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文献清单:“建筑材料回收”方向 | MDPI Recycling |
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期刊名:Recycling
期刊主页: https://www.mdpi.com/journal/recycling
还在为筛选文献而发愁?别急,这份“建筑材料回收”方向的文献清单,也许能为你提供灵感!
1.
Recycling Mineral Wool Waste: Towards Sustainable Construction Materials
矿棉废弃物回收利用:迈向可持续建筑材料
http://www.mdpi.com/2313-4321/10/5/174
Milat, M.; Juradin, S.; Ostoji?-Škomrlj, N.; Tesovnik, A. Recycling Mineral Wool Waste: Towards Sustainable Construction Materials. Recycling 2025, 10, 174.
2.
Investigating the Static and Dynamic Mechanical Properties of Fiber-Reinforced Concrete Incorporating Recycled Carbon Fiber and Modified Basic Oxygen Furnace Slag Aggregate
研究掺入再生碳纤维和改性碱性氧气转炉矿渣骨料的纤维增强混凝土的静态和动态力学性能
http://www.mdpi.com/2313-4321/10/6/206
Li, Y.-F.; Lin, H.-S.; Syu, J.-Y.; Lee, W.-H.; Huang, C.-H.; Tsai, Y.-K.; Shvarzman, A. Investigating the Static and Dynamic Mechanical Properties of Fiber-Reinforced Concrete Incorporating Recycled Carbon Fiber and Modified Basic Oxygen Furnace Slag Aggregate. Recycling 2025, 10, 206.
3.
Geopolymerization of Recycled Glass Waste: A Sustainable Solution for a Lightweight and Fire-Resistant Material
利用回收玻璃废料进行地质聚合:一种轻质耐火材料的可持续解决方案
https://www.mdpi.com/2313-4321/9/1/16
Valanides, M.; Aivaliotis, K.; Oikonomopoulou, K.; Fikardos, A.; Savva, P.; Sakkas, K.; Nicolaides, D. Geopolymerization of Recycled Glass Waste: A Sustainable Solution for a Lightweight and Fire-Resistant Material. Recycling 2024, 9, 16.
4.
Recycled Concrete Aggregate in Self-Consolidating Concrete: A Systematic Review and Meta-Analysis of Mechanical Properties, RCA Pre-Treatment and Durability Behaviour
自密实混凝土中再生混凝土骨料:力学性能、再生混凝土骨料预处理和耐久性能的系统评价和荟萃分析
https://www.mdpi.com/2313-4321/10/6/214
Morales Rapallo, A.C.; Kuchta, K. Recycled Concrete Aggregate in Self-Consolidating Concrete: A Systematic Review and Meta-Analysis of Mechanical Properties, RCA Pre-Treatment and Durability Behaviour. Recycling 2025, 10, 214.
5.
Recycling Water Hyacinth as Supplementary Cementitious Material, Admixture, and Fiber in Mortar and Concrete: Current Trends and Research Gaps
通过氧化精炼从废弃电气和电子设备中回收贵金属
https://www.mdpi.com/2313-4321/10/1/18
García, G.; Cabrera, R.; Rolón, J.; Pichardo, R. Recycling Water Hyacinth as Supplementary Cementitious Material, Admixture, and Fiber in Mortar and Concrete: Current Trends and Research Gaps. Recycling 2025, 10, 18.
6.
Non-Structural Vibro-Compressed Concrete Incorporating Industrial Wastes
掺入工业废料的非结构性振动压实混凝土
https://www.mdpi.com/2313-4321/9/2/26
Pignotti, G.B.; Matos, A.M.; Ferreira, F.G.d.S. Non-Structural Vibro-Compressed Concrete Incorporating Industrial Wastes. Recycling 2024, 9, 26.
7.
Effect of Recycled Concrete Aggregate Addition on the Asphalt Mixtures Performance: ITZ Area, Microstructure, and Chemical Analysis Perspectives
再生混凝土骨料添加对沥青混合料性能的影响:界面过渡区面积、微观结构和化学分析视角
https://www.mdpi.com/2313-4321/9/3/41
Al-Bayati, H.K.A.; Jadaa, W.; Tighe, S.L. Effect of Recycled Concrete Aggregate Addition on the Asphalt Mixtures Performance: ITZ Area, Microstructure, and Chemical Analysis Perspectives. Recycling 2024, 9, 41.
8.
Recycled Concrete Aggregate in Asphalt Mixtures: A Review
再生混凝土骨料在沥青混合料中的应用:综述
https://www.mdpi.com/2313-4321/9/3/36
Bastidas-Martínez, J.G.; Rondón-Quintana, H.A.; Moreno-Anselmi, L.Á. Recycled Concrete Aggregate in Asphalt Mixtures: A Review. Recycling 2025, 10, 155.
9.
Quantifying Recycled Construction and Demolition Waste for Use in 3D-Printed Concrete
量化可回收利用的建筑和拆除废料,以用于3D打印混凝土
http://www.mdpi.com/2313-4321/9/4/55
De Villiers, W.; Mwongo, M.; Babafemi, A.J.; Van Zijl, G. Quantifying Recycled Construction and Demolition Waste for Use in 3D-Printed Concrete. Recycling 2024, 9, 55.
10.
A Critical Review on the Application of Recycled Carbon Fiber to Concrete and Cement Composites
再生碳纤维在混凝土和水泥复合材料中的应用综述
https://www.mdpi.com/2313-4321/9/1/17
Bhandari, M.; Nam, I.-W. A Critical Review on the Application of Recycled Carbon Fiber to Concrete and Cement Composites. Recycling 2024, 9, 17.
11.
Transforming Waste into Sustainable Construction Materials: Resistant Geopolymers from Recycled Sources
将废弃物转化为可持续建筑材料:利用回收材料制备耐用型地质聚合物
https://www.mdpi.com/2313-4321/10/3/118
Cigala, R.M.; Papanikolaou, G.; Lanzafame, P.; Sabatino, G.; Tripodo, A.; La Ganga, G.; Crea, F.; Ielo, I.; De Luca, G. Transforming Waste into Sustainable Construction Materials: Resistant Geopolymers from Recycled Sources. Recycling 2025, 10, 118.
12.
Performance Assessment of One-Part Self-Compacted Geopolymer Concrete Containing Recycled Concrete Aggregate: A Critical Comparison Using Artificial Neural Network (ANN) and Linear Regression Models
含再生混凝土骨料的单组分自密实地聚合物混凝土性能评价:基于人工神经网络(ANN)和线性回归模型的对比分析
http://www.mdpi.com/2313-4321/9/5/73
Nikmehr, B.; Kafle, B.; Al-Ameri, R. Performance Assessment of One-Part Self-Compacted Geopolymer Concrete Containing Recycled Concrete Aggregate: A Critical Comparison Using Artificial Neural Network (ANN) and Linear Regression Models. Recycling 2024, 9, 73.
13.
The Influence of Filler Particle Size on the Strength Properties and Mechanical Energy Dissipation Capacity of Biopoly(Ethylene Terephthalate) BioPET/Eggshell Biocomposites
填料粒径对生物聚对苯二甲酸乙二醇酯(BioPET)/蛋壳生物复合材料强度性能和机械能耗散能力的影响
https://www.mdpi.com/2313-4321/9/5/88
Kuciel, S.; Rusin-?urek, K.; Kurańska, M. The Influence of Filler Particle Size on the Strength Properties and Mechanical Energy Dissipation Capacity of Biopoly(Ethylene Terephthalate) BioPET/Eggshell Biocomposites. Recycling 2024, 9, 88.
14.
Experimental Investigation and Statistical Analysis of Recycled Asphalt Pavement Mixtures Incorporating Nanomaterials
纳米材料掺杂再生沥青路面混合料的实验研究与统计分析
https://www.mdpi.com/2313-4321/9/5/100
Shylaja, P.; Ravichandran, P.T. Experimental Investigation and Statistical Analysis of Recycled Asphalt Pavement Mixtures Incorporating Nanomaterials. Recycling 2024, 9, 100.
15.
Recycled Glass and Plastic Waste in Sustainable Geopolymer Systems for Affordable Housing Solutions
利用回收玻璃和塑料废料构建可持续地聚合物系统,为经济适用房提供解决方案
https://www.mdpi.com/2313-4321/10/4/147
Tang, Z.Q.; Wong, Y.C.; Li, Y.; Masli, E.K. Recycled Glass and Plastic Waste in Sustainable Geopolymer Systems for Affordable Housing Solutions. Recycling 2025, 10, 147.
Recycling 期刊介绍
主编:Michele John, Curtin University, Australia
期刊发表资源回收、再利用、废弃物管理与循环经济等相关领域的原始性、首创性成果,主题涵盖工业资源回收的创新工艺、工具与方法学,废弃物处理技术,循环经济,零废弃项目实践,回收利用相关政策,回收经济学,回收过程的环境与社会影响,以及产品 (生态) 设计与回收等方向。目前已被ESCI (Web of Science)、Scopus、FSTA、DOAJ等数据库收录。
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2025 Impact Factor
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5.2
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2025 CiteScore
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7.5
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Time to First Decision
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19.4 Days
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Acceptance to Publication
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4.9 Days
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