A Brief Analysis of Domestic Construction and Demolition Waste Recycling Techniques

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In this paper, the construction and demolition waste (C&D waste) recycling techniques in China is summarized, and proposed the C&D waste recycling suggestions in this foundation. The C&D waste can be divided into construction waste, decorating waste, demolition waste and natural disaster ruin waste. In addition to be buried, domestic C&D waste can be made into landscape material, roadbed material, recycled aggregate, recycled brick, recycled concrete, recycled admixture and so on. The state should establish positive promoting policies, improve the recycling industrial chain, and promote the healthy development of the C&D waste recycling.

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1-5

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April 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] Wenjuan ZHOU, Jialong CHEN, Hongbo LU. Status and Countermeasures of Domestic Construction Waste Resources[J]. Architecture Technology, 2009, 8: 741-744.

Google Scholar

[2] Dongfeng ZHU. Research of Urban Construction Waste Disposal[D]. Guangzhou: South China University of Technology, (2007).

Google Scholar

[3] Shouchang DENG, Wei LI, Zhengping WANG, et al. Recycling of Solid Waste and the Building of Circular Economical System[J]. Journal of Central South University of Forestry and Technology, 2009, 3(6): 58-62.

Google Scholar

[4] Luochun WANG, Sheng CHEN, Youcai ZHAO. Recycling Methods for Wood Residuals in Construction and Demolition Wastes[J]. Environmental Sanitation Engineering, 2005, 13 (1): 42-44.

Google Scholar

[5] Na YANG, Qionglin CHEN, Yu JIANG, et al. Application of Municipal Waste in the Landscape[J]. Journal of Hunan Agricultural University, 2010, 36(2): 148-151.

Google Scholar

[6] Jian QIN, Jianxin ZHAO. Application of Construction Waste Residue in Shanghai Expo Area Roads Project[J]. China Municipal Engineering, 2009, 3: 19-22.

Google Scholar

[7] Yi CHI. Study on High Performance Ways and Properties of Recycled Aggregate Concrete[D]. Hunan: Central South University, (2010).

Google Scholar

[8] Qiuyi LI, Yunxia LI, Chongji ZHU. The Influence of a Particle Shape Correcting Technique in Properties of Recycled Coarse Aggregate[J]. Materials Science and Technology, 2005, 13(6): 579-582.

Google Scholar

[9] Kun LI. Research on the Basic Properties of Recycled Aggregate and Recycled Concrete[D]. Liaoning: Dalian University of Technology, (2005).

Google Scholar

[10] Ting DU, Huiqiang LI, Xianguo WU. Experimental Research on Reinforce of Recycled Aggregate[J]. New Building Materials, 2002, 3: 6-8.

Google Scholar

[11] Haili CHENG, Caiyan WANG. Experimental Research on Water Glass Reinforced Recycled Aggregate[J]. New Building Materials, 2004, 12: 12-14.

Google Scholar

[12] Ye LI. Experimental Studies on Performance of the Recycled Aggregate Concrete[D]. Chongqing: Chongqing University, (2009).

Google Scholar

[13] Zhangfu WANG, Jinjian ZHANG, Shulin ZHAN, et al. Microstructural Analysis of Recycled Aggregate Produced from Niño-Enhancement Approach[J]. Rare metal Materials and Engineering, 2010, 39 (Suppl. 2): 409-414.

Google Scholar

[14] Jianliang CHEN, Zhuping NI, Experimental Research on Performance of Reinforced Recycled Aggregate[J]. Hypothermia Construction Techniques, 2011, 2: 14-16.

Google Scholar

[15] Li'an ZHOU. Study on Productive Technology and Performance of Construction Waste Recycled Brick [D]. Beijing: Beijing University of Civil Engineering and Architecture, (2009).

Google Scholar

[16] Xiaoqian LIU, Binbin WANG. Application of Construction Waste in Chiba Cement Factory[J]. 21 Century Building Materials, 2011, 3: 70-71.

Google Scholar

[17] Peiran FENG, Yangguan ZHEN, Bin ZHU. Comparative Study on Earthquake Ruin Waste as Raw Material[J]. Cement, 2011, 4: 7-11.

Google Scholar

[18] HongJie WANG, Yu WANG. Experiment and Research on the Use of Construction Waste to Produce Geopolymeric Cemen[J]. Journal of Jilin Teachers Institute of Engineering and Technology, 2009, 25(6): 70-73.

Google Scholar

[19] Haili CHENG, feihua YANG, Jie ZHANG. Feasibility of Using Modified Construction Wastes as Rubber Filler[J]. Environmental Pollution and Control, 2011, 33 (1): 27-30.

Google Scholar