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剑麻纤维改良MgO-GGBS碳化粉质黏土物理力学性质与微观机制 被引量:1
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作者 蔡光华 李纪 +4 位作者 王俊阁 邱金伟 张志华 夏威夷 陆海军 《林业工程学报》 CSCD 北大核心 2024年第5期161-168,共8页
为解决传统固化剂——水泥的能耗高和环境污染大等问题,本研究采用MgO-粒化高炉矿渣(GGBS)碳化加固粉质黏土,采用剑麻纤维改善固化土的抗裂性,探讨了纤维掺量和纤维长度对碳化改良土物理和力学性质的影响。结果表明:在相同纤维长度下,... 为解决传统固化剂——水泥的能耗高和环境污染大等问题,本研究采用MgO-粒化高炉矿渣(GGBS)碳化加固粉质黏土,采用剑麻纤维改善固化土的抗裂性,探讨了纤维掺量和纤维长度对碳化改良土物理和力学性质的影响。结果表明:在相同纤维长度下,随纤维掺量增加,MgO-GGBS碳化固化土样的体积增长率、含水率和内摩擦角增加,而黏聚力先增加后减小,无侧限抗压强度先增大后减小最终趋于稳定,黏聚力和强度的峰值出现在0.4%纤维掺量处。在相同纤维掺量下,随纤维长度增大,MgO-GGBS碳化固化土样的体积增长率先减小后增大,在长度10 mm时达到最小;含水率几乎不变;强度先增加后趋于稳定,在长度5~10 mm时提升显著;破坏应变增加,但几乎不受纤维掺量影响;碳化含纤维土样的黏聚力与内摩擦角先增加后减小,并在长度10 mm时达到最大。基于试验结果,提出了剑麻纤维改良MgO-GGBS碳化土加固的机理概念图,揭示了碳化土体基于纤维交织作用、固定作用和填充作用的改良机制。用MgO-GGBS-剑麻纤维等低碳材料代替水泥能显著提高碳化固化粉质黏土体的处理效果和抗裂性能。研究成果将对促进工业固废GGBS和农业废弃纤维在加固软弱地基土中的应用提供理论指导,对岩土工程“双碳”目标实现具有重要意义。 展开更多
关键词 活性MgO ggbs 剑麻纤维 无侧限抗压强度 直剪强度
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Fundamental Study on Alkali-Activated Slag System with Sodium Carbonate or Calcium Hydroxide
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作者 Seunghyun Na Wenyan Zhang +2 位作者 Yuichi Ichikawa Masaya Komatsu Aoi Takemura 《Journal of Materials Science and Chemical Engineering》 2024年第6期55-70,共16页
Cement as a building material, has high fluidity, compressive strength, and durability, but carbon dioxide emissions during cement production are a major problem. As one of the countermeasures, alkali-activated cement... Cement as a building material, has high fluidity, compressive strength, and durability, but carbon dioxide emissions during cement production are a major problem. As one of the countermeasures, alkali-activated cement using blast furnace slag powder with alkaline stimulants is considered to be a very promising solution for reducing carbon dioxide emissions, but there is a lack of information about the fundamental properties of alkali-activated materials. This study presents an experimental investigation of the fundamental properties of an alkali-activated slag system with sodium carbonate (NC) and calcium hydroxide (CH). The effects of calcium sulfo-aluminate (CSA) and shrinkage reducing agent (SRA) on the properties of blast furnace slag (BFS) based alkali-activated mixture were also investigated. In the experiments, fundamental characteristics including compressive strength, drying shrinkage, and water penetration tests of mortar were evaluated. Porosity, pH, and ignition loss were measured to verify the effectiveness of the materials. The experimental investigation revealed that the compressive strength was increased with the increasing replacement rates of NC in the BFS mortar, and in the case of water to BFS ratio of 0.45 with sodium carbonation addition contents 10 wt.%, the compressive strength for 28 days of curing reaches more than 50 MPa. Low water to BFS ratio and higher addition ratio of NC had a positive effect on the compressive strength development of mortar. Incorporating NC into BFS would affect the decrease in porosity and increase in ignition loss, leading to higher compressive strength. There was a negligible change to the compressive strength, porosity, pH, and ignition loss of BFS samples made with CH, thus, the addition rates of CH to BFS have no or little significant effect on the fundamental properties of alkali-activated cement. From the results of drying shrinkage and water penetration tests, the addition of NC and CH only to BFS exhibited poor drying shrinkage and water penetration characteristics. However, these problems may be overcome due to the use of CSA or SRA in the alkali-activated system made with NC or CH. 展开更多
关键词 alkali-activated Cement Compressive Strength Drying Shrinkage Water Penetration Characteristic
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Hydration Characteristics and Microstructure of Alkali-Activated Slag Concrete: A Review 被引量:3
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作者 Qiang Fu Mengxin Bu +3 位作者 Zhaorui Zhang Wenrui Xu Qiang Yuan Ditao Niu 《Engineering》 SCIE EI CAS CSCD 2023年第1期162-179,共18页
Alkali-activated slag concrete (AASC) is a new green building material. The amount of CO_(2) produced by AASC is 1/5th of that produced by ordinary Portland cement concrete (OPCC). In addition, AASC promotes the reuse... Alkali-activated slag concrete (AASC) is a new green building material. The amount of CO_(2) produced by AASC is 1/5th of that produced by ordinary Portland cement concrete (OPCC). In addition, AASC promotes the reuse of slag and other wastes and saves resources. Furthermore, the scope of use of slag has been expanded. The progress of the research on the hydration characteristics, microstructure, interfacial transition zone, and pore structure of AASC based on the relevant literatures was analyzed and summarized in this study. The influences of the slag composition, the type and dosage of the alkali activator, and the curing conditions on the hydration characteristics and the microstructure of the AASC were discussed. Relatively few research results on the microstructure of AASC are available, and the relevant conclusions are not completely consistent. Moreover, there are many constraints on the development of AASC (e.g., complex composition of raw materials of slag, large shrinkage deformation, and low fluidity). Therefore, further research is required. 展开更多
关键词 alkali-activated slag concrete Hydration characteristics Pore structure Inter facial transiti on zone Micr ostructure
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A machine learning model to predict unconfined compressive strength of alkali-activated slag-based cemented paste backfill 被引量:2
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作者 Chathuranga Balasooriya Arachchilage Chengkai Fan +2 位作者 Jian Zhao Guangping Huang Wei Victor Liu 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2023年第11期2803-2815,共13页
The unconfined compressive strength(UCS)of alkali-activated slag(AAS)-based cemented paste backfill(CPB)is influenced by multiple design parameters.However,the experimental methods are limited to understanding the rel... The unconfined compressive strength(UCS)of alkali-activated slag(AAS)-based cemented paste backfill(CPB)is influenced by multiple design parameters.However,the experimental methods are limited to understanding the relationships between a single design parameter and the UCS,independently of each other.Although machine learning(ML)methods have proven efficient in understanding relationships between multiple parameters and the UCS of ordinary Portland cement(OPC)-based CPB,there is a lack of ML research on AAS-based CPB.In this study,two ensemble ML methods,comprising gradient boosting regression(GBR)and random forest(RF),were built on a dataset collected from literature alongside two other single ML methods,support vector regression(SVR)and artificial neural network(ANN).The results revealed that the ensemble learning methods outperformed the single learning methods in predicting the UCS of AAS-based CPB.Relative importance analysis based on the bestperforming model(GBR)indicated that curing time and water-to-binder ratio were the most critical input parameters in the model.Finally,the GBR model with the highest accuracy was proposed for the UCS predictions of AAS-based CPB. 展开更多
关键词 alkali-activated slag Cemented paste backfill Machine learning Uniaxial compressive strength
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Efficient Use of Steel Slag in Alkali-Activated Blast Furnace Slag Based Geopolymer
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作者 Yu Bai Lei Wang Ying Fang 《Journal of Renewable Materials》 EI 2023年第7期3129-3141,共13页
Energy shortage and the emission of greenhouse gases have become a global problem of urgent concern.Therefore,there is an urgent need to develop a low carbon building material.Geopolymers have become a hot topic due t... Energy shortage and the emission of greenhouse gases have become a global problem of urgent concern.Therefore,there is an urgent need to develop a low carbon building material.Geopolymers have become a hot topic due to their environmental sustainability and the feasibility of immobilizing industrial waste.In this paper,steel slag(SS)fines were investigated as auxiliary materials of blast furnace slag(BFS)based geopolymer.The hydration heat properties,flowability,compressive strength,sorptivity coefficient,X-ray diffraction(XRD),and scanning electron microscopy(SEM)of the geopolymer pastes were determined.The results showed that the incorporation of SS weakened the reactivity of the BFS-based geopolymer paste and improved the flow values of the paste.The compressive strength of the geopolymer with 20%SS content reached 117 MPa at 28 d.The geopolymer specimens with high compressive strength showed a low sorptivity coefficient.The microscopic results showed that the addition of the appropriate amount of SS reduced the cracks,improved the density of the geopolymer,and produced a geopolymer composite with excellent mechanical properties. 展开更多
关键词 Blast furnace slag steel slag GEOPOLYMER alkali-activated
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Distribution of Na+and Mechanical Properties of Hardened Body of Alkali-activated Cementitious Materials
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作者 卞立波 TAO Zhi +3 位作者 王秀芳 WANG Shaohui YE Kangjun HU Xingbo 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2023年第4期849-856,共8页
To explore the distribution of and the mechanical properties(compressive strength)of the hardened body of alkali slag-fly ash cementitious materials,this study was conducted by using the XRD,FTIR,SEM/EDS,and other tes... To explore the distribution of and the mechanical properties(compressive strength)of the hardened body of alkali slag-fly ash cementitious materials,this study was conducted by using the XRD,FTIR,SEM/EDS,and other test methods in three conditions:airtight drying(AD),airtight immersion(AI),and airtight soaking(AS).The 1D distribution law of free of hardened body under standard curing conditions was explored.The experimental results show that under standard curing conditions,the 1D distribution of within 0d-3 d shows a∨-shaped distribution,within 3-7 d show a∧-shaped distribution,and within 7-28 d tends to be balanced.The test results of leaching rate show that the free was the most stable under AD conditions and the hardened body bound the most by XRD,FTIR and SEM/EDS.And the compressive strength of the hardened body was the highest.The compressive strength of 28th reached 95.9 MPa.The definite distribution of provides an important reference for the strength development and durability evaluation of the hardened body of alkaliexcited cementitious materials. 展开更多
关键词 alkali-activated cementitious materials ion migration leaching rate curing condition compressive strength
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Influence of Erosion Induced by NaCl on the Mechanical Performances of Alkali-Activated Mineral Admixtures
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作者 Jing Yu Jie Ren +2 位作者 Guangming Shen Weixiang Sun Hui Wang 《Fluid Dynamics & Materials Processing》 EI 2023年第9期2385-2398,共14页
In this paper,the influence of NaCl freeze-thaw(F-T)cycles and dry-wet(D-W)alternations on theflexural,com-pressive and bonding strengths of alkali-activatedfly ash(FA)and a blast furnace slag powder(BFS)is investi-gated... In this paper,the influence of NaCl freeze-thaw(F-T)cycles and dry-wet(D-W)alternations on theflexural,com-pressive and bonding strengths of alkali-activatedfly ash(FA)and a blast furnace slag powder(BFS)is investi-gated.The considered NaCl concentration is 3%.The effect of polypropylenefibers on the mechanical strengths is also examined.Scanning electron microscopy(SEM),thermogravimetry(TG)and X-ray diffraction(XRD)are selected to discern the mechanisms underpinning the NaCl-induced erosion.The obtained results indicate that the best results in terms of material resistance are obtained with admixtures containing 60%BFS and 40%FA in terms of mass ratio and 3%polypropylenefibers in terms of volume ratio.The maximum rates of decrease of theflexural,compressive and bonding strengths after 300 NaCl F-T cycles are 21.5%,20.3%and 22.6%,respec-tively.The corresponding rates of decrease due to NaCl D-W alternations are 28.1%,26.1%and 31.5%,respec-tively.The TG curves show that the alkali-activating activity of BFS is higher than that of FA.Moreover,in thefirst case,the microstructure of the hydration products is more compact.The results also show that NaCl F-T cycles lead to increasing cracks in the alkali-activated BFS. 展开更多
关键词 Mechanical performances alkali-activated NaCl dry-wet alternations NaCl freeze-thaw cycles MICROSTRUCTURE
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The Effect of Elevated Temperature on Bond Performance of Alkali-activated GGBFS Paste 被引量:2
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作者 郑文忠 朱晶 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2013年第4期721-725,共5页
The main reaction products were investigated by analysis of microstructure of alkali-activated ground granulated blast furnace slag (GGBFS) paste. An experimental research was performed on bond performance of alkali... The main reaction products were investigated by analysis of microstructure of alkali-activated ground granulated blast furnace slag (GGBFS) paste. An experimental research was performed on bond performance of alkali-activated GGBFS paste as a construction adhesive after exposure to 20-500℃. Through XRD analysis, a few calcium silicate hydrate, hydrotalcite and tetracalcium aluminate hydrate were determined as end products, and they were filled and packed each other at room temperature. In addition, akermanite dramatically increased at 800 ~C and above. The two key parameters, the ultimate load Pu.T and effective bond length Le, were determined using test data of carbon fiber-reinforced polymer (CFRP)-to-concrete bonded joints at elevated temperature. The experimental results indicate that the ultimate load Pu.T remains relatively stable initially and then decreases with increasing temperature. The effective bond length Le increases with increasing temperature except at 300℃. The proposed temperature-dependent effective bond length formula is shown to closely represent the test data. 展开更多
关键词 alkali-activated ggbFS paste MICROSTRUCTURE BOND effective bond length elevatedtemperature
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GGB短视频与高中数学传统教学的融合
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作者 张立磊 于萍 《科教导刊》 2024年第12期149-151,共3页
文章采用文献研究法、实验研究法分析了GGB软件对高中数学教学的意义,介绍GGB软件与高中数学传统教学融合的原则及应用策略,并对GGB短视频与高中数学传统教学融合的实践案例进行教学评估。研究发现,与高中数学传统教学模式相比,学生对GG... 文章采用文献研究法、实验研究法分析了GGB软件对高中数学教学的意义,介绍GGB软件与高中数学传统教学融合的原则及应用策略,并对GGB短视频与高中数学传统教学融合的实践案例进行教学评估。研究发现,与高中数学传统教学模式相比,学生对GGB短视频的可视化教学方式更满意,学习数学的兴趣和热情明显提高,学习效率得到一定程度的提升,充分表明了GGB短视频与高中数学线下教学的融合具有一定的应用和推广价值。 展开更多
关键词 信息技术 ggb短视频 高中数学 传统教学 混合教学
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GGB在高一函数教学中的应用研究
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作者 袁晓明 《数理化解题研究》 2024年第15期11-13,共3页
新课标指出要加强信息技术与数学教学的融合,有效运用信息技术可以提高课堂效率,培养学生的数学抽象,直观想象等核心素养.GGB作为重要的教辅工具,其动态性、互动性和易操作性等特点,使得函数知识可视化,从而有效突破高一函数教与学的难点.
关键词 ggb 高一函数 教学
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基于GGB的高中数学可视化教学研究
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作者 韩利华 《科研成果与传播》 2024年第5期0121-0124,共4页
在信息技术快速发展的背景下,各种数字化技术被广泛应用于教育领域,数字课堂建设突破了传统教学模式的束缚,有效地提高了课堂教学活力。高中数学教师结合数字技术优化教学设计,基于GeoGebra(简称GGB)软件提升数学课堂的生动立体性,发挥... 在信息技术快速发展的背景下,各种数字化技术被广泛应用于教育领域,数字课堂建设突破了传统教学模式的束缚,有效地提高了课堂教学活力。高中数学教师结合数字技术优化教学设计,基于GeoGebra(简称GGB)软件提升数学课堂的生动立体性,发挥GGB软件的可视性优势,搭建动态教学活动,有效地调动学生的学科体验,激发学生的数学学习兴趣。目前,GGB软件凭借诸多教学优势获得了师生的一致认可,在高中数学课堂获得了广泛应用。本文结合高中数学GGB软件可视化教学的优势进行了分析,并提出了具体的教学应用策略,希望可以有效提升高中数学课堂的教学质量。 展开更多
关键词 ggb 高中数学 可视化 教学策略
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基于GGB的高中数学课程可视化教学研究 被引量:3
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作者 杨慧 韩龙淑 王文静 《教学与管理》 2023年第28期33-36,共4页
立足于普通高中数学课程教学,对新教材必修课程中可高效进行可视化教学的内容,以及可视化教学的三个递进层面进行了详细的梳理与分析。为更好地优化高中数学课堂教学,提出了注重设计数学实验,引导学生深入探究、注重数学语言的互译,阐... 立足于普通高中数学课程教学,对新教材必修课程中可高效进行可视化教学的内容,以及可视化教学的三个递进层面进行了详细的梳理与分析。为更好地优化高中数学课堂教学,提出了注重设计数学实验,引导学生深入探究、注重数学语言的互译,阐释内容本质、注重经典题目的变式,发展创新思维的可视化教学实施策略,为在各类中学运用GGB可视化教学提供思路和方法。 展开更多
关键词 核心素养 可视化教学 ggb软件 高中数学课程
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干湿循环对GGBS+MgO改良黏土强度影响的试验研究 被引量:12
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作者 薄煜琳 杜延军 +1 位作者 魏明俐 刘辰阳 《岩土工程学报》 EI CAS CSCD 北大核心 2013年第S1期134-139,共6页
将MgO作为激发剂掺入GGBS制备GGBS+MgO改良黏土,同时制备等掺量水泥改良黏土作为参照样。通过无侧限抗压强度试验,研究干湿循环对GGBS+MgO改良黏土强度的影响。测试GGBS+MgO改良黏土在干湿循环后的无侧限抗压强度、pH值、变形模量和质... 将MgO作为激发剂掺入GGBS制备GGBS+MgO改良黏土,同时制备等掺量水泥改良黏土作为参照样。通过无侧限抗压强度试验,研究干湿循环对GGBS+MgO改良黏土强度的影响。测试GGBS+MgO改良黏土在干湿循环后的无侧限抗压强度、pH值、变形模量和质量损失率并与标准养护改良黏土进行对比,分析干湿循环级数对强度特性和pH值的影响规律。结果表明:标准养护GGBS+MgO改良黏土强度约为水泥改良黏土的1.5倍,pH值较水泥改良黏土低约0.2;干湿循环后,GGBS+MgO改良黏土强度随干湿循环级数降低较快且破坏程度逐渐增大,pH值降低明显。与水泥改良黏土相比,GGBS+MgO改良黏土抗干湿能力较差。 展开更多
关键词 黏土 水泥 ggbs+MgO 固化稳定 耐久性
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生石灰激发GGBS固化高含水率香港海相沉积物的物理力学性质研究 被引量:5
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作者 蔡光华 周伊帆 +1 位作者 潘智生 李江山 《岩土力学》 EI CAS CSCD 北大核心 2022年第2期327-336,共10页
海相沉积物处置已成为一项全球范围的挑战。在传统固化/稳定化方法中,环境污染严重的波兰特水泥(PC)是一种被广泛使用的固化剂。在此背景下,一种环境友好型的固化剂(生石灰与粒化高炉矿渣(简称GGBS)的混合料)取代PC来用在土壤改良领域... 海相沉积物处置已成为一项全球范围的挑战。在传统固化/稳定化方法中,环境污染严重的波兰特水泥(PC)是一种被广泛使用的固化剂。在此背景下,一种环境友好型的固化剂(生石灰与粒化高炉矿渣(简称GGBS)的混合料)取代PC来用在土壤改良领域。使用生石灰激发GGBS固化处理高含水率海相沉积物,并与PC固化海相沉积物进行比较。通过物理、化学试验及无侧限抗压强度试验分析了生石灰-GGBS固化海相沉积物的物理、化学和强度特性。结果表明:与PC固化海相沉积物相比,生石灰-GGBS固化沉积物具有体积收缩大、含水率低和密度略高的物理特性。随着生石灰比例的降低和养护时间的延长,生石灰-GGBS固化沉积物的pH值逐渐降低。生石灰-GGBS固化沉积物的无侧限抗压强度呈先增大(生石灰:固化剂为0.05~0.15)后减小(生石灰:固化剂为0.15~0.3)再增大(生石灰:固化剂为0.3~0.4)的趋势;当生石灰与固化剂的比值为0.15及0.4时,强度达到最大值;当生石灰与固化剂的比值为0.15时,生石灰-GGBS固化沉积物达到的峰值强度是相同条件下PC固化沉积物强度的1.4倍。该研究结果证实了GGBS与少量生石灰组合可以替代PC来固化高含水率的天然沉积物。 展开更多
关键词 海洋沉积物 生石灰 粒化高炉矿渣(ggbs) 生石灰-固化剂比 力学性能
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淋滤条件下GGBS-MgO固化铅污染黏土强度与溶出特性研究 被引量:15
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作者 薄煜琳 于博伟 +1 位作者 杜延军 魏明俐 《岩土力学》 EI CAS CSCD 北大核心 2015年第10期2877-2891,2906,共16页
以粒化高炉矿渣粉-氧化镁(GGBS-MgO)固化铅污染黏土为研究对象,通过半动态淋滤试验,对GGBS-MgO在酸雨作用下的强度特性及溶出特性进行研究。通过对GGBS-MgO固化铅污染黏土半动态淋滤后pH值、针刺深度、无侧限抗压强度及浸出液中[Pb]、... 以粒化高炉矿渣粉-氧化镁(GGBS-MgO)固化铅污染黏土为研究对象,通过半动态淋滤试验,对GGBS-MgO在酸雨作用下的强度特性及溶出特性进行研究。通过对GGBS-MgO固化铅污染黏土半动态淋滤后pH值、针刺深度、无侧限抗压强度及浸出液中[Pb]、[Ca]、[Mg]元素浓度的测试,分析淋滤液初始pH值、掺量以及含铅不含铅对GGBS-MgO固化土强度特性的影响,讨论了初始淋滤液pH值、固化剂掺量对GGBS-MgO固化铅污染土累积铅、钙、镁溶出质量以及铅有效扩散系数的影响规律。结果表明,半动态淋滤试验使试样无侧限抗压强度qu较标准养护39d试样降低了2%~53%,且淋滤液初始pH=2对试样qu影响最大;在相同掺量、相同淋滤液初始pH值时,GGBS-MgO固化未污染土半动态淋滤后qu较水泥固化未污染土qu提高了12%~43%;且当固化剂掺量为18%时,固化铅污染土强度特性较水泥有明显优势,约为水泥固化铅污染土强度的1.3~1.8倍;且相同配比时,淋滤液初始pH=2表层的pH值约为pH=3、4、5、7的1/2;随着淋滤液初始pH值、半动态淋滤后qu及内部pH值的增加,针刺深度减小;针贯入阻力与qu存在幂指数关系。此外,累积铅、钙、镁溶出质量随着初始淋滤液pH值、固化剂掺量的增加而减少,在初始淋滤液pH=2时,Ai,Pb、Ai,Ca、Ai,Mg分别约为pH=3、4、5和7的29~222倍、1.7~4.4倍和12.0~80.3倍;固化剂掺量为12%时的累积溶出质量约是18%掺量时的1.1~2.0倍;铅有效扩散系数De随着初始淋滤液pH值的增加而降低,初始淋滤液pH=2时的De比pH=3~7的De高约3~5个数量级;且低于水泥固化铅污染土De,当初始淋滤液pH=7时,GGBS-MgO固化土De相比于水泥固化土低1~2个数量级。 展开更多
关键词 粒化高炉矿渣粉-氧化镁(ggbs-MgO) 固化/稳定化 半动态淋滤 铅污染 无侧限抗压强度 有效扩散系数
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Clayey soil stabilization using alkali-activated volcanic ash and slag 被引量:8
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作者 Hania Miraki Nader Shariatmadari +3 位作者 Pooria Ghadir Soheil Jahandari Zhong Tao Rafat Siddique 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2022年第2期576-591,共16页
Lime and Portland cement are the most widely used binders in soil stabilization projects.However,due to the high carbon emission in cement production,research on soil stabilization by the use of more environmentally-f... Lime and Portland cement are the most widely used binders in soil stabilization projects.However,due to the high carbon emission in cement production,research on soil stabilization by the use of more environmentally-friendly binders with lower carbon footprint has attracted much attention in recent years.This research investigated the potential of using alkali-activated ground granulated blast furnace slag(GGBS)and volcanic ash(VA)as green binders in clayey soil stabilization projects,which has not been studied before.The effects of different combinations of VA with GGBS,various liquid/solid ratios,different curing conditions,and different curing periods(i.e.7 d,28 d and 90 d)were investigated.Compressive strength and durability of specimens against wet-dry and freeze-thaw cycles were then studied through the use of mechanical and microstructural tests.The results demonstrated that the coexistence of GGBS and VA in geopolymerization process was more effective due to the synergic formation of N-A-S-H and C-(A)-S-H gels.Moreover,although VA needs heat curing to become activated and develop strength,its partial replacement with GGBS made the binder suitable for application at ambient temperature and resulted in a remarkably superior resistance against wet-dry and freeze-thaw cycles.The carbon embodied of the mixtures was also evaluated,and the results confirmed the low carbon footprints of the alkali-activated mixtures.Finally,it was concluded that the alkali-activated GGBS/VA could be promisingly used in clayey soil stabilization projects instead of conventional binders. 展开更多
关键词 Soil stabilization alkali-activated material Volcanic ash(VA) Ground granulated blast furnace slag(ggbs) Curing condition DURABILITY
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The Durability of Alkali-Activated Materials in Comparison with Ordinary Portland Cements and Concretes:A Review 被引量:17
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作者 Aiguo Wang Yi Zheng +4 位作者 Zuhua Zhang Kaiwei Liu Yan Li Liang Shi Daosheng Sun 《Engineering》 SCIE EI 2020年第6期695-706,共12页
China is the largest producer and user of ordinary Portland cement(OPC),and the rapid growth of infrastructure development demands more sustainable building materials for concrete structures.Alkali-activated materials... China is the largest producer and user of ordinary Portland cement(OPC),and the rapid growth of infrastructure development demands more sustainable building materials for concrete structures.Alkali-activated materials(AAMs)are a new type of energy-saving and environmentally friendly building material with a wide range of potential applications.This paper compares the durability of AAMs and 0 PC-based materials un der sulfate attack,acid corrosion,carb on ation,and chloride penetratio n.Different AAMs have shown distinct durability properties due to different compositions being formed when different raw materials are used.According to the calcium(Ca)concentration of the raw materials,this paper interprets the deterioration mechanisms of three categories of AAMs:calcium-free,low-calcium,and calcium-rich.Conflicts found in the most recent research are highlighted,as they raise concerns regarding the consistenee and long-term properties of AAMs.Nevertheless,AAMs show better durability performances than OPC-based materials in general. 展开更多
关键词 alkali-activated materials GEOPOLYMER DURABILITY Ordinary Portland cement Deterioration mechanism
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Comparison of Hydration Properties between Cement-GGBS-fly ash Blended Binder and Cement-GGBS-steel slag Blended Binder 被引量:2
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作者 王强 阎培渝 YANG Jianwei 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2014年第2期273-277,共5页
The hydration properties of cement-GGBS-fly ash blended binder and cement-GGBS-steel slag blended binder were compared. The experimental results show that the hydration rate of cement-GGBS- steel slag blended binder i... The hydration properties of cement-GGBS-fly ash blended binder and cement-GGBS-steel slag blended binder were compared. The experimental results show that the hydration rate of cement-GGBS- steel slag blended binder is higher than that of cement-GGBS-fly ash blended binder within 28 days, but lower than the latter after 28 days. The hydration of cement-GGBS-steel slag blended binder tends to produce more Ca(OH)2 than the hydration of cement-GGBS-fly ash blended binder, especially at late ages. Cement-GGBS- steel slag mortar exhibits higher strength than cement-GGBS-fly ash mortar within 28 days, but at late ages, it exhibits similar compressive strength with eement-GGBS-fly ash mortar and even slightly lower bending strength than cement-GGBS-fly ash mortar. Cement-GGBS-steel slag paste has finer early pore structure but coarser late pore structure than cement-GGBS-fly ash paste. Cement-GGBS-steel slag paste can get satisfied late pore structure and cement-GGBS-steel slag mortar can get satisfied late strength as compared with pure cement paste and pure cement mortar, respectively. 展开更多
关键词 steel slag fly ash ggbs HYDRATION
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Magnesia Modification of Alkali-Activated Slag Fly Ash Cement 被引量:5
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作者 沈卫国 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2011年第1期121-125,共5页
A new type of magnesia modification alkali-activated cement was prepared, the strength, setting time, shrinkage ratio and cracking behavior, as well as the composition and structure of the hydration product were inves... A new type of magnesia modification alkali-activated cement was prepared, the strength, setting time, shrinkage ratio and cracking behavior, as well as the composition and structure of the hydration product were investigated. The results indicate that the setting time of this cement is similar to that of the ordinary commercial cements; its strength reaches the standard of 42.5 degree cement, its cracking resistance has been remarkably improved because of the micro-aggregate effect of fly ash and shrinkage compensating of magnesia. 展开更多
关键词 alkali-activated cement CRACK MAGNESIA volume stability HYDRATION
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Development of Cementitious Materials Utilizing Alkali-activated Yellow River Silt 被引量:6
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作者 WANG Baomin WANG Wanli +5 位作者 LIANG Xiaoxia LIU Hui HAN Junnan ZHAO Lu YANG Xingxing YAN Jifei 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2021年第3期364-373,共10页
The possibility of preparing cementitious materials by the alkali-activated method using Yellow River sediment(The second largest river in China)as raw material and the modification effect on different slag addition w... The possibility of preparing cementitious materials by the alkali-activated method using Yellow River sediment(The second largest river in China)as raw material and the modification effect on different slag addition were investigated.Sodium silicate and calcium hydroxide were used as the activator,and the specimens were prepared by the press molding method.The hydration process,hydration products,pore characteristics,and mechanical properties were investigated using SEM/EDS,FTIR,TG/DTG,XRD,MIP,and uniaxial compressive strength experiments,respectively.The results showed that the compressive strength of the modified yellow river silt-based cementitious material was significantly increased when the water glass dosage was 12 wt%(Ms=1.8)and the slag dosage was 40%,and its 90-day maximum compressive strength could reach 53 MPa. 展开更多
关键词 yellow river silt alkali-activation blast-furnace slag compression molding
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