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Sr3SiO5降温过程分解及对制备Sr3SiO5∶Eu^2+的影响 被引量:1
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作者 王晓春 张希艳 +1 位作者 张烨明 马良来 《无机化学学报》 SCIE CAS CSCD 北大核心 2012年第8期1570-1574,共5页
采用高温固相反应法制备Sr3SiO5∶Eu2+时,往往有Sr2SiO4∶Eu2+共存,从而影响Sr3SiO5∶Eu2+的发光性能。本文采用DSC/TG、淬冷法结合XRD,研究了Sr3SiO5∶Eu2+在降温过程中的分解反应。结果表明,Sr3SiO5是在1 250℃以上稳定存在的化合物,... 采用高温固相反应法制备Sr3SiO5∶Eu2+时,往往有Sr2SiO4∶Eu2+共存,从而影响Sr3SiO5∶Eu2+的发光性能。本文采用DSC/TG、淬冷法结合XRD,研究了Sr3SiO5∶Eu2+在降温过程中的分解反应。结果表明,Sr3SiO5是在1 250℃以上稳定存在的化合物,在降温过程中Sr3SiO5在1 250℃分解为Sr2SiO4和SrO。采用快速降温的方法可以抑制Sr3SiO5的分解。当降温速率小于10℃.min-1时,Sr3SiO5全部分解为Sr2SiO4和SrO;当降温速率为15℃.min-1时,样品主要物相为Sr3SiO5,但有少部分Sr3SiO5发生分解,当降温速率增大到20℃.min-1时,Sr3SiO5分解的量更少,即随着降温速率增大,Sr3SiO5分解的量减小,从而获得几近纯相的Sr3SiO5∶Eu2+荧光粉。 展开更多
关键词 Sr3SiO5∶Eu2+ 降温分解 淬冷法 降温速率
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拜耳法分解降温系统节能技术改造 被引量:2
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作者 毛鹏 《有色冶金节能》 2020年第4期19-21,38,共4页
某铝业公司拜耳法氧化铝生产线使用澳大利亚铝土矿进行生产,因澳矿中有机碳含量高,致使分解降温系统结疤严重,再加上原有的降温设施类型及规格不统一,流程交叉冗长,使得降温系统运行成本较高。通过对分解降温系统的降温设备进行选型设... 某铝业公司拜耳法氧化铝生产线使用澳大利亚铝土矿进行生产,因澳矿中有机碳含量高,致使分解降温系统结疤严重,再加上原有的降温设施类型及规格不统一,流程交叉冗长,使得降温系统运行成本较高。通过对分解降温系统的降温设备进行选型设计以及对降温流程、循环水流程和碱煮流程进行优化改造,满足了生产要求,同时每年可节约生产成本378.17万元。 展开更多
关键词 氧化铝 拜耳法 澳矿 分解降温系统 换热器
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Pyrolysis Characteristics and Thermal Kinetics of Degradable Films 被引量:3
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作者 WANG Xing LU Jia-Long ZHANG Yi-Ping 《Pedosphere》 SCIE CAS CSCD 2007年第5期654-659,共6页
Developing degradable films is an important means for resolving the problem of film pollution; however, in recent years, there have been only few studies related to the thermal analysis of degradable plastic films. Th... Developing degradable films is an important means for resolving the problem of film pollution; however, in recent years, there have been only few studies related to the thermal analysis of degradable plastic films. This research detailed the composition and pyrolysis of one kind of ordinary and three kinds of degradable plastic films using the differential thermal analysis (DTA) technique. The results showed that degradable films and ordinary film had similar DTA curves, which reflected their similar compositions; however, small differences were measured, which were due to the added constituents of the degradable films. The pyrolysis reaction orders of each film were about 0.93. The pyrolysis activation energies and pre-exponential factors followed the order of ordinary film 〉 photodegradable film 〉 photodegradable calcium carbonate film 〉 biodegradable film. The results of this research laid the foundation for new theories for harnessing soil pollution caused by plastic films. 展开更多
关键词 degradable film differential thermal analysis PYROLYSIS thermal kinetics
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Pyrolysis of Polytrimethylene Terephthalate(PTT) Fiber by Pyrolysis Gas Chromatography-Mass Spectroscopy
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作者 钱和生 《Journal of Donghua University(English Edition)》 EI CAS 2007年第5期604-609,共6页
Pyrolysis of polytrimethylene terephthalate(PTT) fiber has been investigated by pyrolysis gas chromatography-mass spectroscopy in the temperature range from 400℃ to 750℃ in order to observe the possible effect of th... Pyrolysis of polytrimethylene terephthalate(PTT) fiber has been investigated by pyrolysis gas chromatography-mass spectroscopy in the temperature range from 400℃ to 750℃ in order to observe the possible effect of the temperature on its composition of pyrolysates.At 400℃,pyrolysis of molecular chain could occur,only 13 pyrolysates could be identified.The trimethylene moieties bound to the macromolecular core by ester bonds are cleaved at around 400℃.At 550℃-750℃,pyrolysis of molecular chain could completely take place,46 pyrolysates could be found.As the temperature increases,the compositions of pyrolysate are distinctly increased.Several compounds,especially benzoic acid,monopropenyl-p-phthalate,2-propenyl benzoate,di-2-propenyl ester,1,4-benzenedicarboxylic acid,benzene,1,5-hexadiene,biphenyl and 1,3-propanediol dibenzoate could be formed.The thermal degradation mechanism,which is determined by structure and amount of the thermal decomposition products,are described.During pyrolysis of polytrimethylene terephthalate,polymeric chain scissions take place a peeling reaction as a successive removal of the dimer units from the polymeric chain.The chain scissions are followed by the elimination reaction,linkage action and secondary reactions,which bring about a variety fragment. 展开更多
关键词 polytrimethylene terephthalate fiber PYROLYSIS thermal degradation gas chromatography mass spectroscopy
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