efforts to develop advanced chemical analysis technology, largely because of limitations associated with the physical size of the instruments and the relatively long timescales (>30 min) required to obtain a result. This miniaturized calorimeter circumvents these limitations, thereby creating a first-of-its-kind system allowing thermal analysis to be performed in a portable format that can be configured for use in a variety of field operations with a significantly reduced response time (approximately 2 min). Unlike current explosives detectors, this system is based on calorimetric techniques that are inherently capable of providing direct measurements of energy release potential and therefore do not depend on prior knowledge of familiar compounds.
迫切需要开发能够快速、便携且廉价地检测爆炸物和含能化合物的通用系统,以增强对当前和未来国土安全威胁的防护水平,并满足法医分析、应急响应和工业危害分析等领域的广泛应用需求。在开发先进化学分析技术的过程中,量热技术在很大程度上被忽视了,这主要是由于仪器的物理尺寸限制以及获得结果所需的相对较长时间尺度(>30分钟)。这种小型量热仪克服了这些限制,从而创建了一种首创的系统,允许以便携式形式进行热分析,该系统可配置用于各种现场操作,响应时间显著缩短(约2分钟)。与当前的爆炸物探测器不同,该系统基于量热技术,本质上能够直接测量能量释放潜力,因此不依赖于对常见化合物的先验知识。