Analysis of Harnessing Waste Fine Aggregate for Sustainable Production of Concrete Elements
Analysis of Harnessing Waste Fine Aggregate for Sustainable Production of Concrete Elements
摘要
This paper focuses on cement composites based on waste fine aggregate obtained from hydroclassification all-in-aggregate in the Central Pomerania region in northern Poland. In the world there are regions with poor supplies of coarse aggregate, which is one of the most essential raw materials used for production of ordinary concrete. In these regions, instead of coarse aggregate, there are often very large deposits of fine aggregate such as natural sand and fine all-in-aggregate. These raw materials may be used for concrete production of standard mechanical properties. Manufacturing concrete based on locally available fine aggregate is inexpensive which encourages the local production of fine aggregate cement composites instead of ordinary concrete, requiring gravel transported from distant places.
参考文献16
-
1V. M. Malhotra, Making concrete "greener" with fly ash, ACI Concrete Int. 21 (5) (1999) 61-66.
-
2R. K. Dhir, P. C. Hewlett and M. R. Jones, Creating with Concrete, Thomas Telford Publishing, London, UK, 1999.
-
3O. E. Gjorv and K. Sakai, Concrete Technology for A Sustainable Development in the 21st Century, E&FN Spon, USA and Canada, 2000.
-
4G. Idorn, Concrete Progress from Antiquity to the Third Millennium, Thomas Telford Pub., London, UK, 1997.
-
5A. M. Neville, Properties of Concrete, Longman, Harlow, Essex, England, 1995.
-
6J. Katzer and J. Kobaka, The assessment of fine aggregate pit deposits for concrete production, Kuwait Journal of Science and Eng. 33 (2) (2006) 165-174.
-
7J. Katzer, Beschreibung der granulometrischen Eigenschaften der Zuschlagstoffe Mittelpommems mithilfe des Median-Korns, Beton Werk Int., June 2003, pp. 64-69.
-
8J. Katzer, Employment of waste sand to compose fibre reinforced cement composites, in: Proceedings of Sustainable Construction Materials and Technologies, Coventry, UK, 11-13 June, 2007.
-
9H. B. Mann, Analysis and Design of Experiments, Dover Publications, New York, NY, USA, 1950.
-
10H. Schenck, Theories of Engineering Experimentation, Hemisphere Publishing Corporation, Washington D.C., USA, 1979.
-
1马全银.污水资源化——解决城市水资源短缺问题的重要途径[J].中州建设,2000(6):7-8.
-
2重庆两千亿助推城市建设 30个重大工程年内完工[J].特种结构,2004,21(2):54-54.
-
3王晓林.T形柱正截面受力性能分析[J].太原大学学报,2013,14(3):142-144.
-
4杨海林.钢筋混凝土结构房屋的安全鉴定[J].安徽建筑,2010,17(5):155-155. 被引量:3
-
5孙晓彤.对钢筋混凝土构件分析的论述[J].黑龙江科技信息,2009(22):290-290.
-
6孙廷春.水资源应有偿使用[J].环境,1995(6):17-17.
-
7朱林(编译).Three Interesting Aieas of Material Development[J].Design(产品设计),2006(5):109-112.
-
8发达国家建筑节能政策分析[J].环球聚氨酯,2009(3):30-31. 被引量:6
-
9苏建华,张其林,高俊岳,施旗.预应力SRC梁式转换结构研究综述[J].广州建筑,2007,35(5):3-7. 被引量:2
-
10李峰,韩旭.浅析工业建筑结构设计中需注意的问题[J].中小企业管理与科技,2016(22):60-61. 被引量:1