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Preparation and Characterization of CA-MA Eutectic/Silicon Dioxide Nanoscale Composite Phase Change Material from Water Glass via Sol-Gel Method
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作者 孟多 ZHAO Kang +1 位作者 ZHAO Wei JIANG Guowei 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2017年第5期1048-1056,共9页
This work mainly involved the preparation of a nano-scale form-stable phase change material(PCM) consisting of capric and myristic acid(CA-MA) binary eutectic acting as thermal absorbing material and nano silicon ... This work mainly involved the preparation of a nano-scale form-stable phase change material(PCM) consisting of capric and myristic acid(CA-MA) binary eutectic acting as thermal absorbing material and nano silicon dioxide(nano-SiO_2) serving as the supporting material. Industrial water glass for preparation of the nano silicon dioxide matrix and CA-MA eutectic mixture were compounded by single-step sol-gel method with the silane coupling agent. The morphology, chemical characterization and form stability property of the composite PCM were investigated by transmission electron microscopy(TEM), scanning electron microscopy(SEM), Fourier-transform infrared(FT-IR) spectroscopy and polarizing microscopy(POM). It was indicated that the average diameter of the composite PCM particle ranged from 30-100 nm. The CA-MA eutectic was immobilized in the network pores constructed by the Si-O bonds so that the composite PCM was allowed no liquid leakage above the melting temperature of the CA-MA eutectic. Differential scanning calorimetry(DSC) and thermogravimetric analysis(TGA) measurement were conducted to investigate the thermal properties and stability of the composite PCM. From the measurement results, the mass fraction of the CA-MA eutectic in the composite PCM was about 40%. The phase change temperature and latent heat of the composite were determined to be 21.15 ℃ and 55.67 J/g, respectively. Meanwhile, thermal conductivity of the composite was measured to be 0.208 W·m^(-1)·K^(-1) by using the transient hot-wire method. The composite PCM was able to maintain the surrounding temperature close to its phase change temperature and behaved well in thermalregulated performance which was verified by the heat storage-release experiment. This kind of form-stable PCM was supposed to complete thermal insulation even temperature regulation by the dual effect of relatively low thermal conductivity and phase change thermal storage-release properties. So it can be formulated that the nanoscale CA-MA/SiO_2 composite PCM with the form-stable property, good thermal storage capacity and relatively low thermal conductivity can be applied for energy conservation as a kind of thermal functional material. 展开更多
关键词 fatty acid eutectic silicon dioxide nanoscale composite phase change material water glass sol-gel
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岩心中硅酸凝胶堵剂突破压力的研究 被引量:7
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作者 才程 赵福麟 岳湘安 《油田化学》 CAS CSCD 北大核心 2003年第4期316-318,共3页
在不同渗透率k(0.7~1、3~4、11~13μm2)的人造石英砂岩心上,测定了4个配方实验硅酸凝胶堵剂(4%、6%、8%、10%水玻璃+10%盐酸)的突破压力pt。堵剂用矿化度1.12×104mg/L、含Ca2++Mg2+377.8mg/L的注入水配制。堵剂注入岩心后在80... 在不同渗透率k(0.7~1、3~4、11~13μm2)的人造石英砂岩心上,测定了4个配方实验硅酸凝胶堵剂(4%、6%、8%、10%水玻璃+10%盐酸)的突破压力pt。堵剂用矿化度1.12×104mg/L、含Ca2++Mg2+377.8mg/L的注入水配制。堵剂注入岩心后在80℃下密闭放置24h使之凝胶化,测得对水的比突破压力p′t(单位岩心长度的突破压力)的对数值与岩心初始平均渗透率k的对数值之间有线性关系,lgp′t随lgk的增大而降低。设水在岩心内的流动为稳态单相流,导出了lgp′t与lgk之间的线性关系式,利用该式计算了4种实验堵剂的lgp′t~lgk直线斜率。当凝胶化温度升高时(40℃→60℃→80℃),测得的p′t值增大。在岩心渗透率0.7~1μm2,凝胶化温度80℃时,用蒸馏水配制的4种实验堵剂,其突破压力普遍大大低于用注入水配制的4种实验堵剂。图2表4参1。 展开更多
关键词 油井 堵水 硅酸凝胶堵剂 岩心封堵实验 凝胶强度
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外墙砖盐析处理与抑制试验研究 被引量:1
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作者 王玲玲 孙云飞 +1 位作者 陈彦文 礼航 《建材技术与应用》 2008年第9期1-2,5,共3页
针对目前普遍存在的严重降低建筑物外墙的装饰性和耐久性的外墙砖盐析现象,在分析其机理的基础上,通过一系列探索性的试验,提出了去除和抑制不同程度的外墙砖泛霜的有效措施。
关键词 外墙砖 盐析 稀盐酸 水玻璃
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盐酸对复合相变材料用水淬高炉渣表面结构改性的影响
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作者 邱明伟 龙跃 +2 位作者 杜培培 赵鹏越 王铮铮 《河北冶金》 2021年第12期10-15,32,共7页
用盐酸对水淬高炉渣表面结构进行了改性处理,研究了盐酸浓度、温度及保温时间对水淬高炉渣改性效果的影响。结果表明,在同一保温时间及温度条件下,随着盐酸浓度的增加,改性水淬高炉渣比表面积、孔容增大,平均孔径逐渐减小;同一盐酸浓度... 用盐酸对水淬高炉渣表面结构进行了改性处理,研究了盐酸浓度、温度及保温时间对水淬高炉渣改性效果的影响。结果表明,在同一保温时间及温度条件下,随着盐酸浓度的增加,改性水淬高炉渣比表面积、孔容增大,平均孔径逐渐减小;同一盐酸浓度条件下,随着温度、保温时间的增加,改性水淬高炉渣比表面积、孔容先增大后减小,平均孔径减小。盐酸浓度对水淬高炉渣表面结构的影响较大,实验室条件下,在盐酸3.5 mol/L、水浴温度为30℃下搅拌2 h时,改性水淬高炉渣作为复合相变材料载体表面结构的改性条件最优。 展开更多
关键词 盐酸 复合相变 表面结构改性 水淬高炉渣 孔容 孔径
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