发烟
- Smoke;fuming
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本工作以四氢呋喃为原料、发烟硫酸为催化剂合成了聚四甲撑二醇(PTMG)。
The synthesis of polyoxytetramethylene glycol ( PTMG ) from tetrahydrofuran was investigated , using fuming sulfuric acid as catalyst .
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本工作以固体磺酸代替液体发烟硫酸作为催化剂,研究了温和条件下环己酮肟的液相Beckmann重排反应,考察了不同种类的固体磺酸催化体系。
In this work , we explored the liquid-phase Beckmann rearrangement of cyclohexanone oxime under mild condition by using solid sulfonic acid instead of liquid fuming sulfuric acid as catalysts .
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C4钢制发烟硝酸吸收塔焊接工艺
Welding procedure of fuming nitric acid absorber made of c_4 steel
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纳米SiO2对复合碳粉发烟剂性能的影响
Effect of Nano-SiO_2 on Performance of Complex Carbon Powder Smoke Composition
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HC基新型抗红外发烟剂研究
New Type of Anti infrared Smoke Agent Based upon Halogenated Organic Compound
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结果表明:润滑剂等可燃性加工助剂可使PVC燃烧时显著发烟;
The experimental result shows that inflammable process agent such as lubricants can make PVC smoke remarkably during inflaming ;
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CVI反应器气体流动可视化发烟系统
A smoke generator for use in fluid flow visualization in CVI reactors
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纳米Fe3O4的制备及其对发烟剂性能的影响
Preparation of Nano Fe _3O_4 and its Effect on the Performance of Smoke Composition
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试验研究了添加纳米SiO2的复合碳粉发烟剂的分散和干扰性能。
Effects of nano-SiO_2 on the dispersibility and infrared interference performance of complex carbon powder smoke composition were studied .
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加入无机阻燃剂可以抑制HIPS共混材料燃烧,明显降低发烟量;
The inorganic flame retardants could inhibit the burning of HIPS blending materials and significantly reduced the smoking volume .
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通过FTIR光谱仪对所制备的发烟剂进行了燃烧实验,得出了烟幕及固体残渣的红外光谱图。
It got infrared spectrum of smoke and sol id remains through smoke agent prepared carrying on combustion experiment using FTIR spectrometer .
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根据点污染源的微风扩散模式,利用VISUALBASIC编制了发烟剂大气污染物的浓度预测软件,用于计算污染物在下风向不同距离处的落地浓度,并对计算结果进行简单的评价分析。
Based on fine breeze model , atmosphere pollution prediction software is developed with Visual Basic to calculate the ground concentrations of smokes atmosphere pollutants at different downwind distances , and assess their impact upon the environment .
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CaCO3不利于阻燃,但利于降烟,发烟时间也得到一定程度的推迟。
CaCO_3 is disadvantageous to the flame retardancy of flexible PVC , but it is of benefit to smoke suppression .
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探索了用富碳有机物W作为发烟物的发烟剂配方,该配方对8-14μm的红外透过率可降到38%以下。
Smoke composition with rich carbon organic matter as the smoke generator was studied , infrared transmittance of this formula can be decreased below 38 % in spectral region of 8 ~ 14 μ m.
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传统型卤化物/Sb2O3阻燃剂燃烧时发烟量大,产生大量腐蚀性和有毒气体,使其应用受到限制;
Because of the heavy smoke haze and the corrosive and toxic gases emitted from halide / Sb2O3 during its burning process , the application of this conventional flame-retardant was strictly restricted .
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根据影响规律设计了新型发烟剂,其在远红外波段的遮蔽能力优于制式HC发烟剂。
On the basis of above regularities , a new smoke agent is prepared , which has better extinction capability than the ordinary one at far infrared wave-bond .
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研究了以大庆馏分油为原料,以发烟硫酸为磺化剂制备天然石油磺酸盐(NPS)的工艺。
The preparation process of natural petroleum sulfonates ( NPS ) was studied making of Daqing distillate oil as feed stock and oleum as sulfonated agent .
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对发烟硫酸浓度、发烟硝酸和DAP摩尔比、硝化温度、萃取方式等多个方面对反应的影响进行了研究。
The effect of Oleum concentration , Molar ratio of fuming nitric acid with DAP , nitrification temperature and extraction methods to the reaction were been studied .
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结果表明,使用Sb-A复合阻燃剂后,软PVC的氧指数可达30.8,同时发烟量只相当于使用超细Sb2O3时的77%。
It showed that the limiting oxygen index ( LOI ) of plasticized PVC was as high as 30.8 , at the same time , the quantity of smoke was reduced to 77 % .
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流场照片表明其发烟效果很好,能满足CVI反应器内气体流场的显示研究。
The flow field photographs demonstrate the effectiveness of the smoke generator , and the color , density and quantity of the smoke are very good for application to flow visualization studies for CVI reactors .
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在此基础上优选了两种HC基的新型抗红外发烟剂,给出了相应的红外消光系数测定数据与傅立叶变换红外光谱。
On the basis of the experiments , two kinds of new and effective anti infrared smoke agents based upon HC were selected and the corresponding infrared extinction coefficients and the Fourier transform infrared spectra were listed .
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以废聚苯乙烯(WPS)泡沫为原料,采用浓硫酸和发烟硫酸两种磺化方法制备性能良好的砼减水剂。
The PS water reducing agent , which is very effective for concrete , has been made from waste poly styrene ( WPS ) by sulfuric acid of fuming sulfuric acid sulfonation process .
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60g可膨胀石墨发烟剂对3mm和8mm波单程最大衰减值均大于10dB,干扰时间约为20s。
The unilateralism maximum attenuation to 3 mm and 8 mm wave of 60 g expansive graphite are higher than 10 dB , the interference time is about 20 s.
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以发烟硫酸-高氯酸为催化剂,通过四氢呋喃的阳离子开环聚合合成了窄分子量分布的聚四氢呋喃(PTHF)。
Polytetrahydrofuran ( PTHF ) with narrow molecular mass distribution was prepared by cationic ring-opening polymerization of tetrahydrofuran using H_2SO_4 · SO_3-HClO_4 system as a catalyst .
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工业上用三氧化硫(SO3)与水反应制备硫酸,如果超越了饱合点则会形成发烟硫酸,可用于制备某些有机试剂。
It is made industrially by dissolving sulfur trioxide ( SO3 ) in water , sometimes beyond the saturation point to make oleum ( fuming sulfuric acid ), used to make certain organic chemicals .
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通过实验测试,发烟剂质量浓度为9.1g,10.6μm激光透过率T可以降低到30%。
According to the test , for the mass of the smoke agent is 9.1g , the laser transmittance is decreased below 30 % in 10.6 μ m band .
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在工艺条件为催化剂用量7·0mmol,反应温度473K,反应压力3·5MPa,反应时间3h和发烟硫酸中SO3含量50%时,甲烷转化率可达48·5%,目的产物甲醇收率为41·5%。
The maximum methane conversion of 48.5 % and methanol yield of 41.5 % were obtained under the conditions of 7.0 mmol catalyst , methane pressure of 3.5 MPa , reaction temperature of 473 K , reaction time of 3 h , and 50 % sulfur trioxide concentration .
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结果表明:不同插层物质的可膨胀石墨对烟幕红外、毫米波衰减性能影响很大,其中,分别以CH3COOH、H2SO4、HNO3插层的可膨胀石墨制备的发烟剂衰减效果较好。
Results show that the expansible graphite of differently inserted substances has significant effect on the attenuation property of smoke to IR and MMW ; the attenuation effect of smoke composition prepared by expansible graphite which chooses CH_3COOH , H_2SO_4 and HNO_3 as inserted substances respectively is preferable .
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本文按磺化反应原理设计了一套以十二烷基苯作为原料,以65%的发烟硫酸蒸发得到的SO3气体作为磺化剂的磺化反应实验装置,并对工艺条件进行了研究。
An experiment plant for sulfonation reaction was designed in this paper . In accordance with the principle of sulfonation , the dodecylbenzene was used as the material and SO 3 vaporized from 65 % fuming sulfuric acid as the sulfonating agent , and the art conditions were studied also .
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爆炸分散型复合干扰发烟剂使用技术研究
Studies on the Application Techniques of Explosion-dispersed Composite Interfering Smoke Agents