新吹填淤泥处于"稀泥汤"状态,工程特性极差,几乎无承载力,现有真空预压技术加固效果不理想,地基有效加固深度小,土体强度增长有限。为此,提出了"真空预压联合化学加固"的新思路。室内采用3种环保型化学加固剂设计了...新吹填淤泥处于"稀泥汤"状态,工程特性极差,几乎无承载力,现有真空预压技术加固效果不理想,地基有效加固深度小,土体强度增长有限。为此,提出了"真空预压联合化学加固"的新思路。室内采用3种环保型化学加固剂设计了3种真空预压联合化学加固方案(VPCT1、VPCT2、VPCT3)和1种纯化学加固方案(CT),与现行真空预压加固方案(VPT)进行了对比试验研究。研究结果表明:(1)添加有效的化学加固剂后,新吹填淤泥在抽真空前较短的静置时间内就基本完成了自重沉积过程;(2)化学加固剂选取得当能有效提高土体的加固效果;(3)宏观上,VPCT3方案加固效果较均匀,加固后土体中黏粒含量明显降低、湿密度最大,孔隙比降低幅度明显,无侧限抗压强度也最大,为66.7 k Pa(为VPT方案的3.5倍);(4)微观上,VPCT3方案加固后,土颗粒之间的孔隙总面积、孔隙平均周长、总孔隙数、孔隙比、孔隙率等最小,单元体之间有良好的定向度、排序性最好,连结方式以面-面为主导,相互之间接触紧密,团聚现象最明显。因此,相对于现行的真空预压技术而言,VPCT3方案土体加固效果非常明显,也较均匀,可以进一步开展现场试验研究,探讨其付诸于工程实践的可行性。展开更多
MnSAPO-34 molecular sieves were synthesized by vapor-phase transport (VPT) method using triethylamine (Et3N) as a structure directing agent (SDA), and were characterized by XRD, BET, SEM, UV-Vis, FT-IR, and TG a...MnSAPO-34 molecular sieves were synthesized by vapor-phase transport (VPT) method using triethylamine (Et3N) as a structure directing agent (SDA), and were characterized by XRD, BET, SEM, UV-Vis, FT-IR, and TG analy- ses. The influence of the zeolite crystallization conditions and the dry-gel composition were investigated. The results showed that the synthesis conditions had an effect on the crystalline phase. Pure MnSAPO-34 had been obtained when it was crystallized at 140 C for 18 hours. The ratio of MnO/A1203 in the starting gel ranging from 0.1 to 0.2 resulted in pure MnSAPO-34 with a CHA topology. Beyond this scope, MnSAPO-5 with an AFI topology structure was obtained as an impurity substance. UV-Vis spectroscopy and FT-IR spectroscopy study indicated that manganese was incorporated into the framework of the molecular sieve. The catalytic performance of MnSAPO-34 molecular sieve was tested by ketalization reaction of l, 2-propanediol with cyclohexanone. High yield of cyclohexanone-1, 2-propanediol ketal was obtained.展开更多
文摘新吹填淤泥处于"稀泥汤"状态,工程特性极差,几乎无承载力,现有真空预压技术加固效果不理想,地基有效加固深度小,土体强度增长有限。为此,提出了"真空预压联合化学加固"的新思路。室内采用3种环保型化学加固剂设计了3种真空预压联合化学加固方案(VPCT1、VPCT2、VPCT3)和1种纯化学加固方案(CT),与现行真空预压加固方案(VPT)进行了对比试验研究。研究结果表明:(1)添加有效的化学加固剂后,新吹填淤泥在抽真空前较短的静置时间内就基本完成了自重沉积过程;(2)化学加固剂选取得当能有效提高土体的加固效果;(3)宏观上,VPCT3方案加固效果较均匀,加固后土体中黏粒含量明显降低、湿密度最大,孔隙比降低幅度明显,无侧限抗压强度也最大,为66.7 k Pa(为VPT方案的3.5倍);(4)微观上,VPCT3方案加固后,土颗粒之间的孔隙总面积、孔隙平均周长、总孔隙数、孔隙比、孔隙率等最小,单元体之间有良好的定向度、排序性最好,连结方式以面-面为主导,相互之间接触紧密,团聚现象最明显。因此,相对于现行的真空预压技术而言,VPCT3方案土体加固效果非常明显,也较均匀,可以进一步开展现场试验研究,探讨其付诸于工程实践的可行性。
基金supported by the Key Laboratory of Fine Chemicals,Jiangsu Provincefinancially supported by the Jiangsu Province Science and Technology Support Program (BE2011651)the Key University Science Research Project of Jiangsu Province (11KJA610002)
文摘MnSAPO-34 molecular sieves were synthesized by vapor-phase transport (VPT) method using triethylamine (Et3N) as a structure directing agent (SDA), and were characterized by XRD, BET, SEM, UV-Vis, FT-IR, and TG analy- ses. The influence of the zeolite crystallization conditions and the dry-gel composition were investigated. The results showed that the synthesis conditions had an effect on the crystalline phase. Pure MnSAPO-34 had been obtained when it was crystallized at 140 C for 18 hours. The ratio of MnO/A1203 in the starting gel ranging from 0.1 to 0.2 resulted in pure MnSAPO-34 with a CHA topology. Beyond this scope, MnSAPO-5 with an AFI topology structure was obtained as an impurity substance. UV-Vis spectroscopy and FT-IR spectroscopy study indicated that manganese was incorporated into the framework of the molecular sieve. The catalytic performance of MnSAPO-34 molecular sieve was tested by ketalization reaction of l, 2-propanediol with cyclohexanone. High yield of cyclohexanone-1, 2-propanediol ketal was obtained.