Study on fire retardant mechanism of nano-LDHs in intumescent system

来源 :Science in China(Series B:Chemistry) | 被引量 : 0次 | 上传用户:HongJuZhang
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
This paper investigated the fire-retardant mechanism of the nano-LDHs in the intumescent system by the temperature programmed oxidation (TPO). Researches were also conducted to explore the function of the nano-LDHs in the composite fire-retardant agents in air and nitrogen atmosphere, respectively. The results indicated that the nano-LDHs species were responsible for the catalytic oxidation of the rich-carbon compound in oxygen atmosphere. In addition, the nano-LDHs species and their calcinated products at high temperature could increase the carbonaceous residue-shield of the carbon-rich materials, improve the quality and the graphitization degree of the formed char-layer, and accelerate the intumescence and expansion of the melting carbon-rich materials to a certain degree under the oxygen-free condition, leading to the carbonization and expansion of the intumescent layer. This paper investigated the fire-retardant mechanism of the nano-LDHs in the intumescent system by the temperature programmed oxidation (TPO). Researches were also conducted to explore the function of the nano-LDHs in the composite fire-retardant agents in air and nitrogen The results indicated that the nano-LDHs species were responsible for the catalytic oxidation of the rich-carbon compound in oxygen atmosphere. In addition, the nano-LDHs species and their calcinated products at high temperature could increase the carbonaceous residue- shield of the carbon-rich materials, improve the quality and the graphitization degree of the formed char-layer, and accelerate the intumescence and expansion of the melting carbon-rich materials to a certain degree under the oxygen-free condition, leading to the carbonization and expansion of the intumescent layer.
其他文献
教育行业最为看重服务器产品的系统可靠性、方案服务以及性价比。因此,宝德科技在强化产品的高性价比、稳定性和可管理性的同时,着重加强为教育行业提供整体的解决方案和完善
介绍了一种以AMPS为基料的聚合物降滤失剂(CG88L)来配制低密度水泥浆。该聚合物低密度水泥浆体系具有降滤失效果明显,自由液为零,早期强度高,抗污染性能好等特点,并且具有较
鲁迅先生作为一位现代文学家,他的一生给我们留下了极其丰富的文化遗产,对中国的文化事业作出了巨大的贡献,对后世的影响是空前的。回忆性散文《藤野先生》写到了作者与藤野
美州Ⅰ—69黑杨原产北美州,我国70年代引种繁殖.1985年我县从湖北利川引种育苗,经3年全县引种育苗,我们初步调查分析了“6 9”杨在我县苗期生长规律以及地下部分根系分布状态
早春二月,沉冤十五年的秦腔《游西湖》,由长安县文工团搬上舞台与西安广大观众见面了。它象一枝傲风雪、斗严寒的红梅,在西安的艺苑里争奇斗艳。山西、河南、新疆、甘肃、青
盟市林业处(局)长会议开了九天,今天就要结束了。这次会议,认真学习了张曙光同志在自治区直属机关处以上党员干部会议上的讲话,讨论了全区林业战钱进一步贯彻“林牧为主,多
简介了4起盛装混合气体的钢质无缝气瓶爆炸事故,通过调查分析,得出爆炸的原因:随着瓶体应力腐蚀裂纹的产生和不断扩展,瓶体剩余有效承载壁厚不足以承受内压而破裂。对盛装含
以学情为基础,以素养为核心,以教材为依托,系统梳理初中各学段的写作目标、写作内容、写作活动,结合教材单元写作主题和选文特点,以整体性、结构性的思维方式架构单元教学体
教学是教师职业活动的中心内容,育人是教育的根本目的,教师肩负着教书育人的重任。为人师表,言传身教,通过榜样、无言的力量教给学生做人的道理,提高学生学习的积极性。循循善诱,给
不经意间,石油合作成为2009年开年的焦点。仅仅三个月的时间,对外合作密集结果,450亿美元大单换来五大石油资源国的长期供应。贷款换石油,正迅速走俏中国对外石油合作。 Ina