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Effects of Soluble Ions on Hydration of Calcined Flue Gas Desulphurization Gypsum 被引量:3
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作者 Fu-xing Lin Yan-chi Zhong +3 位作者 Shu-feng Yan Bi-fan Lin Jian-hua Wang Zhi-zhong Su 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2020年第6期764-768,I0003,共6页
The influence of various water soluble cations(K^+,Na^+,Ca^2+,Mg^2+)on the hydration of calcined flue gas desulphurization gypsum was investigated.The results show that all cations but Ca^2+can accelerate the hydratio... The influence of various water soluble cations(K^+,Na^+,Ca^2+,Mg^2+)on the hydration of calcined flue gas desulphurization gypsum was investigated.The results show that all cations but Ca^2+can accelerate the hydration of bassanite.The final crystal size is not largely influenced by different salts,except for Na^+,where the giant crystal with length of>130μm is observed.Current study clarifies the influence of different ions on the hydration of bassanite,which could provide sufficient guide for the pre-treatment of original flue gas desulphurization gypsum before actual application. 展开更多
关键词 BASSANITE Flue gas desulphurization HYDRATION Soluble ions
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Improvement Properties of Cohesion-Less Soil Using Recycled Bassanite
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作者 Masaki Kobayashi Aly Ahmed Keizo Ugai 《Journal of Civil Engineering and Architecture》 2013年第12期1566-1573,共8页
Solid waste management is a serious problem over the world. Therefore, reduction, re-use and recycling of waste have become major issues in recent days. Gypsum waste plasterboard is considered one example of these was... Solid waste management is a serious problem over the world. Therefore, reduction, re-use and recycling of waste have become major issues in recent days. Gypsum waste plasterboard is considered one example of these waste materials. This study evaluates the use of recycled bassanite, which is derived from gypsum waste plasterboard, to enhance the performance of two types of cohesion-less soil. Recycled bassanite was utilized as a stabilizing agent to improve both compressive and splitting strengths of the tested soil. The effect of bassanite content, soil type, water content and curing time were investigated to explore the behavior of treated soil with recycled bassanite. Test results showed that increase of bassanite content is associated with increase in optimal moisture content, while no significant increase in the dry unit weight was observed. Both compressive and splitting tensile strengths enhanced with the additives of recycled bassanite. The increase of bassanite content had a more significant effect on the compressive strength compared with the effect on tensile strength. The use of recycled bassanite to enhance the strength of sandy soil had a more significant effect compared with silty soil. The effect of curing time on the strength of treated samples was more significant in early curing ages compared with late curing ages. The strength decreased significantly in case of stabilized samples prepared with water content at the wet-side of the compaction curve. However, insignificant decrease in the strength of the stabilized sample was detected with moisture content at the dry-side of compaction curve. This research meets the challenges of our society to reduce the quantities of gypsum wastes, producing useful material from waste materials that will help to a sustainable society. 展开更多
关键词 Soil stabilization compressive strength recycled bassanite cohesion-less soil splitting strength
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Dehydration of Gypsum Rock by Solar Energy: Preliminary Study
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作者 Aurora López-Delgado Sol López-Andrés +3 位作者 Isabel Padilla Marta Alvarez Roberto Galindo Alfonso José Vázquez 《Geomaterials》 2014年第3期82-91,共10页
The dehydration process of gypsum rock was studied under concentrated solar energy by using a Fresnel lens with power density of 260 Wcm-2. Temperatures higher than 700。C were attained for 1 min of solar exposure. Th... The dehydration process of gypsum rock was studied under concentrated solar energy by using a Fresnel lens with power density of 260 Wcm-2. Temperatures higher than 700。C were attained for 1 min of solar exposure. The effect of grain size of sample and radiation exposure time on the formation of bassanite and anhydrite was studied by XRD. The complete transformation of dihydrate into hemihydrate and/or anhydrate phases is complete for the finer size sample. Plaster composed of 92.7% of anhydrite and 7.3% of bassanite was obtained for 5 min of solar exposure. Morphological and textural modifications were followed by SEM and interferometric/confocal profilometer. 展开更多
关键词 GYPSUM BASSANITE ANHYDRITE Concentrated Solar Energy FRESNEL Lens
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