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341.
根据燃料特性及工艺特点,阐述了蒸汽灭火系统、水喷雾灭火系统、干粉灭火系统和泡沫灭火系统在燃油锅炉房中的应用条件、主要设计参数及与通风排烟系统的关系。  相似文献   
342.
Pyrotechnic devices, commonly known as fireworks, have a huge popularity. The sonic effect produced by the fireworks mainly depends upon the chemical composition of the mixtures and the particle size. Specifically this means that the larger the particle size, the more the quantity of powder mixture is to be used. Therefore, a high quality product which can produce the expected noise level with lesser quantity of chemicals is a major challenge faced by the pyrotechnic industry. This can be achieved by adopting either of the two approaches namely, one, by changing the chemical composition or, the other, by changing the particle size. At present the particle size of the chemical composition is at the micron level. However, by converting the composition into nano size, the volume of mixture used will be greatly reduced without compromising the sound level produced. The major advantage of using nano size powders is that it is essentially environmental friendly, producing less pollution and ensuring a cleaner environment. Concurrently, the major risk in using nano size powders is that it is a fire hazard. In this paper, the pros and cons of using nano powders in the manufacture of fireworks have been analyzed, collecting data from various research works and presenting the same as a review article.  相似文献   
343.
对某矿场二次爆破个别飞石伤人事故进行鉴定,通过实地勘测、调查取证,分析了两种裸露药包法爆破大块时可能发生的空气冲击波和个别飞石安全距离,认为该矿场二次爆破产生的个别飞石,可以飞达160m处对人员造成伤害。  相似文献   
344.
Phosphorus removal was enhanced effectively by dosing aluminum sulfate and effluent phosphorus concentration was lower than 0.5 mg/L. Sludge activity was not inhibited but improved slightly with addition of aluminum sulfate. EPS concentrations both in mixed liquid and on membrane surface were decreased, contributing to the effective mitigation of membrane fouling. To enhance phosphorus removal and make the effluent meet the strict discharge level of total phosphorus (TP, 0.5 mg/L), flocculant dosing is frequently applied. In this study, the performance of aluminum sulfate dosing in a University of Cape Town Membrane Bioreactor (UCT-MBR) was investigated, in terms of the nutrients removal performance, sludge characteristics and membrane fouling. The results indicated that the addition of aluminum sulfate into the aerobic reactor continuously had significantly enhanced phosphorus removal. Moreover, COD, NH4+-N and TN removal were not affected and effluent all met the first level A criteria of GB18918-2002. In addition, the addition of aluminum sulfate had improved the sludge activity slightly and reduced trans-membrane pressure (TMP) increase rate from 1.13 KPa/d to 0.57 KPa/d effectively. The membrane fouling was alleviated attributed to the increased average particle sizes and the decreased accumulation of the small sludge particles on membrane surface. Furthermore, the decline of extracellular polymeric substance (EPS) concentration in mixed sludge liquid decreased its accumulation on membrane surface, resulting in the mitigation of membrane fouling directly.  相似文献   
345.
An-RBC reactor is highly suited to treat metallic wastewater. Metal removal is due to sulfide precipitation via sulfate reduction by SRB. Cu(II) removal was the best among the different heavy metals. Maximum metal removal is achieved at low metal loading condition. Metal removal matched well with the solubility product values of respective metal sulfide salts. This study was aimed at investigating the performance of anaerobic rotating biological contactor reactor treating synthetic wastewater containing a mixture of heavy metals under sulfate reducing condition. Statistically valid factorial design of experiments was carried out to understand the dynamics of metal removal using this bioreactor system. Copper removal was maximum (>98%), followed by other heavy metals at their respective low inlet concentrations. Metal loading rates less than 3.7 mg/L?h in case of Cu(II); less than 1.69 mg/L?h for Ni(II), Pb(II), Zn(II), Fe(III) and Cd(II) are favorable to the performance of the An-RBC reactor. Removal efficiency of the heavy metals from mixture depended on the metal species and their inlet loading concentrations. Analysis of metal precipitates formed in the sulfidogenic bioreactor by field emission scanning electron microscopy along with energy dispersive X-ray spectroscopy (FESEM-EDX) confirmed metal sulfide precipitation by SRB. All these results clearly revealed that the attached growth biofilm bioreactor is well suited for heavy metal removal from complex mixture.  相似文献   
346.
为了研究彩虹粉引燃危险性,应用固体燃烧速率试验仪初步甄别了彩虹粉传播燃烧能力,发现堆垛状彩虹粉固体火焰传播危险性较低;采用粉尘爆炸筛选装置,判定彩虹粉具有爆炸性;应用最小点火能测定装置测定彩虹粉粉尘云的最小点火能在24~60 mJ之间,最优爆炸浓度为1 167 g/m3;应用快速筛选量热仪测试,彩虹粉在227℃开始分解;固体自燃点测试仪显示彩虹粉在250℃附近会发生自燃。向彩虹粉内添加不同比例相近粒径分布的食用盐粉体进行抑爆研究,结果证明食用盐对彩虹粉具有明显的抑爆效果。  相似文献   
347.
为了评估超细粉体灭火装置用于电火花成形机床的技术可行性,通过全尺度灭火实验研究与计算分析,研究超细粉体灭火装置对电火花成形机床火灾的灭火有效性,进一步提出适宜的灭火应用方式和灭火剂设计用量计算方法。结果表明,超细粉体灭火装置可迅速、有效扑灭电火花成形机火灾,超细粉体灭火剂的最低灭火用量为90g,装置响应时间为7~24s,灭火时间为1~4s;基于顶部敞口设计模式的电火花成形机床不符合全淹没灭火应用条件,应采用局部灭火应用方式;根据局部应用灭火系统体积法设计方法,提出了超细粉体灭火装置用于电火花成形机床时的灭火剂设计用量计算方法。该研究有助于超细粉体灭火装置的工程设计,对电火花成形机床的火灾防护具有重要意义。  相似文献   
348.
Sodium-jarosite is a type of industrial waste that results from hydrometallurgy and inorganic chemical production. The iron content of jarosite residue may be utilized to produce theoretically the ferrous materials. The difficulty in production of high quality poly-ferric sulfate (PFS) is how to remove impurities contained in jarosite residue. This paper proposes a novel method for disposing sodium-jarosite which can be used to synthesize PFS, a very important reagent for treating waste water. The method consists of a two-step leaching experimental procedures. The first step, pre-leaching process, is to remove impurity metals by strictly controlling the leaching conditions. The acid concentration of acidic water was adjusted according to the content of impurity metals in sodium-jarosite and the leaching temperature was controlled at 25°C. The second step is to decompose sodium-jarosite to provide enough ferric ions for synthesizing PFS, the concentrated sulfuric acid consumption was 0.8 mL·g-1 sodium-jarosite and the leaching temperature was above 60°C. In the experiment, decomposing iron from sulfate sodium-jarosite can take the place of ferric martials for synthesizing PFS. Results show that the PFS synthesized from sodium-jarosite had a high poly-iron complex Fe4.67(SO4)6(OH)2·20H2O. Further, the PFS product’s specifications satisfied the national standard of China.  相似文献   
349.
以钼尾矿为原料,采用酸溶—碳酸钾沉淀法制备硅微粉。考察了反应温度、反应时间、K2CO3质量分数对产品中SiO2质量分数和SiO2产率的影响。得到的优化工艺条件为:钼尾矿粒径小于74 μm,反应温度50 ℃,反应时间60 min,K2CO3质量分数50%。在此工艺条件下,SiO2产率可达98.92%,产品硅微粉的SiO2质量分数达98.44%,粒径为100~200 nm,超过中华人民共和国黑色冶金行业标准《不定型耐火材料用二氧化硅微粉》(YB/T 115—2004)中SF96指标(SiO2质量分数≥96.0%)的要求。  相似文献   
350.
以N235为萃取剂、甲苯为稀释剂萃取模拟含盐酸性废水(简称废水)中的盐酸。最佳实验条件为:振荡时间20 min,初始废水中盐酸浓度0.75~2.45 mol/L,V(N235):V(N235+甲苯)=0.3~0.7,V(N235+甲苯):V(废水)=0.5~1.0。在初始废水中盐酸浓度为1.00 mol/L、不含无机盐、V(N235):V(N235+甲苯)=0.4、V(N235+甲苯):V(废水)=1.0的条件下,振荡20 min后萃取液中盐酸浓度为0.80 mol/L、n(盐酸):n(N235)=0.88。当废水中氯化钠浓度大于2.0 mol/L时,氯化钠的加入对N235萃取盐酸有促进作用;硫酸钠的加入对N235萃取盐酸具有抑制作用。  相似文献   
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