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1.
为提高膨胀型阻燃剂的阻燃性能与耐久性能,在水性聚氨酯树脂、聚磷酸铵、聚丙烯酰胺和磷酸铝的基础配方上,通过加入不同掺量的尿素以及不同掺量的硅油,对此阻燃体系配方进行耐久性优化设计,制备出尿素-硅油改性且具有一定耐水性的膨胀型阻燃涂层。通过锥形量热仪测试分析表征其阻燃性能来确定尿素-硅油的最佳掺量;并测量阻燃涂层的水接触角。结果表明:当掺加2 wt%的尿素时样品的阻燃效果最佳,掺量过多时会降低水接触角,影响样品耐水性;当掺加0.5 wt%的硅油时,样品的阻燃效果最佳,且随着掺量增多水接触角逐渐增大。  相似文献   

2.
为了制备高热稳定性的三相泡沫,对白云母/硅微粉疏水改性。采用十六烷基三甲氧基硅烷(HTEOS)为改性剂,以接触角、粒度分析、FTIR为表征。在合成蛋白泡沫中按比例添加粉体制备三相泡沫,以自主设计可视化油池进行热稳定性试验并与两相泡沫对比。结果表明:改性白云母的性质为“两亲”,改性硅微粉表现为疏水;三相泡沫热稳定性高于两相泡沫,三相泡沫中,利用改性白云母制备的三相泡沫热稳定性最优,覆盖至破灭时间为1 905 s,而改性硅微粉制备的三相泡沫热稳定性不足,覆盖至破灭时间仅为983 s。  相似文献   

3.
Coal dust explosion is easy to happen in the process of coal pulverization. In order to reduce the risk of coal dust explosion and promote the safety of coal chemical industry, surface modification of the ammonium dihydrogen phosphate (ADP) explosion suppressant was performed with methyl hydrogen-containing silicone oil to obtain modified ammonium dihydrogen phosphate (MADP) powder. The explosion suppression and hydrophobic properties of MADP were tested. The experimental results show that after surface modification, MADP overcomes the defect that the traditional ammonium dihydrogen phosphate explosion suppressant is easily affected by moisture, which results in agglomeration; further, MADP has little or no solubility in water and has excellent hydrophobic properties. After surface modification, MADP has better thermal stability and can withstand higher ambient temperatures. MADP can significantly increase the minimum ignition energy, thus reducing the possibility of combustion and explosion. With the increase in the mass concentration of the explosion suppressant, the maximum explosion pressure gradually decreases and delays. Compared with ADP, MADP has better explosion suppression characteristics and can quickly and efficiently suppress explosion.  相似文献   

4.
改性氢氧化钙粉体的研制及其特性   总被引:1,自引:0,他引:1  
介绍了作为氯气清除剂的粉体应具有的特性,并对粉体的研制方法进行了简单叙述。同时,对改性氢氧化钙粉体特性作了详细介绍。不难看出,研制的改性氢氧化钙粉体具有高度活性,与氯气捕消器配合使用,将成为氯气泄漏时的抢险措施  相似文献   

5.
为了探究石墨粉 (GP) 与聚磷酸铵 (APP) 膨胀阻燃体系对硅橡胶复合材料的阻燃及抑烟特性的影响,采用锥形量热仪 (CCT)、热重分析仪 (TG) 及极限氧指数测试仪 (LOI) 对阻燃硅橡胶复合材料进行表征。研究结果表明:与单独添加膨胀阻燃剂APP的阻燃硅橡胶相比,添加GP/APP膨胀阻燃体系可有效提升燃烧过程中形成的膨胀碳层的致密度,降低阻燃硅橡胶复合材料的热释放速率及总烟释放量,提高阻燃硅橡胶复合材料高温阶段的热稳定性,提升阻燃硅橡胶复合材料的燃烧成炭率和质量保持率; 使阻燃硅橡胶复合材料的氧指数值增大。  相似文献   

6.
废硅橡胶二次裂解渣制多孔吸声材料的研究   总被引:1,自引:0,他引:1  
采用吸声材料是吸声、降噪、改善声环境的有效手段。本文研究用废旧硅橡胶二次裂解渣和粘结剂为主要原料,采用压制成型的工艺,在常温下制成一种多孔吸声材料。主要考虑残渣里的硅烷类油份和所用发泡剂对试件吸声性能的影响。试验结果表明:所制吸声材料能达到一定的吸声性能,具有对环境无污染,施工方便等优点;且分离出硅烷类油份的灰渣所制试件比原废旧硅橡胶裂解残渣的吸声效果好很多,尤其在共振频率1250Hz下达到吸声峰值0.87。FP-186植物性水泥发泡剂相比FP-180动物性水泥发泡剂对试件吸声性能有所改善,使吸声特性曲线向低频方向移动。  相似文献   

7.
Coal dust explosion occurs easily in the coal chemical industry. To ensure safety in industrial production, NaY zeolite was used as carrier modified with Fe ions and combined with ammonium polyphosphate (APP) to prepare a novel composite suppressant for coal dust explosion. The explosion suppression performance of novel APP/NaY–Fe suppressant was investigated by flame propagation inhibition experiments. The results show that Fe ion modification can effectively improve the explosion suppression performance. By increasing content, the explosion suppression performance of the explosion suppressant increases. The maximum explosion pressure Pmax of coal dust drops to 0.13 MPa when 50 wt% explosion suppressants were added, and the coal dust explosion cannot continue to expand. Complete suppression of explosion could be achieved by adding 66 wt% explosion suppressants. Combined with XRD, SEM and TG results, the explosion suppression mechanism was proposed. The novel explosion suppressant has high thermal stability, good dispersity and its explosion suppression components distribute uniformly. It shows good explosion suppression performance by the synergistic effect among explosion-suppression components.  相似文献   

8.
氯化法处理医院废水的研究   总被引:2,自引:0,他引:2  
介绍了次氯酸钠法和液氯法2种目前常用的处理医院废水的方法.对2家医院的废水处理过程进行了测试及实验研究.结果表明,这2家医院的废水处理后细菌总数和余氯量未达到国家规定的排放标准.主要原因是加氯量不精确,加氯后的停留时间不足,不能有效杀死废水中的病菌.对加氯量和停留时间的实验研究表明,每吨医院废水中次氯酸钠和液氯的最佳投入量分别为90 g和9 g,加氯后的停留时间不少于60min.  相似文献   

9.
利用高效吸油材料处理溢油事故是一种简单有效的方法。针对现有吸油材料吸油效率较低、制备方式复杂的问题,采用层层自组装技术,将钠基蒙脱土填充的涂层构筑于软质聚氨酯泡沫表面,经过后续疏水改性处理,制备了具有超疏水超亲油表面的聚氨酯泡沫材料。材料测试结果表明:组装4层涂层改性的聚氨酯泡沫水接触角达到135°,对不同种类油品的吸油重量能达到自身重量的30~60倍;油水混合物中的吸油效果也显示其能有效处理水面、水下油污。宏观燃烧实验测试结果表明制备的改性聚氨酯泡沫具有良好的阻燃性能。采用上述简单易行的制备技术制得的吸油材料,可成功应用于油水分离,具有良好的应用前景。  相似文献   

10.
为改善普通碳酸氢钠干粉灭火剂(BC干粉)抑制食用油火时抗复燃性较差的不足,选择聚磷酸铵、溴化钾和一水合草酸钾作为添加剂,与普通BC干粉灭火剂混合配制成复合干粉灭火剂。通过全尺度模拟试验研究各种复合粉体对食用油火的灭火效果及其抗复燃性能。结果证明,普通BC干粉与一水合草酸钾复配而成的复合粉体针对食用油火的灭火效果和抗复燃性能在几种粉体中最佳。根据试验数据和各粉体的理化特性,对4种粉体的灭火效果差异作了详细的分析和讨论。  相似文献   

11.
甲烷氧化菌液在进入煤储层后会产生较高的毛管压力,且随着甲烷氧化菌降解煤层瓦斯的进行,毛管压力逐渐增大,容易引起水锁伤害。采取向甲烷氧化菌菌液加入复配表面活性剂以期减缓菌液造成的水锁伤害,通过测试所选表面活性剂十二烷基苯磺酸钠(SDBS)与椰子油脂肪酸二乙醇酰胺(CDEA)对菌液表面张力的降低程度来了解表面活性剂与菌液的配伍比例,并对含复配表面活性剂的甲烷氧化菌对煤层甲烷的降解进行研究。研究结果表明:表面活性剂与菌液最佳配伍比例为SDBS∶CDEA为1∶4,最佳配伍浓度为0.5%,且表面活性剂在菌液中稳定性较好;菌液中添加复配表活剂20 mL,在混合气体压力为2 MPa、氧浓度为 1%、温度为 30 ℃时,添加复配表面活剂菌液的甲烷最终降解率为51.65%,比未添加复配表面活剂菌液高出11%左右。因此,向甲烷氧化菌菌液中添加复配表面活性剂具有很好的适用性。  相似文献   

12.
测试了聚四氟乙烯(PTFE)复合膜材料的透湿性和对氯化钠气溶胶、粉末状微生物枯草芽孢杆菌黑色变种(ATCC9372)、液体中脊髓灰质炎病毒疫苗株的防护性能。结果表明,该复合膜材料有良好的透湿性能,同时对氯化钠气溶胶、粉末状和液体中的微生物均具有良好的防护性能。  相似文献   

13.
Sodium is the main cooling medium in the circuit of fourth-generation nuclear reactors, and its leakage constitutes a severe fire hazard because of its high chemical activity. In this study, expandable graphite (EG), which is a traditional sodium fire-extinguishing agent, was modified with zinc borate (ZB) as an intercalator, and the modified EGZB was characterized. Moreover, the effectiveness of the modified EGZB in extinguishing sodium fires was tested using a self-developed fire-extinguishing experimental device. This study's results indicated that EG, EGZB had a smaller particle size, higher thermal stability, higher fire-extinguishing speed, and lower powder mass consumption than EG. During the fire-extinguishing process, ZnO decomposed by ZB captured free radicals and inhibited the combustion reaction. Furthermore, B2O3 was adsorbed on the surface of the EG layer, which strengthened covering and asphyxiation. The findings of this study provide crucial information for effectively controlling fires caused by active metals and metallo-organic compounds.  相似文献   

14.
Among the factors influencing dust explosion, the particle size distribution (PSD) is both one of the most important and complex to consider. For instance, it is commonly accepted that the explosion sensitivity increases when the particle size decreases. Such an assertion may be questionable for nano-objects which easily agglomerate. However, agglomerates can be broken during the dispersion process. Correlating the explosion parameters to the actual PSD of a dust cloud at the moment of the ignition becomes then essential. The effects of the moisture content and sieving were investigated on a nanocellulose powder and the impact of a mechanical agglomeration was evaluated using a silicon coated by carbon powder. Each sample was characterized before and after dispersion using in situ laser particle size measurement and a fast mobility particle sizer, and explosion and minimum ignition energy tests were conducted respectively in a 20 L sphere and in a modified Hartmann tube. It was observed that drying and/or sieving the nanocellulose mainly led to variations in terms of ignition sensitivity but only slightly modified the explosion severity. In contrast, the mechanical agglomeration of the silicon coated by carbon led to a great decrease in terms of ignition sensitivity, with a minimum ignition energy varying from 5 mJ for the raw powder to more than 1J for the agglomerated samples. The maximum rate of pressure rise also decreased due to modifications in the reaction kinetics, inducing a transition from St2 class to St1 class when agglomerating the dust.  相似文献   

15.
为改善泡沫灭火剂的高温稳定性和抗复燃性能,将石墨粉、膨润土和空心玻璃微珠按一定比例复配加入泡沫灭火剂中制备防灭火三相泡沫,利用自主设计的实验台架,研究其发泡、稳泡及油面热稳定性等主要性能,分析复配超细粉体对泡沫灭火剂稳定性的影响机理。实验证明,复配粉体的加入可使泡沫灭火剂在高温下的稳定时间延长10倍以上,粉体颗粒会在泡沫表面形成一层致密壳层,增强泡沫的隔热阻燃性能,石墨粉的存在使壳层更加致密且增强了泡沫的流动性,但会对泡沫的发泡性能产生较大的影响,当空心玻璃微珠和石墨粉的添加质量比为5∶2时,整体效果较好。  相似文献   

16.
Handling combustible dusts not only continues to pose a risk to industry but can also affect the safety of society. Explosion risk could be avoided or mitigated trying to guarantee inherent safety throughout the product life chain. One way to reduce the risks when dealing with combustible dust is to increase the Minimum Ignition Energy (MIE) in order to decrease combustible dust ignition sensitivity. To achieve this decrease, the inertization technique, also known as moderation, will be used. It consists of adding inert powders or humidity to the combustible dust. As sometimes end-users also must deal with the handling of flammable dusts, this study aims to find the most optimal inert for toner waste from printers and Holi powder (organic coloured dust from Indian parties), taking Lycopodium as a reference. Calcium carbonate, sodium bicarbonate and gypsum are proposed as inert materials. In addition, with the aim of giving a second use to biomass boiler waste or boiler slagging, this waste will be analyzed as inert, as well as how humidity affects the combustible dusts. Then, sodium bicarbonate will be tested at different granulometries to evaluate the effect of particle size on moderation process. The tests were carried out in the modified Hartmann apparatus or MIKE 3.0. Mechanisms such as decomposition of inert dust have been analyzed by thermogravimetric analysis (TGA)). The results show that gypsum and moisture are the best performing inert followed by calcium carbonate. Boiler slagging and solid bicarbonate contribute to a decrease in the MIE in some of the tests. The reasons for this deviation are discussed in the presented article. When sodium bicarbonate is analyzed at different particle sizes, it is found that the optimum particle size does not match the particle size of the combustible dust. According to the tests, there is an optimum point for which the inert powder provides better results.  相似文献   

17.
为提高膨胀型防火涂料的阻燃性能,以聚氨酯树脂为基料,以聚磷酸铵、尿素为阻燃体系,通过加入不同掺量的钛酸酯偶联剂改性β-环糊精(β-CD),提高阻燃效果。通过红外光谱仪(FT-IR)、锥形量热仪(CONE)、热重分析仪(TG)、差热扫描量热仪(DSC)等,研究改性β-CD的含量对膨胀型防火涂料的火安全性的影响,使用Coats-Redfern积分法计算涂料的热解动力学。研究结果表明:改性β-CD能有效地提高涂料的阻燃性能,当β-CD为1wt%时拥有最佳阻燃性能,1wt%改性β-CD能够提高涂层的蓄热能力,延缓APP的分解和抑制碳质材料的分解,进而提高涂料的阻燃性能。通过热解动力学拟合曲线得出,1wt%的样品能在253 ℃以后显著提高反应的活化能,提高涂层的阻燃性。  相似文献   

18.
利用20L圆柱形可燃气体(蒸气)爆炸测试实验装置,用预先配制好浓度的盐酸溶液和亚氯酸钠溶液现场发生反应生成二氧化氯气体,对二氧化氯气体爆炸特性参数进行测定。采用TST6150动态数据储存仪和压力传感器等实验设备获得了高清晰度的二氧化氯气体爆炸压力变化曲线。通过综合分析实验结果,得到了二氧化氯气爆炸极限和爆炸压力变化规律。根据该研究结果,对于预防二氧化氯气体爆炸事故的发生提供数据参考,对指导安全生产和使用,均具有实际意义。  相似文献   

19.
聚碳酸酯(PC)作为性能优异的工程塑料被广泛用于高铁、飞机等特殊领域,但其燃烧时热释放及产烟量较大,故对其进行抑烟阻燃改性便尤为重要.通过将商用有机硅阻燃剂与抗滴落剂复配制备PC复合材料,证明在添加3 wt% 的有机硅阻燃剂后即可使PC达到V0级,LOI上升至34.5%,热释放速率峰值下降58.86%,烟及CO2释放速...  相似文献   

20.
为研究阻燃剂粉尘可爆性,依据不同实验标准所采用的哈特曼管和20 L球爆炸实验系统,对几种常见阻燃剂粉尘可爆性进行了初步研究。结果表明:按不同标准实验,四溴双酚A、三聚氰胺、二乙基次膦酸铝、赤磷和对二丁基氧化锡均为可爆性粉尘;三氧化二锑、钛白粉、碳酸钙、氢氧化铝和二氧化硅均为不可爆性粉尘;氰尿酸三聚氰胺、球形硅树脂粉以及膨胀石墨的粉尘可爆性结果不一致。对于某些阻燃剂,点火源的起始能量对粉尘可爆性结果有较大影响;某些阻燃剂对爆炸具有抑制效应,抑制程度同物质本身的性质和浓度有关系。  相似文献   

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