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Stabilisation of estuarine sediments with an alkali-activated cement for deep soil mixing applications
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作者 Claver Pinheiro Sara Rios +1 位作者 António Viana da Fonseca Nuno Cristelo 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2024年第4期1398-1410,共13页
In this work,an alternative alkali-activated cement(AAC)made of ladle slag precursor mixed with sodium hydroxide and sodium silicate has been developed to enhance the bearing capacity of estuarine soils in coastal con... In this work,an alternative alkali-activated cement(AAC)made of ladle slag precursor mixed with sodium hydroxide and sodium silicate has been developed to enhance the bearing capacity of estuarine soils in coastal conditions via deep soil mixing(DSM).The AAC was optimized to use a low reactivity precursor(ladle slag)and to deal with a contaminated high-water content natural sediment cured under water.The material performance was analysed by comparison to a mixture made with Portland cement and cured in the same conditions.Flexural and unconfined compressive strength tests as well as seismic waves measurements after 3-,7-,14-and 28-d curing were performed to obtain a relationship between elastic stiffness and strength with curing time for both mixtures.Remarkably,the AAC mix demonstrated superior strength results,exhibiting almost double flexural and compressive strengths after 28 d compared to the Portland cement mix.The AAC mix also showed a higher rate of stiffness increase than the Portland cement mix,which has a higher initial stiffness at young ages but lower stiffness evolution.Leachate analysis confirmed that the proposed AAC could effectively immobilise any contaminants from soil or precursors.The effect of curing under stress was analysed in triaxial compression tests and found to be insignificant,indicating that laboratory data obtained without stress curing can represent the material's behaviour in a DSM column,which will cure under the weight of the column. 展开更多
关键词 Alkaline-activation Steel slag Submerged curing Seismic wave measurements Leachate analysis Curing under stress
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高职院校新校区绿色校园规划设计 被引量:1
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作者 韩宇轩 崔鹤 《石家庄职业技术学院学报》 2021年第3期33-35,共3页
依托政策推动和教育发展机遇,高职院校新校区迎来了建设高潮。高职院校新校区在选址、规划和监测管理等方面还有较大的提升空间,新校区校园建设要融入绿色发展理念,建设能耗低、可利用度高的绿色校园。要慎重选择新址,打造优美校园环境... 依托政策推动和教育发展机遇,高职院校新校区迎来了建设高潮。高职院校新校区在选址、规划和监测管理等方面还有较大的提升空间,新校区校园建设要融入绿色发展理念,建设能耗低、可利用度高的绿色校园。要慎重选择新址,打造优美校园环境;科学规划布局,提高土地利用效率;合理设计系统,充分利用可再生能源;设计监测平台,打造绿色智慧校园。 展开更多
关键词 高职院校 新校区建设 绿色校园 规划设计
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