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新型低碳凝胶材料固化锌污染土的试验研究以及分子动力学模拟解析
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作者 宋恒 孙新坡 +1 位作者 杨宁 卓思敏 《四川文理学院学报》 2023年第2期61-68,共8页
利用石灰石煅烧粘土水泥(LC3)混合制成的新型低碳凝胶材料和普通硅酸盐水泥(OPC)固化/稳定化锌污染土进行研究.通过毒性浸出试验和分子动力学模拟,探究固化污染土的环境安全特性及动力学特性.研究结果表明:常规养护条件下,LC3和OPC固化... 利用石灰石煅烧粘土水泥(LC3)混合制成的新型低碳凝胶材料和普通硅酸盐水泥(OPC)固化/稳定化锌污染土进行研究.通过毒性浸出试验和分子动力学模拟,探究固化污染土的环境安全特性及动力学特性.研究结果表明:常规养护条件下,LC3和OPC固化污染土无侧限抗压强度随龄期和掺量增长而提高;相同条件下,LC3固化锌污染土的强度高于OPC固化土.相较于未处理污染土,LC3固化土的锌离子浸出浓度降低了20.1~94.1倍,OPC固化土的锌离子浸出浓度降低了1.2~319.3倍.在浓度为Zn0.5时,OPC固化效率要优于LC3固化土,而浓度为Zn1.5时,LC3固化试样中锌离子迁移率则更低.通过分子动力学模型研究Zn2+的强度分布、迁移路径和扩散系数.结果表明,LC3主要是通过分子间作用、阳离子交换、吸附以及络合等形式限制锌离子的迁移,在整个纳米孔道内,锌离子的平均扩散系数为0.06×10-8m2/s. 展开更多
关键词 石灰石煅烧粘土水泥 固化/稳定化 分子动力学模拟 毒性浸出
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Degradation of limestone calcined clay cement(LC^(3))mortars under sulfate attack
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作者 Cheng Yu Zhen Li Jiaping Liu 《Low-carbon Materials and Green Construction》 2023年第1期34-47,共14页
Limestone Calcined Clay Cement(LC^(3)) is a newly proposed low-carbon cement,which can effectively reduce energy consumption and carbon emissions of the traditional cement industry without changing the basic mechanica... Limestone Calcined Clay Cement(LC^(3)) is a newly proposed low-carbon cement,which can effectively reduce energy consumption and carbon emissions of the traditional cement industry without changing the basic mechanical properties of cement-based materials.In this study,the degradation process of mortar samples of limestone and calcined clay cementitious material under sulfate attack is studied by both macroscopic and microscopic analysis.The results show that compared with pure Portland cement,the addition of calcined clay and limestone can significantly reduce the expansion rate,loss of dynamic modulus and mass loss of mortar specimens under sulfate attack.The addition of calcined clay and limestone will refine the pore size distribution of mortar specimens,then inhibiting the diffusion of sulfate and formation of corrosive products,therefore leading to a significant improvement of the sulfate resistance. 展开更多
关键词 Limestone Calcined Clay Cement(LC^(3)) Sulfate attack Expansion Sulfate penetration profiles Corrosion product
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Development of limestone calcined clay cement concrete in South China and its bond behavior with steel reinforcement 被引量:1
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作者 Zhen-yu HUANG You-shuo HUANG +6 位作者 Wen-yu LIAO Ning-xu HAN Ying-wu ZHOU Feng XING Tong-bo SUI Bin WANG Hong-yan MA 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2020年第11期892-907,共16页
Limestone calcined clay cement(LC^3),consisting of ordinary Portland cement(OPC)clinker,calcined clay,limestone powder,and gypsum,has been considered a promising solution to current challenges in the cement and concre... Limestone calcined clay cement(LC^3),consisting of ordinary Portland cement(OPC)clinker,calcined clay,limestone powder,and gypsum,has been considered a promising solution to current challenges in the cement and concrete industry,such as high carbon emissions,high energy consumption,and resource shortages.This study carries out a series of experimental investigations of LC^3-based paste,mortar,and concrete,including microstructural analyses(e.g.hydration product characterization and pore structure analysis)and macro-scale testing(e.g.workability and mechanical properties),using raw materials from south China.The results show that,in LC^3 paste,the replacement of clinker by calcined clay and limestone leads to an increased volume of small pores but decreased total volume of pores.The workability of LC^3 mortar and concrete can be readily tailored using conventional superplasticizers.When designed for comparable 28-d compressive strength,the LC^3 mortar and concrete tend to have lower early-age compressive strength,but comparable compressive strength and higher flexural strength than those of the OPC counterparts at late ages.This study also examines the bond-slip behavior between LC^3 concrete and steel bars and finds that the bond strength is comparable to that of OPC concrete with the same 28-d compressive strength,but that the LC^3 concrete-rebar interface exhibits higher bond-slip stiffness.These findings on LC^3 concrete provide fundamental information and guidance for furthering the application of LC^3 binder in structural concrete in the near future. 展开更多
关键词 Limestone calcined clay cement(LC^3) Hydration BOND-SLIP Mercury intrusion porosimetry(MIP) Scanning electron microscope(SEM) Bond strength
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