首页> 外文期刊>Open Journal of Civil Engineering >Hardening Properties of Foamed Concrete with Circulating Fluidized Bed Boiler Ash, Blast Furnace Slag, and Desulfurization Gypsum as the Binder
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Hardening Properties of Foamed Concrete with Circulating Fluidized Bed Boiler Ash, Blast Furnace Slag, and Desulfurization Gypsum as the Binder

机译:循环流化床锅炉,高炉炉渣和脱硫石膏作为粘合剂的泡沫混凝土硬化性能

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Recently, a large amount of circulating fluidized bed boiler ash (CFBA) and desulfurization gypsum (DSG) has been produced, and it is essential to develop technology to utilize them. These materials have CaO and SO _( 3 ) , which are considered to be a stimulant for blast furnace slag (BFS). This study presents an experimental investigation of the compressive strength and heavy metal ions immobilization properties of cement-free materials comprising CFBA, BFS, and DSG. The feasibility of manufacturing foamed concrete using these materials was examined, and field test of foamed concrete was conducted. Experimentally, the flow, compressive strength, and heavy metal ions concentration were evaluated via inductively coupled plasma atomic emission spectroscopy (ICP - AES) of the paste and foamed concrete. The experimental investigation revealed the self-healing hardening ability of fluidized bed boiler ash. In addition, the compressive strength was increased with the increasing replacement rates of BFS and DSG in the CFBA paste, and the compressive strength of 14.6 - 17.2 MPa was recorded over 28 days of curing. From the result obtained, the feasibility of manufacturing foamed concrete with a foam volume of 120 L, incorporating the aforementioned materials, is confirmed. It was also found that after 28 days of age, a 7.9-MPa compressive strength of the foamed concrete was attained, and heavy metal ions elution in this foamed concrete was also significantly reduced. Therefore, CFBA, BFS, and DSG could be used as a binder for the foamed concrete.
机译:最近,已经生产了大量循环的流化床锅炉(CFBA)和脱硫石膏(DSG),并且必须开发技术利用它们。这些材料具有CaO等_(3),其被认为是高炉炉渣(BFS)的兴奋剂。本研究提出了一种实验研究,对包含CFBA,BFS和DSG的水泥材料的压缩强度和重金属离子固定性能的实验研究。检查了使用这些材料制造发泡混凝土的可行性,进行了泡沫混凝土的现场试验。通过实验地,通过糊状和发泡混凝土的电感耦合等离子体原子发射光谱(ICP - AES)评估流动,抗压强度和重金属离子浓度。实验研究揭示了流化床锅炉灰的自愈硬化能力。此外,随着CFBA浆料中的增强BFS和DSG的替代速率增加,抗压强度增加,抗压强度为14.6-17.2MPa,在28天的固化中记录。从得到的结果中,确认了具有120L的泡沫体积的制造发泡混凝土的可行性,其结合了上述材料。还发现,在28天后,达到7.9MPa抗压强度,并且该发泡混凝土中的重金属离子洗脱也显着降低。因此,CFBA,BFS和DSG可以用作发泡混凝土的粘合剂。

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