Lubrano Adam L, Field Christopher R, Newsome G Asher, Rogers Duane A, Giordano Braden C, Johnson Kevin J
Nova Research, Inc., 1900 Elkin St., Suite 230, Alexandria, VA 22308, United States.
US Naval Research Laboratory, Naval Technical Center for Safety and Survivability, Code 6180, 4555 Overlook Ave SW, Washington, DC 20375, United States.
J Chromatogr A. 2015 May 15;1394:154-8. doi: 10.1016/j.chroma.2015.03.006. Epub 2015 Mar 9.
An analytical method for establishing calibration curves for the quantitation of pentaerythriol tetranitrate (PETN) from sorbent-filled thermal desorption tubes by gas chromatography with electron capture detection (TDS-GC-ECD) was developed. As PETN has been demonstrated to thermally degrade under typical GC instrument conditions, peaks corresponding to both PETN degradants and molecular PETN are observed. The retention time corresponding to intact PETN was verified by high-resolution mass spectrometry with a flowing atmospheric pressure afterglow (FAPA) ionization source, which enabled soft ionization of intact PETN eluting the GC and subsequent accurate-mass identification. The GC separation parameters were transferred to a conventional GC-ECD instrument where analytical method-induced PETN degradation was further characterized and minimized. A method calibration curve was established by direct liquid deposition of PETN standard solutions onto the glass frit at the head of sorbent-filled thermal desorption tubes. Two local, linear relationships between detector response and PETN concentration were observed, with a total dynamic range of 0.25-25ng.
开发了一种分析方法,用于通过带电子捕获检测的气相色谱法(TDS-GC-ECD)从填充吸附剂的热脱附管中建立季戊四醇四硝酸酯(PETN)定量的校准曲线。由于已证明PETN在典型的气相色谱仪条件下会发生热降解,因此会观察到对应于PETN降解产物和分子PETN的峰。通过具有流动大气压余辉(FAPA)电离源的高分辨率质谱法验证了与完整PETN相对应的保留时间,该电离源能够对洗脱气相色谱的完整PETN进行软电离并随后进行精确质量鉴定。将气相色谱分离参数转移到传统的GC-ECD仪器上,在该仪器上进一步表征并最小化了分析方法引起的PETN降解。通过将PETN标准溶液直接液体沉积到填充吸附剂的热脱附管头部的玻璃料上,建立了方法校准曲线。观察到检测器响应与PETN浓度之间存在两个局部线性关系,总动态范围为0.25-25ng。