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垃圾焚烧飞灰熔融固化处理过程特性分析 被引量:32
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作者 姜永海 席北斗 +2 位作者 李秀金 王琪 张晓萱 《环境科学》 EI CAS CSCD 北大核心 2005年第3期176-179,共4页
为研究熔融固化过程中飞灰主要成分的迁移转化规律,在有温控的高温实验熔融炉中对垃圾焚烧飞灰进行了动态熔融固化实验研究,对处理后的飞灰进行了XRF、XRD分析检测,分析了飞灰熔融过程中熔融渣的主要成分、物相组成、碱度、挥发率和减... 为研究熔融固化过程中飞灰主要成分的迁移转化规律,在有温控的高温实验熔融炉中对垃圾焚烧飞灰进行了动态熔融固化实验研究,对处理后的飞灰进行了XRF、XRD分析检测,分析了飞灰熔融过程中熔融渣的主要成分、物相组成、碱度、挥发率和减容率的变化规律.试验结果表明:①飞灰中主要成分CaO、Al2 O3 和SiO2 的质量分数随着温度的升高而增加,而主要成分Cl元素和SO3 则从原来的2 0 . 5 9%和1 0 . 74 %分别降低到0 . 1 5 %和0 . 2 2 %,可见高含量Cl元素和S元素是引起飞灰熔融固化挥发率高的主要原因,并且可能主要以氯化物和硬石膏的形式分解挥发,XRD的测定结果也进一步证明了这一点.②飞灰熔融前,碱度随温度的升高而显著降低,但当温度达到流动温度后,碱度值随温度的变化很小,基本保持在0 . 95左右.③飞灰中盐类分解挥发主要发生在1 1 5 0℃~1 2 6 0℃之间,在飞灰熔融温度前约1 0 0℃的范围内. 展开更多
关键词 垃圾焚烧飞灰 熔融/玻璃化 碱度 过程分析
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Dendritic growth and solute trapping in rapidly solidified Cu-based alloys 被引量:1
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作者 SONG RuiBo DAI FuPing WEI BingBo 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2011年第5期901-908,共8页
Rapid solidification of binary Cu-22%Sn peritectic alloys and Cu-5%Sn-5%Ni-5%Ag quaternary alloys was accomplished by glass fluxing, drop tube and melt spinning methods. The undercooled, by glass fluxing method, Cu-22... Rapid solidification of binary Cu-22%Sn peritectic alloys and Cu-5%Sn-5%Ni-5%Ag quaternary alloys was accomplished by glass fluxing, drop tube and melt spinning methods. The undercooled, by glass fluxing method, Cu-22%Sn peritectic alloy was composed of a(Cu) and δ(Cu41Snll) phases. If rapidly solidified in a drop tube, the alloy phase constitution changed from α(Cu) and δ(Cu41Sn11) phases into a single supersaturated (Cu) phase with the reducing of droplet diameter, and the maximum solubility of Sn in (Cu) phase extended to 22%. The Cu-5%Sn-5%Ni-5%Ag quaternary alloy was composed of (Cu) and (Ag) phases under the containerless processing condition in a drop tube, and the solute microsegregation of (Cu) phase was obvious. When the Cu-5%Sn-5%Ni-5%Ag quaternary alloy was solidified by melt spinning method, microsegregation was suppressed and solute trapping occurred. The experimental results show that the microstructures of primary (Cu) phase in the two alloys transfer from coarse dendrites into equiaxed grains with the increase of cooling rate and undercooling, which is accompanied by the grain refinement effect. 展开更多
关键词 Cu-based alloy rapid solidification dendritic growth solute trapping
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