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Synthesis of Carbon Foam from Waste Artificial Marble Powder and Carboxymethyl Cellulose via Electron Beam Irradiation and Its Characterization

机译:电子束辐射从废人造大理石粉和羧甲基纤维素合成碳泡沫及其表征

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摘要

Carbon foams were prepared by carbonization of carboxymethyl cellulose (CMC)/waste artificial marble powder (WAMP) composites obtained via electron beam irradiation (EBI); these composites were prepared by mixing eco-friendly CMC with WAMP as the fillers for improved their poor mechanical strength. Gel fractions of the CMC/WAMP composites obtained at various EBI doses were investigated, and it was found that the CMC/WAMP composites obtained at an EBI dose of 80 kGy showed the highest gel fraction (95%); hence, the composite prepared at this dose was selected for preparing the carbon foam. The thermogravimetric analysis of the CMC/WAMP composites obtained at 80 kGy; showed that the addition of WAMP increased the thermal stability and carbon residues of the CMC/WAMP composites at 900 °C. SEM images showed that the cell walls of the CMC/WAMP carbon foams were thicker more than those of the CMC carbon foam. In addition, energy dispersive X-ray spectroscopy showed that the CMC/WAMP carbon foams contained small amounts of aluminum, derived from WAMP. The results confirmed that the increased WAMP content and hence increased aluminum content improved the thermal conductivity of the composites and their corresponding carbon foams. Moreover, the addition of WAMP increased the compressive strength of CMC/WAMP composites and hence the strength of their corresponding carbon foams. In conclusion, this synthesis method is encouraging, as it produces carbon foams of pore structure with good mechanical properties and thermal conductivity.
机译:碳泡沫材料是通过将羧甲基纤维素(CMC)/废人造大理石粉末(WAMP)复合材料碳化而制备的,该复合材料是通过电子束照射(EBI)获得的;这些复合材料是通过将环保型CMC与WAMP作为填充剂混合来制备的,以改善其较差的机械强度。研究了在不同EBI剂量下获得的CMC / WAMP复合材料的凝胶分数,发现以80 kGy EBI剂量获得的CMC / WAMP复合材料显示出最高的凝胶分数(95%)。因此,选择以此剂量制备的复合材料以制备碳泡沫。 80 kGy下获得的CMC / WAMP复合材料的热重分析;结果表明,加入WAMP可以提高CMC / WAMP复合材料在900°C时的热稳定性和碳残留量。 SEM图像显示,CMC / WAMP碳泡沫的孔壁比CMC碳泡沫的孔壁更厚。此外,能量色散X射线光谱显示CMC / WAMP碳泡沫包含少量的铝,这些铝源自WAMP。结果证实,增加的WAMP含量并因此增加的铝含量改善了复合材料及其相应的碳泡沫的导热性。而且,WAMP的添加提高了CMC / WAMP复合材料的抗压强度,并因此提高了它们相应的碳泡沫的强度。总之,这种合成方法令人鼓舞,因为它可以生产出具有良好机械性能和导热性的孔结构碳泡沫。

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