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国家教育部博士点基金(20110072120046)

作品数:6 被引量:73H指数:4
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CFA基地聚合物协同处置MSWIFA及其安全性研究被引量:5
2013年
利用高钙粉煤灰(CFA)基地聚合物协同处置城市垃圾焚烧飞灰(MSWIFA),研究了CFA—MSWIFA复合地聚合物中MSWIFA的掺量、养护制度、反应产物及其安全性。结果表明:CFA—MSWIFA复合地聚合物中MSWIFA的掺量宜控制在10%以内;较佳的养护制度是室温薄膜包覆养护。CFA基地聚合物反应产物中,地聚合物与水化产物并存;与CFA基地聚合物相比,CFA-MSWIFA复合地聚合物体系的水化系数提高,而聚合系数降低,反应产物中水化产物的比重增加。利用CFA基地聚合物处置5%-15%MSWIFA,其重金属浸出浓度均远低于标准最高限值,安全性可靠。
郭晓潞施惠生徐名凤
关键词:高钙粉煤灰垃圾焚烧飞灰地聚合物重金属
高钙粉煤灰地聚合物固化/稳定重金属的试验研究被引量:5
2013年
利用高钙粉煤灰研制地聚合物来固化/稳定重金属,采用静态和动态浸出试验研究了高钙粉煤灰地聚合物对重金属的固化/稳定效果,并进一步探索了重金属的迁移机制和长期安全性。研究表明:高钙粉煤灰地聚合物分别固化/稳定0.025%的铅,0.025%的铬和0.01%的汞后,经静态浸出试验,重金属浸出浓度远低于规定的上限值,且固化率均在98%以上。经动态浸出试验,重金属的实时浸出浓度低于规定的上限值,累积浸出浓度在72h后趋于稳定;固化体中重金属的径向分布相似;重金属的有效扩散系数和浸出率非常低,长期安全性优良。
郭晓潞施惠生
关键词:高钙粉煤灰地聚合物重金属浸出浓度
Influence of Thermally Treated Flue Gas Desulfurization(FGD) Gypsum on Performance of the Slag Powder Concrete被引量:1
2013年
The feasibility of flue gas desulphurization(FGD) as concrete admixture was studied. A combined concrete admixture of the thermally-treated FGD gypsum and slag powder was explored. The FGD gypsum was roasted at 200 ℃ for 60 min and then mixed with the slag powder to form FGD gypsum-slag powder combined admixture in which the SO 3 content was 3.5wt%. Cement was partially and equivalently replaced by slag powder alone or FGD gypsum-slag powder, at concentration of 25wt%, 40wt%, and 50wt%, respectively. The setting times, hydration products, total porosity and pore size distributions of the paste were determined. The compressive strength and drying shrinkage of cement mortar and concrete were also tested. The experimental results show that, in the presence of FGD gypsum, the setting times are much slower than those of pastes in the absence of FGD gypsum. The combination of FGD gypsum and slag powder provides synergistic benefits above that of slag powder alone. The addition of FGD gypsum provides benefit by promoting ettringite formation and forms a compact microstructure, increasing the compressive strength and reduces the drying shrinkage of cement mortar and concrete.
GUO XiaoluSHI Huisheng
关键词:FGD石膏矿渣微粉干燥收缩率混凝土掺合料
Static and Dynamic Leaching Experiments of Heavy Metals from Fly Ash-Based Geopolymers被引量:3
2013年
The feasibility of high calcium fly ash(CFA)-based geopolymers to fix heavy metals were studied.The CFA-based geopolymers were prepared from CFA,flue gas desulfurization gypsum(FGDG),and water treatment residual(WTR).The static leaching showed that heavy metals concentrations from CFAbased geopolymers were lower than their maximum concentration limits according to the U.S.environmental protection law.And the encapsulated and fixed ratios of heavy metals by the CFA-based geopolymers were 96.02%-99.88%.The dynamic real-time leaching experiment showed that concentration of Pb(II) was less than 1.1 μg / L,Cr(VI) less than 3.25 mg / L,while Hg(II) less than 4.0 μg / L.Additionally,dynamic accumulated leaching concentrations were increased at the beginning of leaching process then kept stable.During the dynamic leaching process,heavy metals migrated and accumulated in an area near to the solid-solution interface.When small part of heavy metals in 'the accumulated area' breached through the threshold value of physical encapsulation and chemical fixation they migrated into solution.The dynamic leaching ratios and effective diffusion coefficients of heavy metals from CFA-based geopolymer were very low and the long-term security of heavy metals in CFA-based geopolymer was safe.
郭晓潞施惠生XU Mingfeng
关键词:重金属浓度高钙粉煤灰浸出实验聚合物封装重金属迁移
纳米改性CFA-MSWI复合地聚合物的耐久性被引量:4
2014年
利用城市垃圾焚烧飞灰(MSWI)和高钙粉煤灰(CFA)制备地聚合物,并采用纳米SiO2和γ-Al2O3对MSWI-CFA复合地聚合物进行改性研究,研究了纳米改性复合地聚合物的耐久性。结果表明:MSWI-CFA复合地聚合物本身具有很好的耐高温性能;化学侵蚀对复合地聚合物的影响依次为HCl溶液>NaOH溶液>Na2SO4溶液。纳米微粒对MSWI-CFA复合地聚合物的干缩性能、抗化学侵蚀性能和耐高温性能均有较好的改善作用,且纳米SiO2对地聚合物的改善作用优于纳米γ-Al2O3。SEM和BET研究进一步证实,纳米微粒能够有效改善地聚合物的微观结构和孔结构,使地聚合物大孔体积减少,体系结构更为致密,增强了地聚合物的耐久性。
郭晓潞施惠生董文靖
关键词:地聚合物耐久性
粉煤灰基地聚合物反应机理及各组分作用的研究进展被引量:58
2013年
地聚合物指采用天然矿物或固体废弃物及人工硅铝化合物为原料,在高碱性条件下通过矿物缩聚而形成的由硅氧四面体与铝氧四面体组成的三维网状聚合胶凝材料。地聚合物兼有陶瓷、水泥、高分子材料的特点,是近年来国内外新型绿色胶凝材料研究的热点。针对粉煤灰基地聚合物反应机理综述了国内外研究现状;介绍了Glukhovsky模型、受碱激发的描述性机理模型、纳米结构模型以及体积分数量化模型;并重点介绍了碱、硅铝组分、钙组分和水在地聚合反应中的作用。
施惠生夏明郭晓潞
关键词:地聚合物粉煤灰
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