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优化三聚氰胺 - 甲醛/固体城市废弃物复合板的阻燃性和耐久性

Optimizing Flame Retardancy and Durability of Melamine-Formaldehyde/Solid-Urban-Waste Composite Panels.

作者信息

Esposito Corcione Carola, Ferrari Francesca, Striani Raffaella, Dubrulle Laura, Visconti Paolo, Zammarano Mauro, Greco Antonio

机构信息

Department of Engineering for Innovation, University of Salento, 73100 Lecce, Italy.

National Institute of Standards and Technology NIST, 100 Bureau Drive, Gaithersburg, MD 20899, USA.

出版信息

Polymers (Basel). 2021 Feb 26;13(5):712. doi: 10.3390/polym13050712.

Abstract

In our previous study, an innovative method for sterilization, inertization, and valorization of the organic fraction of municipal solid waste (OFMSW), to be recycled in the production of composite panels, was developed. In this follow-up work, the effects of fire retardants on fire performance, durability, and the mechanical properties of the composite panels based on OFMSW and melamine-formaldehyde resin were investigated. The performance of panels without fire retardants (control panels) was compared to panels containing either mono-ammonium phosphate (PFR) or aluminium trihydrate (ATH) at a mass fraction of 1% and 10% (modified panels). As shown by cone calorimetry, the total heat released was already low (about 31 MJ/m at 50 kW/m) in the control panels, further decreased in the modified panels with the addition of fire retardants, and reached the lowest value (about 1.4 MJ/m) with 10% mass fraction of PFR. Hence, the addition of fire retardants had a beneficial effect on the response to fire of the panels; however, it also reduced the mechanical properties of the panels as measured by flexural tests. The deterioration of the mechanical properties was particularly obvious in panels containing 10% mass fraction of fire retardants, and they were further degraded by artificial accelerated weathering, carried out by boiling tests. Ultimately, the panels containing PFR at a mass fraction of 1% offered the best balance of fire resistance, durability, and mechanical performance within the formulations investigated in this study.

摘要

在我们之前的研究中,开发了一种用于城市固体废物有机部分(OFMSW)的灭菌、惰化和增值的创新方法,以便在复合板生产中进行回收利用。在这项后续工作中,研究了阻燃剂对基于OFMSW和三聚氰胺 - 甲醛树脂的复合板的防火性能、耐久性和机械性能的影响。将不含阻燃剂的板材(对照板材)与含有质量分数为1%和10%的磷酸一铵(PFR)或三水合铝(ATH)的板材(改性板材)的性能进行了比较。锥形量热法表明,对照板材的总热释放量已经很低(在50kW/m²时约为31MJ/m²),在添加阻燃剂的改性板材中进一步降低,并且在PFR质量分数为10%时达到最低值(约1.4MJ/m²)。因此,添加阻燃剂对板材的防火响应有有益影响;然而,通过弯曲试验测量,它也降低了板材的机械性能。在含有10%质量分数阻燃剂的板材中,机械性能的劣化尤为明显,并且通过煮沸试验进行的人工加速老化使其进一步降解。最终,在本研究中所研究的配方中,质量分数为1%的含有PFR的板材在耐火性、耐久性和机械性能方面提供了最佳平衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1253/7956370/afa5327268d7/polymers-13-00712-g001.jpg

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