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Page 45
Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2013. Recycled Materials and Byproducts in Highway Applications—Scrap Tire Byproducts, Volume 7. Washington, DC: The National Academies Press. doi: 10.17226/22546.
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Page 45
Page 46
Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2013. Recycled Materials and Byproducts in Highway Applications—Scrap Tire Byproducts, Volume 7. Washington, DC: The National Academies Press. doi: 10.17226/22546.
×
Page 46
Page 47
Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2013. Recycled Materials and Byproducts in Highway Applications—Scrap Tire Byproducts, Volume 7. Washington, DC: The National Academies Press. doi: 10.17226/22546.
×
Page 47
Page 48
Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2013. Recycled Materials and Byproducts in Highway Applications—Scrap Tire Byproducts, Volume 7. Washington, DC: The National Academies Press. doi: 10.17226/22546.
×
Page 48

Below is the uncorrected machine-read text of this chapter, intended to provide our own search engines and external engines with highly rich, chapter-representative searchable text of each book. Because it is UNCORRECTED material, please consider the following text as a useful but insufficient proxy for the authoritative book pages.

45 Abichou, T., K. Tawfiq, T.B. Edil, and C.H. Benson, “Behav- ior of a Soil-Tire Shreds Backfill for Modular Block-Wall,” Recycled Materials in Geotechnics, Geotechnical Spe- cial Publication No. 127, Proceedings of the ASCE Civil Engineering Conference and Exposition. Baltimore, Md., Oct. 19–21, 2004. Allen, F., “Crumb Rubber Concrete—Precast Solutions,” Precast Solutions Magazine, Fall 2004, National Precast Concrete Association, Carmel, Ind., 2004 [Online]. Avail- able: precast.org/2010/05/crumb-rubber-concrete/. Barker-Lemar, Scrap Tire Workshop: Construction Applica- tions for Landfills, Iowa Department of Natural Resources, West Des Moines, June 22, 2005. Bojenko, D., Y. Dong, J. Gabrini, A. Mitchell, and M. Seaboyer, Waste Tire Management in Nova Scotia, Master’s thesis, Dalhousie University, Apr. 2008 [Online]. Available: http://sres.management.dal.ca/Files/MREM_Case_Studies/ WasteTire-April2008.pdf. Cetin, H., M. Fener, and O. Gunaydin, “Geotechnical Properties of Tire-Cohesive Clayey Soil Mixtures as a Fill Material,” Engineering Geology, Vol. 88, 2006, pp. 110–120. Chehovits, J. and L. Galehouse, “Energy Use and Green House Gas Emissions of Pavement Preservation Processes for Asphalt Concrete Pavements,” Proceedings First Inter- national Conference on Pavement Preservation, Newport Beach, Calif., Apr. 11–15, 2010. Cheng, D., The Feasibility, Constructability, and Efficacy of Tire Derived Aggregate as a Component in Slurry Cut- off Walls, California State University, Chico, report to the California Integrated Waste Management Board, June 2006 [Online]. Available: http://www.calrecycle.ca.gov/ publications/Tires/62106009.pdf. Choi, M., K. Hudak, and D. Penabad, Scrap Tire Management: A Case Study in Vermont, Dartmouth College, Hanover, N.H., July 2007. “Concrete Pavement’s New Road Map,” Better Roads, Vol. 76, No. 3, pp. 52–65, Mar. 2006. Environmental Protection Agency (EPA), “Leach Testing for Material Reuse,” EPA, Washington, D.C., 2006 [Online]. Available: http://www.epa.gov/ord/lrp/quickfinder/leach- testing.htm. Federal Highway Administration (FHWA), Utilization of Recycled Materials in Illinois Highway Construction, FHWA, Washington, D.C., 2010 [Online]. Available: http://www.fhwa.dot.gov/pavement/recycling/reccrumb. cfm [accessed Apr. 2010]. Freitas, E.F. and O. Inacio, “Noise Absorption of Gap Graded Mixtures with Rubberized Asphalt,” Proceedings Euro- noise 2009, Edinburgh, Scotland, Oct. 26–28, 2009. Ganjian, E., M. Khorami, and A.A. Maghsoudi, “Scrap Tyre Rubber Replacement for Aggregate and Filler in Con- crete,” Construction and Building Materials, Vol. 23, No. 5, 2009, pp. 1828–1836. Hernandez-Olivares, F., G. Barluenga, M. Bollati, and B. Witoszek, “Static and Dynamic Behavior of Recycled Tyre Rubber-Filled Concrete,” Cement and Concrete Research, Vol. 32, 2002, pp. 1587–1596 [Online]. Available: https:// portal.uah.es/portal/page/portal/GP_EPD/PG-MA- PROF/PG-PROF-142013/TAB42343/ARTICULO%20 CEM%20CON%202098%20(OCT%202002).PDF. Hernandez-Olivares, F., G. Barluenga, B. Parga-Landa, M. Bollati, and B. Witoszek, “Fatigue Behavior of Recycled Tyre Rubber-Filled Concrete and Its Implications in the Design of Rigid Pavements,” Construction and Building Materials, Vol. 21, 2007, pp. 1918–1927 [Online]. Avail- able: https://portal.uah.es/portal/page/portal/GP_EPD/PG- MA-PROF/PG-PROF-142013/TAB42343/Fatigue%20 behav%20RTRC%20impl%20design%20rigid%20 pavements.pdf. Huat, B.B.K., A.A. Aziz, and L.W. Chuan, “Application of Scrap Tires as Earth Reinforcement for Repair of Tropi- cal Residual Soil Slope,” Electronic Journal of Geotech- nical Engineering, Vol. 12, 2007. Humphrey, D.N., “Civil Engineering Applications of Tire Derived Aggregate,” presented to the California Integrated Waste Management Board (CIWMB) Waste Tire Forum, Mar. 9, 2006. Humphrey, D.N. and L.E. Katz, “Field Study of Water Qual- ity Effects of Tire Shreds Laced Below the Water Table,” Proceedings of the International Conference on Beneficial Use of Recycled Materials in Transportation Applications, 2001 [Online]. Available: http://www.rma.org/scrap_tires/ scrap_tires_and_the_environment/field_study.pdf. Humphrey, D.N. and M. Swett, Literature Review of the Water Quality Effects of Tire Derived Aggregate and Rubber Modified Asphalt Pavement, Department of Civil and Environmental Engineering, University of Maine, Augusta, Nov. 2006 [Online]. Available: http://www.epa. gov/osw/conserve/materials/tires/tdastudy.pdf. International Surfacing Systems, Guide Specification for Polymer Modified Asphalt Rubber (PMAR) Stress Absorbing Membrane and PMAR Stress Absorbing Mem- brane Interlayer, Chandler, Ariz., 2007a. International Surfacing Systems, Guide Specification for Poly- mer Modified Binder Utilized in Chip Seal Applications, Chandler, Ariz., 2007b. Kaloush, K.E., G.B. Way, and H. Zhu, “Properties of Crumb Rubber Concrete,” Transportation Research Record: Jour- nal of the Transportation Research Board, No. 1914, Trans- portation Research Board of the National Academies, Washington, D.C., 2005, pp. 8–14. Lee, S., S.N. Amirkhanian, and K. Shatanawi, Effects of Reaction Time on Physical and Chemical Properties of RefeRences

46 Rubber Mixtures,” Construction and Building Materials, Vol. 24, 2010, pp. 283–291. Phetcharat, S. and S. Kongsuwan, “Use of Reclaimed Rub- ber to Develop Slurry Seal,” Furth Regional Symposium on Infrastructure Development in Civil Engineering, Apr. 2003, Bangkok, Thailand [Online]. Available: http://eng. swu.ac.th/research/sudniran/slurry%20seal.pdf. Recycled Materials Resource Center (RMRC), “Scrap Tires” [Online]. Available: http://www.asphaltrubber.org/ari/ Emissions/SAC_County_Emission_Cover_Letter.pdf [accessed Sep. 2008]. Roschen, T., Results of Stack Emission Testing Asphalt Rubber and Conventional Asphalt Concrete, County of Sacramento Public Works Agency, 2002 [Online]. Available: http:// www.asphaltrubber.org/ari/Emissions/SAC_County_ Emission_Cover_Letter.pdf. Rubber Manufacturers Association (RMA), “Scrap Tire Characteristics,” RMA, Washington, D.C. [Online]. Avail- able: http://www.rma.org/scrap_tires/scrap_tire_markets/ scrap_tire_characteristics/#anchor135840 [accessed Nov. 2009]. Sacramento County, Report on the Status of Rubberized Asphalt Traffic Noise Reduction in Sacramento County, Sacramento County Public Works Agency—Transportation Division, Nov. 1999. Santucci, L., “Rubber Roads: Waste Tires Find a Home,” University of California Institute of Transportation Stud- ies Technology Transfer Program Newsletter, Fall 2009/ Winter 2010. Shalaby, A. and R.A. Khan, “Design of Unsurfaced Roads Constructed with Large-Size Shredded Rubber Tires: A Case Study,” Resources Conservation and Recycling, Vol. 44, 2005. Symons, M., Sealing and Filling Cracks in Asphalt Pave- ments, Federal Highway Administration Tech Brief FHWA- RD-99-176, 1999 [Online]. Available: http://www.tfhrc.gov/ pavement/ltpp/pdf/99176.pdf. Sukontasukkul, P., “Use of Crumb Rubber to Improve Ther- mal and Sound Properties of Pre-Cast Concrete Panel,” Construction and Building Materials, Vol. 23, 2009, pp. 1084–1092. Tandon, V., D.A. Velazco, S. Nazarian, and M. Picornell, “Performance Monitoring of Embankments Containing Tire Chips: Case Study,” Journal of Performance of Con- structed Facilities, Vol. 21, No. 3, 2007, pp. 207–214. Tatlisoz, N., C. Benson, and T. Edil, Effect of Fines on Mechanical Properties of Soil-Tire Chip Mixtures: Test- ing Soils Mixed with Waste or Recycled Materials, ASTM STP 1275, M.A. Wasemiller and K.B. Hoddinott, Eds., American Society for Testing and Materials, West Conshohocken, Pa., 1997. Tatlisoz, N., T.B. Edil, and C.H. Benson, “Interaction Between Reinforcing Geosynthetics and Soil-Tire Chip Mixtures,” Journal of Geotechnical and Geo-environmental Engineering, Vol. 124, No. 11, Nov. 1998, pp. 1109–1119. Rubber-Modified Binders, Clemson University, Clemson, South Carolina, 2008. Li, G., G. Garrick, J. Eggers, C. Abadie, M.A. Stubblefield, and S. Pang, “Waste Tire Fiber Modified Concrete,” Composites: Part B, Vol. 35, 2004, pp. 305–312. Liseane, P.T.L., G. Trihes, J.C. Pais, and P.A.A. Pereira, “Evaluating Permanent Deformation in Asphalt Rubber Mixtures,” Construction and Building Materials, Vol. 24, 2010, pp. 1193–1200. Liu, H.S., J.L. Mead, and R.G. Stacer, Environmental Impacts of Recycled Rubber in Light Fill Applications: Summary and Evaluation of Existing Literature, Uni- versity of Massachusetts Department of Plastics Engi- neering, Chelsea Center for Recycling and Economic Development Plastics Conversion Project, Aug. 1998 [Online]. Available: http://www.chelseacenter.org/pdfs/ TechReport2.pdf. MacLeod, D., S. Ho, R. Wirth, and L. Zanzotto, “Study of Crumb Rubber Materials as Paving Asphalt Modifiers,” Canadian Journal of Civil Engineering, Vol. 34, 2007, pp. 1276–1288. Matthews, D.M., “Rubberized Slurry Seal over a Scrub Seal with Recycled Aggregate Chips,” AEMA-ARRA- ISSA Annual Meeting, San Jose de Cabo, Mexico, Feb. 20, 2008. Mills, B. and J. McGinn, Recycled Tires as Lightweight Fill, Recycled Materials and Recycling Processes for Sustainable Infrastructure, Annual Conference of the Transportation Association of Canada, Toronto, Ontario, 2008 [Online]. Available: http://www.tac-atc.ca/english/resourcecentre/ readingroom/conference/conf2008/docs/f1/mills.pdf. National Institute for Occupational Safety and Health (NIOSH), Crumb Rubber Modified Asphalt Paving: Occupational Exposures and Acute Health Effects, NIOSH health hazard evaluation report HETA#2001-0536-2864, NIOSH, Wash- ington, D.C., 2001 [Online]. Available: http://www.asphalt rubber.org/ari/Emissions/NIOSH_2001.pdf. Oikonomou, N. and S. Mavridou, “Improvement of Chloride Ion Penetration Resistance in Cement Mortars Modified with Rubber from Worn Automobile Tires,” Cement and Concrete Composites, Vol. 31, 2009, pp. 403–407. Pacific Emulsion, Inc., Tire Rubber Modified Slurry Seal, Pacific Emulsions, Inc., Santa Fe Springs, Calif., 2010 [Online]. Available: http://www.rubberslurry.com/index-3. html. Paje, S.E., M. Bueno, F. Teran, R. Miro, F. Perez-Jimenez, and A.H. Martinez, “Acoustic Field Evaluation of Asphalt Mixtures with Crumb Rubber,” Applied Acoustics, Vol. 71, 2010, pp. 578–582. Paramount Asphalt, Terminal Blend Asphalt Rubber Chip Seal PG70-22-TR and PG76-22PM, Technical Report— A Cost Effective Alternative for Hot Applied Chip Seal Systems, Paramount Asphalt, Paramount, Calif., 2008. Partl, M.N., E. Pasquini, F. Canestrari, and A. Virgili, “Analysis of Water and Thermal Sensitivity of Open Graded Asphalt

47 20-%20Immediate%20and%20time-dependent%20 compression%20of%20TDA.pdf. Washington State Department of Transportation (WSDOT), “Quieter Pavements—Options and Challenges for Wash- ington: Brief Sheet,” WSDOT, Olympia Feb. 2005. Xiao, F., S. Amirkhanian, and H. Juang, “Rutting Resis- tance of Rubberized Asphalt Concrete Pavements Con- taining Reclaimed Asphalt Pavement Mixtures,” Journal of Materials in Civil Engineering, Vol. 19, No. 6, June 2007, pp. 475–484. Xiao, F., P.E.W. Zhao, and S.N. Amirkhanian, “Fatigue Behavior of Rubberized Asphalt Concrete Mixtures Con- taining Warm Asphalt Additives,” Construction and Build- ing Materials, Vol. 23, 2009, pp. 3144–3151. Yilmaz, A. and N. Degirmenci, “Possibility of Using Waste Tire Rubber and Fly Ash with Portland Cement as Con- struction Materials,” Waste Management, Vol. 29, 2009, pp. 1541–1546. Zheng, L., X.S. Huo, and Y. Yuan, “Experimental Investi- gation of Dynamic Properties of Rubberized Concrete,” Construction and Building Materials, Vol. 22, 2008, pp. 939–947. Zicari, Scrap Tire Generation, presentation, 2009. University of Maine, Beneficial Use of Solid Waste in Maine, 2010 [Online]. Available: http://useit.umaine.edu/materials/ allmaterials.htm#tire [accessed Sep. 2010]. Updyke, E., “Terminal Blend Chip Seal Project Placed by County of Los Angeles Public Works,” California Pave- ment Preservation Newsletter, 2009. Utah DOT, Utah Department of Transportation Technical Bulletin MT 03.06, Oct. 21, 2003. VanTimmeren, T., “A Greener Discovery,” Roads and Bridges, Vol. 14, No. 2, Feb. 2009. [Online]. Available: http://www. roadsbridges.com/A-greener-discovery-article10074. VSS, “Asphalt Cape Seal,” Valley Slurry Seal supplier infor- mation, 2010a [Online]. Available: http://www.slurry.com/ index.php/specifications/125-asphalt-rubber-cape-seal.html. VSS, “Asphalt Rubber Slurry Surfacing,” Valley Slurry Seal supplier information, 2010b [Online]. Available: http:// www.slurry.com/index.php/specifications/140-asphalt- rubber-slurry-surfacing.html. Wartman, J., M.F. Natale, and P.M. Strenk, “Immediate and Time-Dependent Compression of Tire Derived Aggregate,” Journal of Geotechnical and Geoenvironmental Engineer- ing, Vol. 133, No. 3, Mar. 2007, pp. 245–256 [Online]. Available: http://www.pages.drexel.edu/~jw64/2007%

Abbreviations used without definitions in TRB publications: A4A Airlines for America AAAE American Association of Airport Executives AASHO American Association of State Highway Officials AASHTO American Association of State Highway and Transportation Officials ACI–NA Airports Council International–North America ACRP Airport Cooperative Research Program ADA Americans with Disabilities Act APTA American Public Transportation Association ASCE American Society of Civil Engineers ASME American Society of Mechanical Engineers ASTM American Society for Testing and Materials ATA American Trucking Associations CTAA Community Transportation Association of America CTBSSP Commercial Truck and Bus Safety Synthesis Program DHS Department of Homeland Security DOE Department of Energy EPA Environmental Protection Agency FAA Federal Aviation Administration FHWA Federal Highway Administration FMCSA Federal Motor Carrier Safety Administration FRA Federal Railroad Administration FTA Federal Transit Administration HMCRP Hazardous Materials Cooperative Research Program IEEE Institute of Electrical and Electronics Engineers ISTEA Intermodal Surface Transportation Efficiency Act of 1991 ITE Institute of Transportation Engineers MAP-21 Moving Ahead for Progress in the 21st Century Act (2012) NASA National Aeronautics and Space Administration NASAO National Association of State Aviation Officials NCFRP National Cooperative Freight Research Program NCHRP National Cooperative Highway Research Program NHTSA National Highway Traffic Safety Administration NTSB National Transportation Safety Board PHMSA Pipeline and Hazardous Materials Safety Administration RITA Research and Innovative Technology Administration SAE Society of Automotive Engineers SAFETEA-LU Safe, Accountable, Flexible, Efficient Transportation Equity Act: A Legacy for Users (2005) TCRP Transit Cooperative Research Program TEA-21 Transportation Equity Act for the 21st Century (1998) TRB Transportation Research Board TSA Transportation Security Administration U.S.DOT United States Department of Transportation

Recycled Materials and Byproducts in Highway Applications—Scrap Tire Byproducts, Volume 7 Get This Book
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 Recycled Materials and Byproducts in Highway Applications—Scrap Tire Byproducts, Volume 7
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TRB’s National Cooperative Highway Research Program (NCHRP) Synthesis 435: Recycled Materials and Byproducts in Highway Applications—Scrap Tire Byproducts, Volume 7 summarizes the results of a project that describes the experiences of transportation agencies in determining the relevant properties of scrap tire byproducts and the beneficial use for highway applications.

NCHRP Synthesis 435 is presented in eight volumes and is designed to help serve as a guide to states revising the provisions of their materials specifications to incorporate the use of recycled materials and industrial byproducts.

Volume 1 is available in print and electronic versions. Volumes 2 to 8 are in electronic format only. The eight volumes are:

Volume 1 Recycled Materials and Byproducts in Highway Applications—Summary Report

Volume 2 Coal Combustion Byproducts

Volume 3 Non-Coal Combustion Byproducts

Volume 4 Mineral and Quarry Byproducts

Volume 5 Slag Byproducts

Volume 6 Reclaimed Asphalt Pavement, Recycled Concrete Aggregate, and Construction Demolition Waste

Volume 7 Scrap Tire Byproducts

Volume 8 Manufacturing and Construction Byproducts

A NCHRP Synthesis 435 website with links to all 8 volumes is available.

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