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应用GC/AED技术分离检测主流烟气粒相物中含氮成分 被引量:5
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作者 王维生 谈宇 +2 位作者 李钢 郑赛晶 刘百战 《广西大学学报(自然科学版)》 CAS 北大核心 2013年第3期544-549,共6页
应用气相色谱法/原子发射检测器(GC/AED)分离检测主流烟气粒相物中的含氮碱性成分。3种类型烟叶(典型烤烟、白肋烟和香料烟)、不同香型烤烟烟叶和成品卷烟经过吸烟机抽吸后,收集主流烟气粒相物。粒相物经过连续萃取和反萃取分离,得到含... 应用气相色谱法/原子发射检测器(GC/AED)分离检测主流烟气粒相物中的含氮碱性成分。3种类型烟叶(典型烤烟、白肋烟和香料烟)、不同香型烤烟烟叶和成品卷烟经过吸烟机抽吸后,收集主流烟气粒相物。粒相物经过连续萃取和反萃取分离,得到含氮的碱性成分,进行GC/AED检测。结果表明,GC/AED能够检测出主流烟气中吡嗪类、吡啶类和烟草微量生物碱类成分。比较了不同样品含氮成分的异同,结果表明,白肋烟烟叶主流烟气粒相物中含氮成分较多,含量最高,烤烟和香料烟烟叶主流烟气粒相物中含氮成分相对较少,含量较低;不同香型烤烟烟叶主流烟气粒相物中主要含氮成分基本类似;不同品牌卷烟主流烟气粒相物中主要含氮成分基本类似,烤烟型卷烟假木贼碱相对百分含量较高(3.84%~4.62%),而混合型卷烟降烟碱相对百分含量较高(5.22%)。 展开更多
关键词 GC AED 主流烟气 含氮成分 粒相物
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气相色谱-原子发射光谱联用测定DNAN的分析方法研究 被引量:1
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作者 罗西 苏鹏飞 +4 位作者 刘红妮 张皋 胡银 王歌扬 陈曼 《火工品》 CAS CSCD 北大核心 2019年第2期54-57,共4页
利用气相色谱-原子发射光谱(GC-AED)对 DNAN 进行了定量和元素比例式推断的方法研究。以二苯胺为外标物,通过二苯胺的 C 元素标准曲线定量 DNAN 的 C 元素,进而对 DNAN 的含量进行测定。同时,将乙酰苯胺作为内标物,通过不同的元素通道... 利用气相色谱-原子发射光谱(GC-AED)对 DNAN 进行了定量和元素比例式推断的方法研究。以二苯胺为外标物,通过二苯胺的 C 元素标准曲线定量 DNAN 的 C 元素,进而对 DNAN 的含量进行测定。同时,将乙酰苯胺作为内标物,通过不同的元素通道定量测定 DNAN 的所含元素,进而推断 DNAN 的元素比例式。研究表明 GC-AED 法具有较好的准确度和精密度,能够解决标准样品缺乏带来的定量检测难题。此外,推断得到元素比例式中的各原子比和理论分子式中的各原子比基本一致,证明 GC-AED 法用于推断元素比例式可行。 展开更多
关键词 2 4-二硝基苯甲醚(DNAN) 气相色谱-原子发射光谱 定量 元素比例式推断
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Wear-resistant Ag-MAX phase 3D interpenetrating-phase composites:Processing,structure,and properties 被引量:2
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作者 Yu Guo Xi Xie +11 位作者 Zengqian Liu Longchao Zhuo Jian Zhang Shaogang Wang Qiqiang Duan Qing Jia Dake Xu Weihai Xue Deli Duan Filippo Berto Zhefeng Zhang Rui Yang 《Nano Research》 SCIE EI CSCD 2024年第2期806-819,共14页
Electrical contact materials are generally Ag-or Cu-based composites and play a critical role in ensuring the reliability and efficiency of electrical equipments and electronic instruments.The MAX(M is an early transi... Electrical contact materials are generally Ag-or Cu-based composites and play a critical role in ensuring the reliability and efficiency of electrical equipments and electronic instruments.The MAX(M is an early transition metal,A is an element from III or IV main groups,and X is carbon or/and nitrogen)phase ceramics display a unique combination of properties and may serve as an ideal reinforcement phase for electrical contact materials.The biological materials evolved in nature generally exhibit three-dimensional(3D)interpenetrating-phase architectures,which may offer useful inspiration for the architectural design of electrical contact materials.Here,a series of bi-continuous Ag-Ti_(3)SiC_(2) MAX phase composites with high ceramic contents exceeding 50 vol.%and having micron-and ultrafine-scaled 3D interpenetrating-phase architectures,wherein both constituents were continuous and mutually interspersed,were exploited by pressureless infiltration of Ag melt into partially sintered Ti_(3)SiC_(2) scaffolds.The mechanical and electrical properties as well as the friction and wear performance of the composites were investigated and revealed to be closely dependent on the ceramic contents and characteristic structural dimensions.The composites exhibited a good combination of properties with high hardness over 2.3 GPa,high flexural strength exceeding 530 MPa,decent fracture toughness over 10 MPa·m^(1/2),and good wear resistance with low wear rate at an order of 10^(-5)mm^(3)/(N·m),which were much superior compared to the counterparts made by powder metallurgy methods.In particular,the hardness,electrical conductivity,strength,and fracture toughness of the composites demonstrated a simultaneous improvement as the structure was refined from micron-to ultrafine-scales at equivalent ceramic contents.The good combination of properties along with the facile processing route makes the Ag-Ti_(3)SiC_(2)3D interpenetrating-phase composites appealing for electrical contact applications. 展开更多
关键词 three-dimensional(3D)interpenetrating-phase architecture Ag-MAX(M=early transition metal a=element from III or IV main groups and X=carbon or/and nitrogen)phase composites melt infiltration electrical contact materials mechanical
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