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排序方式: 共有283条查询结果,搜索用时 73 毫秒
51.
环氧丙烷为低沸点水溶性可燃液体,由于其饱和蒸汽压大,灭火困难,此前,国内外未对环氧丙烷进行过大型工程应用灭火试验研究。为研究空气泡沫对环氧丙烷储罐的灭火性能,分别对环氧丙烷进行了0.25m^2油盘探索性试验、1.73m^2油盘泡沫灭火剂选型试验和直径3.5m储罐工程应用灭火试验。试验结果表明,空气泡沫难以扑灭环氧丙烷储罐火灾,在直径3.5m储罐上,虽然采用了灭火性能较好的泡沫液,且使用了较大的供给强度和较长的供给时问,但仍难灭火。在试验基础上,对环氧丙烷储罐的消防要求提出了建议。 相似文献
52.
Optimization of the recovery of plastics for recycling by density media separation cyclones 总被引:1,自引:0,他引:1
Gent Malcolm Richard Menendez MarioToraño Javier Torno Susana 《Resources, Conservation and Recycling》2011,55(4):472-482
Material recovery processes are presented as the optimum option for recycling plastic wastes as a means of recovering hydrocarbon resources. There exist a large variety of automated material recovery processes for recycling of such wastes but each with significant limitations. Of these, the separation based on differences in densities is advocated as the optimum process either for producing recycled products or preparing wastes for subsequent recovery processing.Density separation processes based on cyclone type density media separation (DMS) is presented as an important, potential method for increasing plastics recycling process capacities. It is demonstrated to have the capacity to separate a significantly larger range of particle sizes than those presently processed industrially. The mathematical relationship for the prediction of quality of typical LARCODEMS type density media separations by particle size and density as expressed by the Ecart Probable is presented.A proposed device configuration is presented for density media separation to optimize the recovery and purity of both density fractions produced. It is also suggested that to be economically viable, a large scale of operation is required for industrial plastics recycling operations recovering and producing a number of different plastics with a purity to be used as a substitute for virgin material. 相似文献
53.
Co3O4具有优良的活化过硫酸盐的性能而受到人们的重视,但Co3O4粉体易团聚、使用过程中难以分离、易流失和重复利用率差等问题严重制约了其实际应用.通过水热法制备碳化三聚氰胺泡沫负载Co3O4非均相催化剂.采用X-射线衍射仪(XRD)和扫描电子显微镜(SEM)对催化剂的结构和表面形貌进行分析.研究不同因素对催化剂活化过硫酸氢钾(PMS)降解罗丹明B(RhB)的性能.其最优催化工艺参数:催化剂投加量为35 mg·L-1、PMS质量浓度为50 mg·L-1和pH为7、RhB初始质量浓度为10 mg·L-1,30 min反应后对RhB降解率为98%.结果表明,增大碳化泡沫负载Co3O4非均相催化剂投加量和PMS质量浓度能明显提高对RhB的降解率;而增加RhB初始质量浓度和提高pH值会明显抑制RhB的降解率.催化反应过程符合准一级动力学方程.温度对RhB降... 相似文献
54.
泡沫聚合物保温材料的研究进展及其应用 总被引:2,自引:0,他引:2
综述了以聚氨酯泡沫、聚乙烯泡沫和酚醛泡沫塑料为代表的轻质聚合物泡沫保温材料的发展状况。 相似文献
55.
研究了聚氨酯硬泡在不同温度加热过程中的质量损失、生成的气体成分及硬泡结构变化,并对加热聚氨酯硬泡时所释放的发泡剂CFC-11(CCl3F)进行了测定.结果表明,在80~160℃加热聚氨酯硬泡时,CFC-11的释放速率随温度的增加而增加.将破碎后的硬泡颗粒在160℃下加热,既保证硬泡颗粒不发生热解反应,又使包裹和吸附于硬泡中的CFC-11移除速率最快.在160℃下加热过4mm筛硬泡颗粒1,2,4h后,可分别移除的CFC-11占硬泡颗粒中总量的84.5%、95.5%和96.6%,残余CFC-11则需足够长时间才可移除,而加热释放气体中CFC-11占82%~85%. 相似文献
56.
将米渣清洗、过滤以除去液化液、糖液,再加水调至130Be,用石灰调为不同pH,在不同时间下进行水解,结果表明当pH为11.5,在蒸气压为0.1MPa条件下,经过3h水解后蛋白质含量最高,可达到6.0%(水解液含量),再过滤、浓缩成为30%的蛋白质液,经过适当配制可成为蛋白质泡沫灭火剂,经过武汉市科威消防材料厂进行灭火测试,结果表明,粘度、沉淀物、发泡倍数、90%火焰控制时间、灭火时间、抗烧时间等指标均达到中华人民共和国公共安全行业标准(GA2191999);将30%的蛋白质液喷雾干燥后,可制备成为食用蛋白质发泡剂。 相似文献
57.
利用聚氨酯泡沫塑料块(简称PFU)对清华园内某一连续水体中的微型生物群落的变化进行了观测.所研究的微型生物主要包括细菌、真菌、藻类和原生动物,此外也包括一些小型的后生动物,如轮虫等.所考察的水质指标主要有:水温,pH值,DO,CODMn,TN,TP以及叶绿素a含量等,并对水体的富营养化程度进行评价,采用层次分析-主要成分分析营养度法(AHP-PCA法)计算出综合营养指数TLIc值.试验结果表明水体微型生物群落参数(如Sep,G,T90%和HI)和水质指标(如TLIc)之间具有良好的相关性. 相似文献
58.
59.
杜青 《环境监测管理与技术》2019,31(6):57-59
水样经硝酸和过氧化氢消解,Tl~+被氧化为Tl~(3+),在王水和Fe~(3+)介质中,TlCl~-_4被聚氨酯泡塑吸附富集,沸水脱附后用石墨炉原子吸收光谱法测定。用硝酸钯-抗坏血酸基体改进剂提高测定灵敏度,方法在0μg/L~25.0μg/L范围内线性良好,方法检出限为0.01μg/L。实际样品加标后6次测定结果的RSD为3.0%~11.0%,平均加标回收率为95.0%~99.8%。有证标准物质的测定结果在标准值范围内,相对误差为-4.8%。 相似文献
60.
Klaschka U Liebig M Knacker T 《Environmental science and pollution research international》2007,14(1):24-29
GOAL, SCOPE AND BACKGROUND: Environmental issues of personal care products have been met with little attention in the past. Monitoring data as well as preliminary environmental risk assessments indicate that some ingredients in personal care products might be relevant pollutants in the environment. Following the precautionary principle, eco-labelling is proposed as an effective tool for source control of one major group of personal care products, shampoos, shower gels and foam baths (SSBs). Eco-labelling is a soft, but effective market driven and product specific approach to lower discharge of environmentally detrimental substances. Products that fulfil the criteria proposed help to minimise the impact of SSBs on the environment. METHODS: Available assessment tools for dangerous substances (e.g. current legislation on environmental risk assessments and classification, and labelling, eco-labelling criteria for similar products, the calculation of the critical dilution volume) were adapted and integrated into the criteria for the eco-labelling of SSBs. RESULTS AND DISCUSSION: A short outline of the eco-labelling criteria developed for SSBs is provided. The basic criteria concern the effects of the substances discharged into the waste water during and after use. Products with an eco-label award may exclusively contain substances for which basic information about their effects on the environment is available. They may not contain persistent, bioaccumulating, toxic or ecotoxicological substances. In addition, the basic criteria include requirements for the container and consumer information. CONCLUSION: The basic criteria for eco-labelling SSBs are based on the actual state of science and are at the same time as simple and transparent as possible to ensure the best applicability. SSBs that comply with the described basic criteria can contribute to a lower chemical burden of waste water treatment plants and surface water. RECOMMENDATION AND OUTLOOK: The proposal for basic criteria described should stimulate discussion on eco-labelling of SSBs. It should help to pass valid criteria supported by authorities, producers and consumer groups for a national or international eco-label, e.g. for the European Flower or the German Blue Angel. In future, the successful introduction of labelled SSBs into the market will raise the awareness of the general public about the environmental effects of personal care products and it will help to promote environmentally compatible products. 相似文献