Cellulose Paper Composition as a Key Factor in Eco-Friendly Green Roof Tile Performance

被引:0
作者
Panecatl-Bernal, Yesmin [1 ]
Hernandez-Corona, Sergio [2 ]
Chavez-Portillo, Melissa [3 ]
Alvarado, Joaquin [4 ]
Hernandez-Ramos, Katia [5 ]
Martinez-Ramos, Tania [3 ]
Granada-Ramirez, Daladier-Alonso [4 ]
Mendez-Rojas, Miguel-angel [6 ]
机构
[1] Univ Tecnol Tecamachalco, Ingn Tecnol Informac & Innovac Digital, Agr Sustentable & Protegida, Av Univ Tecnol 1, Tecamachalco 75483, Puebla, Mexico
[2] Tecnol Nacl Mexico, ITS Sierra Norte Puebla, Div Ingn Ind, Jose Luis Martinez Vazquez 2000, Zacatlan 73310, Puebla, Mexico
[3] Univ Politecn Metropolitana Puebla, Ingn Biotecnol, Calle Popocatepetl S-N,Colonia 3 Cerritos, Puebla 72480, Mexico
[4] Benemerita Univ Autonoma Puebla, Ctr Invest Disposit Semicond, Inst Ciencias, Av San Claudio S-N,Ciudad Univ, Puebla 72570, Mexico
[5] Univ Popular Autonoma Estado Puebla, Sistemas Integrados Manufactura & Estrategias Cali, 21 Sur 1103, Puebla 72410, Mexico
[6] Univ Americas Puebla, Dept Ciencias Quimicobiol, ExHda Sta Catarina Martir S-N, Cholula 72810, Puebla, Mexico
来源
CHEMISTRYSELECT | 2025年 / 10卷 / 13期
关键词
Environmental Chemistry; Green Chemistry; Materials Science; Sustainable Chemistry; MECHANICAL-PROPERTIES; WASTE; PULP; PRODUCTS; FIBERS;
D O I
10.1002/slct.202406194
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This study explores the role of cellulose paper composition-comprising holocellulose, hemicellulose, cellulose, and lignin-on the physical and chemical properties of eco-friendly green roof tiles. The investigation focuses on key performance metrics including hardness, water absorption, flammability, thermal stability, and overall composition. By incorporating recycled cellulose paper, these tiles not only contribute to reducing environmental waste but also support a circular economy in the construction industry. The results demonstrate that these eco-friendly tiles exhibit a significant increase in hardness (20 HCR units higher than commercial tiles), a reduced water absorption rate of approximately 13%, and good ignition resistance up to 284 degrees C, enhancing their durability and fire safety. Advanced analytical techniques, including Scanning Electron Microscopy (SEM) and Fourier Transform Infrared Spectroscopy (FTIR), confirm the effective integration of cellulose fibers within the tile matrix, leading to a homogeneous chemical distribution. Statistical analysis further validates that these sustainable tiles outperform conventional materials in key performance areas. The findings emphasize the transformative potential of cellulose paper composition in creating sustainable, high-performance roofing materials.
引用
收藏
页数:11
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