[1] Heriyanto, Pahlevani F, Sahajwalla V. From waste glass to building materials—An innovative sustainable solution for waste glass[J]. Journal of Cleaner Production, 2018, 191: 192-206. DOI:10.1016/j.jclepro.2018.04.214.
[2] Li Q, Chen X, Li G, et al. Fatigue resistance investigation of warm-mix recycled asphalt binder, mastic, and fine aggregate matrix[J]. Fatigue & Fracture of Engineering Materials & Structures, 2018, 41(2): 400-411. DOI:10.1111/ffe.12692.
[3] Paris J M, Roessler J G, Ferraro C C, et al. A review of waste products utilized as supplements to Portland cement in concrete[J]. Journal of Cleaner Production, 2016, 121: 1-18. DOI:10.1016/j.jclepro.2016.02.013.
[4] Ma T, Ding X H, Zhang D Y, et al. Experimental study of recycled asphalt concrete modified by high-modulus agent[J]. Construction and Building Materials, 2016, 128: 128-135. DOI:10.1016/j.conbuildmat.2016.10.078.
[5] Hakami B A, El-Sayed Sedek Abu Seif. Household solid waste composition and management in Jeddah City, Saudi Arabia: A planning model[J]. International Research Journal of Environment Sciences, 2015, 4(1): 1-10.
[6] Oliveira R, deBrito J, Veiga R. Reduction of the cement content in rendering mortars with fine glass aggregates[J]. Journal of Cleaner Production, 2015, 95: 75-88. DOI:10.1016/j.jclepro.2015.02.049.
[7] Kazmi S M S, Abbas S, Nehdi M L, et al. Feasibility of using waste glass sludge in production of ecofriendly clay bricks[J]. Journal of Materials in Civil Engineering, 2017, 29(8): 04017056. DOI:10.1061/(asce)mt.1943-5533.0001928.
[8] Kim K, Kim K. Valuable recycling of waste glass generated from the liquid crystal display panel industry[J].Journal of Cleaner Production, 2018, 174: 191-198. DOI:10.1016/j.jclepro.2017.10.326.
[9] Poulikakos L D, Papadaskalopoulou C, Hofko B, et al. Harvesting the unexplored potential of European waste materials for road construction[J]. Resources, Conservation and Recycling, 2017, 116: 32-44. DOI:10.1016/j.resconrec.2016.09.008.
[10] Antunes V, Freire A C, Quaresma L, et al. Evaluation of waste materials as alternative sources of filler in asphalt mixtures[J]. Materials and Structures, 2017, 50(6): 254. DOI:10.1617/s11527-017-1126-3.
[11] Lee H, Hanif A, Usman M, et al. Performance evaluation of concrete incorporating glass powder and glass sludge wastes as supplementary cementing material[J]. Journal of Cleaner Production, 2018, 170: 683-693. DOI:10.1016/j.jclepro.2017.09.133.
[12] Lu J X, Poon C S. Recycling of waste glass in construction materials[M]// New Trends in Eco-Efficient and Recycled Concrete. Elsevier, 2019: 153-167. DOI:10.1016/b978-0-08-102480-5.00006-3
[13] Gupta J, Sharma V, Mathur D, et al. To study effects on the strength of concrete after partially replacing fine aggregates by waste glass bottle in M40 concrete mix[J]. Journal of Structural Engineering and Management, 2018, 5(1): 39-48.
[14] Lu J X, Poon C S. Use of waste glass in alkali activated cement mortar[J]. Construction and Building Materials, 2018, 160: 399-407. DOI:10.1016/j.conbuildmat.2017.11.080.
[15]Arabani M, Tahami S A, Taghipoor M. Laboratory investigation of hot mix asphalt containing waste materials[J]. Road Materials and Pavement Design, 2017, 18(3): 713-729. DOI:10.1080/14680629.2016.1189349.
[16] Sanij H K, Meybodi P A, Hormozaky M A, et al. Evaluation of performance and moisture sensitivity of glass-containing warm mix asphalt modified with zycothermTM as an anti-stripping additive[J]. Construction and Building Materials, 2019, 197: 185-194. DOI:10.1016/j.conbuildmat.2018.11.190.
[17] Qiu J, Ma F, Zhu C Z, et al. A waste glass crushing device: China patent, 201621387030.3[P]. 2017-07-21.(in Chinese)
[18] Bignozzi M C, Saccani A, Barbieri L, et al. Glass waste as supplementary cementing materials: The effects of glass chemical composition[J]. Cement and Concrete Composites, 2015, 55: 45-52. DOI:10.1016/j.cemconcomp.2014.07.020.
[19] Avila-López U, Almanza-Robles J M, Escalante-García J I. Investigation of novel waste glass and limestone binders using statistical methods[J]. Construction and Building Materials, 2015, 82: 296-303. DOI:10.1016/j.conbuildmat.2015.02.085.
[20] Mardani-Aghabaglou A, Tuyan M, Ramyar K. Mechanical and durability performance of concrete incorporating fine recycled concrete and glass aggregates[J]. Materials and Structures, 2015, 48(8): 2629-2640. DOI:10.1617/s11527-014-0342-3.
[21] Srivastava I, Gupta D, Sehmi S S, et al. Partial replacement of fine aggregates with waste glass[J]. International Journal of Advance Research, Ideas and Innovations in Technology, 2017, 3(4): 746-749.
[22] Zakaria N M, Hassan M K, Ibrahim A N H, et al. The use of mixed waste recycled plastic and glass as an aggregate replacement in asphalt mixtures[J]. Jurnal Teknologi, 2018, 80(1): 79-88.
[23] Chen Z, Li J S, Poon C S. Combined use of sewage sludge ash and recycled glass cullet for the production of concrete blocks[J]. Journal of Cleaner Production, 2018, 171: 1447-1459. DOI:10.1016/j.jclepro.2017.10.140.
[24] Zhang J P, Liu G Q, Zhu C Z, et al. Evaluation indices of asphalt-filler interaction ability and the filler critical volume fraction based on the complex modulus[J]. Road Materials and Pavement Design, 2017, 18(6): 1338-1352. DOI:10.1080/14680629.2016.1218789.
[25] Zhang J P, Liu G Q, Zhu C Z, et al. Evaluation indices of asphalt-filler interaction ability and the filler critical volume fraction based on the complex modulus[J]. Road Materials and Pavement Design, 2017, 18(6): 1338-1352. DOI:10.1080/14680629.2016.1218789.
[26] Zhang J P, Fan Z P, Hu D L, et al. Evaluation of asphalt-aggregate interaction based on the rheological properties[J]. International Journal of Pavement Engineering, 2018, 19(7): 586-592. DOI:10.1080/10298436.2016.1199868.
[27] Huang X M, Wu S P, Zhao Y L. Asphalt and asphalt mixture[M]. Nanjing: Southeast University Press, 2002: 94-98.(in Chinese)
[28] Mukhopadhyay A K. Next-generation nano-based concrete construction products: A review [M]//Nanotechnology in Civil Infrastructure. Berlin: Springer, 2011: 207-223. DOI:10.1007/978-3-642-16657-0_7.
[29] Ministry of Transport of the People’s Republic of China. JTG-E20—2011 Test procedures for asphalt and asphalt mixture in highway engineering[S]. Beijing: China Communications Press, 2011.(in Chinese)
[30] Ministry of Transport of the People’s Republic of China. JTGD50—2017 Specifications for design of highway asphalt pavement[S]. Beijing: China Communications Press, 2017.(in Chinese)
[31] Tahmoorian F, Samali B, Yeaman J, et al. The use of glass to optimize bitumen absorption of hot mix asphalt containing recycled construction aggregates[J]. Materials, 2018, 11(7): 1053. DOI:10.3390/ma11071053.
[32] Mohammadreza T A, Taherabadi E, Roustaei M, et al. Modification of silty clay strength in cold region’s pavement using glass residue[J]. Cold Regions Science and Technology, 2018, 154: 111-119.DOI:10.1016/j.coldregions.2018.06.005.
[33] Huang T, Zheng J L, Lü S T, et al. Failure criterion of an asphalt mixture under three-dimensional stress state[J]. Construction and Building Materials, 2018, 170: 708-715.DOI:10.1016/j.conbuildmat.2018.03.081.
[34] Geng L, Ma T, Zhang J, et al. Research on performance of a dense graded ultra-thin wearing course mixture[J]. Applied Sciences, 2017, 7(8): 800-1-800-16. DOI:10.3390/app7080800.