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Magnesium phosphate cements formulated with low grade magnesium oxide incorporating phase change materials for thermal energy storage

机译:磷酸镁水泥采用低品位氧化镁配制,含有相变材料,用于热能储存

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摘要

Magnesium Phosphate Cement (MPC) has become an essential reference for investigators seeking alternatives to the use of Ordinary Portland Cement (OPC) in building sector because of its high environmental impact. The research group developed a MPC formulated with low-grade MgO (LG-MgO) by-product, which could be considered as a sustainable MPC (sust-MPC). This research focuses on the incorporation of different percentages of Microencapsulated Phase Change Materials (MPCM) into sust-MPC, due to their ability to reduce energy consumption of heating, ventilating, and air conditioning (HVAC) systems. The study consists of an exhaustive characterization of thermal sustainable MPC (TS-MPC) dosages which incorporate air-entraining additive (AEA) and MPCM to improve their thermal behaviour. Thus, TS-MPC would reduce the use of HVAC systems contributing to the decrease of CO2 emissions and increasing energy efficiency in buildings. Moreover, properties such as bulk density, porosity, thermal conductivity, modulus of elasticity, compressive strength, and flexural strength are analysed to evaluate the potential use of these cements as a part of a passive conditioning system. Results show the proper behaviour of these cements to reduce thermal oscillation in buildings. Experimental results demonstrated the relation between the amount of the MPCM and the AEA percentage as well as the thermal and mechanical properties of the TS-MPC due to their contribution to increase the porosity. Furthermore, it should be noted the increase of porosity and the reduction of thermal conductivity of the optimal formulation, which are 60% higher and 50% lower than the sust-MPC obtained without MPCM and additive, respectively.
机译:磷酸镁水泥(MPC)由于其对环境的高影响力,已成为在建筑领域寻求使用普通波特兰水泥(OPC)替代品的研究人员的重要参考。该研究小组开发了一种由低级氧化镁(LG-MgO)副产物配制的MPC,可以将其视为可持续的MPC(sust-MPC)。这项研究着重于将不同百分比的微囊化相变材料(MPCM)掺入sust-MPC中,因为它们具有降低供暖,通风和空调(HVAC)系统能耗的能力。该研究包括热可持续MPC(TS-MPC)剂量的详尽表征,该剂量结合了引气添加剂(AEA)和MPCM以改善其热行为。因此,TS-MPC将减少HVAC系统的使用,从而有助于减少CO2排放并提高建筑物的能效。此外,还分析了诸如堆积密度,孔隙率,导热系数,弹性模量,抗压强度和抗弯强度之类的特性,以评估这些水泥作为被动调理系统的一部分的潜在用途。结果表明,这些水泥具有适当的性能,可减少建筑物中的热振荡。实验结果表明,MPCM的量与AEA百分比之间的关系以及TS-MPC的热和机械性能归因于它们对增加孔隙率的贡献。此外,应该注意的是,最佳配方的孔隙率增加和热导率降低,分别比不使用MPCM和添加剂时获得的ust-MPC高60%和低50%。

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