为解决普通喷射混凝土凝结时间长、早期强度低和抗渗性能差等问题,通过外掺纳米水化硅酸钙(calcium-silicate-hydrate,C-S-H)凝胶的方式对其进行性能提升。研究纳米C-S-H凝胶对喷射混凝土凝结时间、抗压强度及抗渗等性能的影响,并采用...为解决普通喷射混凝土凝结时间长、早期强度低和抗渗性能差等问题,通过外掺纳米水化硅酸钙(calcium-silicate-hydrate,C-S-H)凝胶的方式对其进行性能提升。研究纳米C-S-H凝胶对喷射混凝土凝结时间、抗压强度及抗渗等性能的影响,并采用水化热测试、X射线衍射(X-ray diffraction,XRD)和扫描电子显微镜(scanning electron microscope,SEM)等技术探究纳米C-S-H凝胶提升喷射混凝土性能的机理。结果表明:纳米C-S-H凝胶可明显缩短掺速凝剂水泥净浆的凝结时间,与基准组相比,掺2%纳米C-S-H凝胶的喷射混凝土1 d抗压强度可提高19.0%,渗水深度降低31.4%。机理分析表明,纳米C-S-H凝胶的晶核和填充效应能够促进水泥水化且可以致密混凝土内部结构,从而提升喷射混凝土的各项性能。展开更多
The molecular recyclability of poly (ethylene terephthalate) (PET) and three semi-aromatic polyesters poly (phloretic acid) (poly-H), poly (dihydroferulic acid) (poly-G), and poly (dihydrosinapinic acid) (poly-S) is e...The molecular recyclability of poly (ethylene terephthalate) (PET) and three semi-aromatic polyesters poly (phloretic acid) (poly-H), poly (dihydroferulic acid) (poly-G), and poly (dihydrosinapinic acid) (poly-S) is evaluated in this study. PET is an extensively used aromatic polyester, and poly-H, poly-G, and poly-S can be considered semi-aromatic poly (lactic acid) modifications. All these polyesters have been depolymerized at neutral pH and by acid- and base-catalyzed hydrolysis at two temperatures, i.e., 50˚C and 80˚C. Base-catalyzed depolymerization of virgin PET leads to an isolated yield of 38% after 48 hours of reaction at 80˚C. Contrary to these results for PET, almost all the monomers of the semi-aromatic polyesters poly-H, poly-G, and poly-S are recovered with isolated yields larger than 90% at the same temperature after 15 minutes in a facile manner. A shrinking particle model used to determine the global kinetics of the base-catalyzed depolymerization showed that the rate rises with increasing temperature. Using the shrinking particle model, the intrinsic reaction rate constants were determined. It has been demonstrated that the rate coefficients of the depolymerization of the semi-aromatic polyesters poly-H, poly-G, and poly-S are between 2 and 3 orders of magnitude higher than those for PET.展开更多
文摘为解决普通喷射混凝土凝结时间长、早期强度低和抗渗性能差等问题,通过外掺纳米水化硅酸钙(calcium-silicate-hydrate,C-S-H)凝胶的方式对其进行性能提升。研究纳米C-S-H凝胶对喷射混凝土凝结时间、抗压强度及抗渗等性能的影响,并采用水化热测试、X射线衍射(X-ray diffraction,XRD)和扫描电子显微镜(scanning electron microscope,SEM)等技术探究纳米C-S-H凝胶提升喷射混凝土性能的机理。结果表明:纳米C-S-H凝胶可明显缩短掺速凝剂水泥净浆的凝结时间,与基准组相比,掺2%纳米C-S-H凝胶的喷射混凝土1 d抗压强度可提高19.0%,渗水深度降低31.4%。机理分析表明,纳米C-S-H凝胶的晶核和填充效应能够促进水泥水化且可以致密混凝土内部结构,从而提升喷射混凝土的各项性能。
文摘The molecular recyclability of poly (ethylene terephthalate) (PET) and three semi-aromatic polyesters poly (phloretic acid) (poly-H), poly (dihydroferulic acid) (poly-G), and poly (dihydrosinapinic acid) (poly-S) is evaluated in this study. PET is an extensively used aromatic polyester, and poly-H, poly-G, and poly-S can be considered semi-aromatic poly (lactic acid) modifications. All these polyesters have been depolymerized at neutral pH and by acid- and base-catalyzed hydrolysis at two temperatures, i.e., 50˚C and 80˚C. Base-catalyzed depolymerization of virgin PET leads to an isolated yield of 38% after 48 hours of reaction at 80˚C. Contrary to these results for PET, almost all the monomers of the semi-aromatic polyesters poly-H, poly-G, and poly-S are recovered with isolated yields larger than 90% at the same temperature after 15 minutes in a facile manner. A shrinking particle model used to determine the global kinetics of the base-catalyzed depolymerization showed that the rate rises with increasing temperature. Using the shrinking particle model, the intrinsic reaction rate constants were determined. It has been demonstrated that the rate coefficients of the depolymerization of the semi-aromatic polyesters poly-H, poly-G, and poly-S are between 2 and 3 orders of magnitude higher than those for PET.