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211.
超高效液相色谱-串联质谱法同时检测溴代阻燃剂   总被引:1,自引:0,他引:1  
采用Acquity BEH C18色谱柱,以甲醇-乙腈混合液和水为流动相,辅以电喷雾正离子模式多反应监测(MRM)进行定性定量分析,建立了一种同位素稀释超高效液相色谱-串联质谱(UPLC-MS/MS)同时检测四溴双酚A(TBBPA)、三-(2,3-二溴丙基)异氰脲酸酯(TBC)和3种六溴环十二烷(HBCD)异构体的方法。水样通过固相萃取进行净化,回收率达到85.3%~96.1%。土壤和底泥样品经加速溶剂萃取后,采用酸性硅胶和中性硅胶柱进行净化,回收率达到81.5%~102.7%。该方法对TBBPA、TBC、α-HBCD、β-HBCD、γ-HBCD在水和土壤中的检测限分别为1.0、1.2、2.0、0.8、1.2 ng/L和0.10、0.12、0.20、0.08、0.12 ng/g。  相似文献   
212.
设计了可变坡度燃烧实验台,利用气体燃烧器模拟沟槽地形火蔓延中的火前锋。以丙烷为燃料,主要开展了不同坡度和高宽比(挡板高度与燃烧器宽度之比)条件下的气体燃烧实验。结果表明,坡度是影响火焰附壁的关键因素,挡板的存在限制了侧向卷吸从而加快火焰倾斜甚至附着。上坡火前锋存在一个发生火焰部分附着的临界坡度,该临界坡度不随挡板高宽比的变化而改变,该文的临界坡度为10°~15°。随坡度继续升高,高于另一临界坡度时,火焰完全附着在实验台面上,形成薄片状结构,发生火焰完全附着。附着火焰表现出明显的脉动性,随坡度的增大而增强,挡板的存在明显加剧了火焰脉动,而高宽比的变化对火焰脉动特性无显著影响。  相似文献   
213.
Oil gas explosion in long-narrow confined space is a typical unsteady combustion process. To study the reaction process, two experiment techniques are adopted in this research. One is planner laser induced fluorescence, which is used to achieve the transient measurement of free radicals in unsteady premixed combustion field. The other one is the spectral testing technique, which is used to measure the luminescence spectrum characteristics of oil gas combustion flame. The distribution of OH radical and CH radical at different positions in the combustion field, the common partition of deflagration flame structure under different oil gas concentrations, and the main luminescence spectra of radicals such as OH, CH, C2, C3, CO2, H2O and HCO are obtained. By comparing the above three aspects, the combustion reaction process of premixed mixture is revealed, driven by the coupling effect of chemical reaction and fluid flow in the process of explosion propagation. The process can be described briefly as follows. In the “outer flame zone”, large hydrocarbon molecules are mainly transformed to small molecules and free radicals by means of pyrolysis, dehydrogenation and oxidation. In the “inner flame zone”, carbon particles and combustion products produced and gathered after relevant reactions.  相似文献   
214.
To effectively prevent and mitigate explosion hazards and casualties, relief venting of flammable gas explosions has been applied in production processes in a broad variety of industries. This work conducted fully vented experiments to investigate the influence of venting membrane thickness, and partially vented experiments to investigate the influence of baffle blocking rate on the explosion characteristics of 9.5 vol% methane-air mixtures in linked vessels with a 0.5 m long vented duct. Results indicate that the membrane thickness and blocking rate for the two types of vented explosions significantly affected the explosion overpressure. The smaller the membrane thickness and blocking rate, the lower the explosion overpressure. Secondary explosions were observed in the vented duct through experiments and a weaker explosion flame appeared at a small blocking rate of 20%. With the further increase in the blocking rate, the flame became extremely weak, and no secondary explosions occurred. The overpressure evolution process at different positions in the explosion duct and secondary explosion phenomenon in the vented duct were investigated. This work could probably serve as an important reference for the selection of technical parameters of explosion venting in the practical industrial processes.  相似文献   
215.
The flame propagation parameters of aluminum nanopowder in the bulk layer were investigated. The aluminum nanopowder produced by the method of the electrical explosion of wires used in this study. The aluminum bulk layer was ignited by open flame, heated body, or electric spark. The flame propagation behavior is described as a two-stage process: 1) flame propagation over the surface layer and deep into the sample; 2) the thermal explosion mode. It was found that the type of ignition source influences the parameters of the first stage of the combustion. The minimum ignition energy for the aluminum nanopowder bulk layer was measured. The effect of the bulk layer inclination angle on flame propagation parameters was determined. The obtained results can be useful in assessing the fire hazard and organizing safe processes of industrial production during the use, storage, handling, and transportation of metal nanopowders.  相似文献   
216.
吴航  邱水来  宋磊  胡源 《火灾科学》2022,31(2):76-84
为满足5G电子封装材料的性能需求,将一定量的改性中空玻璃微珠(f-HGM)和氮化硼(f-BN)添加进加成型液体硅橡胶中制备了低介电、高导热且阻燃的硅橡胶复合材料。测试结果表明,添加了10份f-HGM和15份f-BN的复合材料的介电常数为2.68,介电损耗为0.008 16,显著低于纯硅橡胶,热导率为0.518 W/m·K,是纯硅橡胶的2.25倍。此外,复合材料的热稳定性得到了提升,pHRR和THR分别下降了55.3%和37.7%。通过气相和凝聚相分析发现,复合材料的气相热解产物浓度大幅降低,残炭的致密性和连续性得到显著提升。  相似文献   
217.
火焰原子吸收分光光度法测定生活垃圾堆肥产品中铅   总被引:3,自引:2,他引:1  
建立了硝酸-氢氟酸-高氯酸消解、火焰原子吸收分光光度法测定生活垃圾堆肥产品中铅的方法,试验了不同消解体系和共存离子对测定的影响.方法线性良好,检出限为20 mg/kg(按称取0.5 g试样消解定容至50 mL计算),对不同地域堆肥产品测定的RSD为2.6%~8.7%,加标回收率为89.0%~107%.  相似文献   
218.
《Environmental Forensics》2013,14(3):167-173
Due to numerous types of uncontrolled petroleum releases into the environment such as leaking storage tanks, spills, and improper disposal of petroleum wastes, there is a need for quicker, more efficient methods to determine the levels of soil contamination for site remediation. The portable field detectors used most often in preliminary site evaluations are the flame ionization detector (FID) and the photoionization detector (PID). This research explored the relationship between these two instruments in analysis of two clay soil sites contaminated with diesel fuel. As in previous research, a log-log linear correlation was found between the PID and FID instruments for diesel fuel-contaminated soil at each site (R 2 > 0.91). Also, the correlation factors (0.64 and 0.60) between the field instruments at each site were found to be similar. It was asserted that either field instrument can be used to delineate the diesel fuel contamination at that site based upon a previously calculated correlation between the two instruments, and an overall numerical correlation between the field instruments can be used at various sites of similar soil and contamination characteristics. The implementation of the relationships between these two instruments could facilitate and accelerate site characterization in the future.  相似文献   
219.
基于改进火焰原子吸收光谱的土壤六价铬分析   总被引:1,自引:0,他引:1  
针对分离和萃取环节,对火焰原子吸收光谱测定土壤中六价铬的方法加以改进。采用聚合氯化铝为絮凝剂、异戊醇为萃取剂,使三价铬和六价铬有效分离,并减少了测试干扰。考察了聚铝试剂用量和萃取液振荡时间对测定的影响,并将该方法与EPA 3060A方法和未改进的火焰原子吸收光谱法比较,表明改进后的方法能用于土壤中六价铬的测定。  相似文献   
220.
To identify a superior explosion suppressant for Al-Mg alloy dust explosion, the inhibition effects of Al(OH)3 and Mg(OH)2 powders on Al-Mg alloy explosion were investigated. A flame propagation suppression experiment was carried out using a modified Hartmann tube experimental system, an explosion pressure suppression experiment was carried out using a 20-L spherical explosion experimental system, and the suppression mechanisms of the two kinds of powders on Al-Mg alloy dust explosion were further investigated. The results demonstrate that by increasing the mass percentages of Al(OH)3 and Mg(OH)2, the flame height, flame propagation speed and explosion pressure of deflagration can be effectively reduced. When 80% Mg(OH)2 powder was added, the explosion pressure was reduced to less than 0.1 MPa, and the explosion was restrained. Due to the strong polarity of the surface of Mg(OH)2, agglomeration easily occurs; hence, when the added quantity is small, the inhibition effect is weaker than that of Al(OH)3. Because the Mg(OH)2 decomposition temperature is higher, the same quantity absorbs more heat and exhibits stronger adsorption of free radicals. Therefore, to fully suppress Al-Mg alloy explosion, the suppression effect of Mg(OH)2 powder is better.  相似文献   
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