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Suggested Citation:"REFERENCES." National Academies of Sciences, Engineering, and Medicine. 2011. Recycling and Reclamation of Asphalt Pavements Using In-Place Methods. Washington, DC: The National Academies Press. doi: 10.17226/14568.
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Page 51
Suggested Citation:"REFERENCES." National Academies of Sciences, Engineering, and Medicine. 2011. Recycling and Reclamation of Asphalt Pavements Using In-Place Methods. Washington, DC: The National Academies Press. doi: 10.17226/14568.
×
Page 51
Page 52
Suggested Citation:"REFERENCES." National Academies of Sciences, Engineering, and Medicine. 2011. Recycling and Reclamation of Asphalt Pavements Using In-Place Methods. Washington, DC: The National Academies Press. doi: 10.17226/14568.
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Page 52

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48 REFERENCES Alkins, A., B. Lane, and T.J. Kazmierowski, “Sustainable Pavements: Environmental, Economic, and Social Benefits of In-Situ Pavement Recycling,” Transportation Research Record: Journal of the Transportation Research Board, No. 2084, Transportation Research Board of the National Academies, Washington, D.C., 2008, pp. 100–103. Asphalt Recycling and Reclaiming Association, Basic Asphalt Recycling Manual, 2001 [Online]. Available: http://www. mdt.mt.gov/publications/docs/brochures/research/toolbox/ ARRA/BARM%20-%20B/1-124-BARM1.pdf. Asphalt Recycling and Reclaiming Association. ARRA Cold Recycling. Asphalt Recycling and Reclaiming Association, May 2009 [Online]. Available: http://www. arra.org/index.php?option=com_content&view=article &id=32&Itemid=77. Asphalt Recycling and Reclaiming Association, PowerPoint Presentations, Oct. 2006 [Online]. Available: http://www. pavementpreservation.org/toolbox/links/ARRA%20 Hot%20In-Place%20Recycling.pdf. Bemanian, S. How to Optimize Your Strategy with In-Place Recycling. First Western States Regional In-Place Recy- cling Conference, Salt Lake City, Utah. June 3-5, 2008. [Online]. Available: http://utahltap.org/files/publications/ publication/pub__3940780.pdf. Besseche, T., M. Kroge, and K. McGlumphy, “Full-Depth Reclamation with Engineered in Fairburn, Georgia,” Pro- ceedings of the 88th Annual Meeting of the Transportation Research Board, Washington, D.C., Jan. 11–15, 2009. Caltrans, Flexible Pavement Rehabilitation Using Pulveriza- tion, Office of Pavement Engineering, Division of Pave- ment, California Department of Transportation, Sacramento, June 2008 [Online]. Available: http://www. dot.ca.gov/hq/esc/Translab/ope/pulverization-guide.pdfds. Caltrans–METS, Feasibility of Recycling Rubber Modified Pav- ing Materials, Materials Engineering and Testing Services, California Department of Transportation, Sacramento, Feb. 2005 [Online]. Available: http://www.pavementpreserva- tion.org/library/getfile.php?journal_id=500. Chan, S., B. Lane, and T. Kazmierowski, Five-Year Perfor- mance Review of Cold In-Place Recycling with Expanded Asphalt Mix on Highway 7, Perth Ontario. Presented at the Annual Conference of the Transportation Association of Canada, Vancouver, BC, Canada, Oct. 2009. Clyne, T.R., M.O. Arasteanu, and A. Basu, Evaluation of Asphalt Binders Used for Emulsions, University of Minnesota/Minne- sota Department of Transportation, St. Paul, Aug. 2003 [Online]. Available: http://www.pavementpreservation.org/ library/getfile.php?journal_id=474. Cross, S.A., Determination of N(design) for CIR Mixtures Using the Superpave Gyratory Compactor, Recycled Materials Resource Center Research Project No. 15, Apr. 2002 [Online]. Available: http://www.rmrc.unh.edu/ Research/past/P15/p15final.pdf. Cuelho, E., R. Mokwa, and M. Akin, Preventative Mainte- nance Treatments of Flexible Pavements: A Synthesis of Highway Practice, Montana Department of Transporta- tion, Research Programs, Western Transportation Insti- tute, Montana State University, Bozeman, Oct. 2006 [Online]. Available: http://www.pavementpreservation. org/library/getfile.php?journal_id=787. Epps, A.L., C.J. Glover, and R.A. Barcena, Performance- Graded Binder Specification for Surface Treatments, Report FHWA/TX-02/1710-1, FHWA/TxDOT, Arling- ton, Tex., Oct. 2001, 74 pp. European Asphalt Pavement Association, Arguments to Stimulate the Government to Promote Asphalt Reuse and Recycling, Position Paper, Brussels, Belgium, May 2008 [Online]. Available: http://www.eapa.org/default_news. htm. Federal Highway Administration, Hot Mix Asphalt Recy- cling (Materials and Mix Design), 1997 [Online]. Avail- able: http://www.fhwa.dot.gov/pavement/recycling/ 98042/chpt_07.pdf. FHWA, Cold In-Place Asphalt Recycling Application Check- list, Publication FHWA-IF-06-012, U.S. Department of Transportation, Washington, D.C., 2005a [Online]. Avail- able: http://www.fhwa.dot.gov/pavement/preservation/ ppcl00.cfm. FHWA, Hot In-Place Asphalt Recycling Application Check- list, Publication FHWA-IF-06-011, U.S. Department of Transportation, Washington, D.C., 2005b [Online]. Avail- able: http://www.fhwa.dot.gov/pavement/preservation/ ppcl00.cfm. Fisher, C. Old Asphalt, New Foundation - Recycling Roads, Constructioneer, December 2008 [Online]. Available: http://www.allbusiness.com/construction/heavy-civil- construction-road-bridge/11797187-1.html. Franco, S., S.P. Moss, D. Yuan, and S. Nazarian, Design, Con- structability Review and Performance of Dual Base Stabi- lizer Applications, Report FHWA/TX-09/0-5797-1, FHWA, Texas Department of Transportation, University of Texas at El Paso, Jan. 2009 [Online]. Available: http://ctis.utep.edu/ publications/Reports/Report-0-5797-1_final.pdf. Geiger, A., D. Yuan, S. Nazarian, and I. Abdallah, Effects of Pulverization on Properties of Stabilized Bases, Report FHWA/TX-06/0-5223-1, Center for Transportation

49 Infrastructure Systems, FHWA, Research and Technol- ogy Implementation Office, Texas Department of Trans- portation, Mar. 2007 [Online]. Available: http://ctis.utep. edu/publications/Reports/Report_0-5223-1-Final.pdf. Harrington, J., “Recycled Roadways,” Public Roads, Vol. 68, No. 4, Jan.–Feb. 2005 [Online]. Available: http://www. tfhrc.gov/pubrds/05jan/02.htm. Harrington, K.J., Cold In-Place Recycling Review 2005, First Western States Regional In-Place Recycling Conference, Salt Lake City, Utah. June 3-5, 2008 [Online]. Available: http://utahltap.org/f iles /publications /publication/ pub__5933053.pdf. Harris, S., “Reuse the Abused,” Roads & Bridges, Vol. 45, No. 5, May 2007, pp. 44–48 [Online]. Available: http:// www.roadsbridges.com/Reuse-the-Abused-article8159. Heitzman, M., D. Lee, J. Kim, C. Chen, and C. Jahren, “In Place of Failure,” Roads & Bridges, Vol. 45, No. 5, May 2007, pp. 56–58 [Online]. Available: http://www.roads- bridges.com/In-Place-of-Failure-article8161. Jahren, E., B.J. Ellsworth, and K. Bergeson, “Constructabil- ity Test for Cold In-Place Asphalt Recycling,” Journal of Construction Engineering and Management, Vol. 125, No. 5, Sep./Oct. 1999, pp. 325–329 [Online]. Available: http://scitation.aip.org/getabs/servlet/GetabsServlet?pro g=normal&id=JCEMD4000125000005000325000001 &idtype=cvips&gifs=yes. Kazmierowski, T., In-Place Pavement Recycling—Moving Towards a Sustainable Future, Presented at the AEMA- ARRA-ISSA 2008 annual meeting, Los Cabos, Mexico, Feb. 2008. Kim, W. and J.F. Labuz, Resilient Modulus and Strength of Base Course with Recycled Bituminous Material, Report No. MN/RC-2007-05, Minnesota Department of Trans- portation, University of Minnesota, Jan. 2007 [Online]. Available: http://www.lrrb.org/pdf/200705.pdf. Kim, W. and J.F. Labuz, Resilient Modulus and Strength of Base Course with Recycled Bituminous Material, Report No. MN/RC-2007-05, Minnesota Department of Trans- portation, University of Minnesota, Jan. 2007 [Online]. Available: http://www.lrrb.org/pdf/200705.pdf. Kim, Y. and D. Lee, “Development of Mix Design Proce- dure for Cold In-Place Recycling with Foamed Asphalt,” Journal of Materials in Civil Engineering, Vol. 18, No. 1, Jan./Feb. 2006, pp. 116–124 [Online]. Available: http:// scitation.aip.org/getabs/servlet/GetabsServlet?prog=nor mal&id=JMCEE7000018000001000116000001&idtype =cvips&gifs=yes. Kronick, R., “Pavement Rehabilitation on a Budget,” Roads & Bridges, Vol. 47, No. 2, Feb. 2009, pp. 42–44 [Online]. Available: http://www.roadsbridges.com/Pavement- rehabilitation-on-a-budget-article10069. Lane, B. and T.J. Kazmierowski, “Implementation of CIR with Expanded Asphalt in Canada,” Transportation Research Record: Journal of the Transportation Research Board, No. 1905, Transportation Research Board of the National Academies, Washington, D.C., 2005a, pp. 17–24. Lane, B. and T.J. Kazmierowski, “Feeling Bubbly,” Roads & Bridges, Vol. 43, No. 5, May 2005b, pp. 30–33 [Online]. Available: http://www.roadsbridges.com/Feeling-Bubbly- article7960. Lee, D. and Y. Kim, Evaluation of Long-Term Field Perfor- mance of Cold In-Place Recycled Roads: Field Distress Survey, Report No. IHRB TR-502, Public Policy Center, University of Iowa, Iowa Highway Research Board, May 2007a [Online]. Available: http://www.ctre.iastate.edu/ reports/tr502-field-distress-survey.pdf. Lee, D. and Y. Kim, Validation of the Mix Design Process for Cold In-Place Rehabilitation Using Foamed Asphalt, Final report, —IHRB Project TR 474, Public Policy Cen- ter, University of Iowa, Iowa Highway Research Board, June 2007b [Online]. Available: http://www.iowadot. gov/operationsresearch/reports/reports_pdf/hr_and_tr/ reports/tr474%20phaseII.pdf. Lee, K.W., T.E. Brayton, and H. Huston, Development of Performance Based Mix Design for Cold In-Place (CIR) of Bituminous Pavements Based on Fundamental Prop- erties, FHWA-CIR-20-01, U.S.DOT/FHWA/University of Rhode Island, Sep. 2002 [Online]. Available: http:// isddc.dot.gov/OLPFiles/FHWA/010964.pdf. Loizos, A., “In-Situ Characterization of Foamed Bitumen- Treated Layer Mixes for Heavy-Duty Pavements,” Inter- national Journal of Pavement Engineering, Vol. 8, No. 2, June 2007, pp. 123 -135 [Online]. Available: http://www. informaworld.com/smpp/content~db=all~content=a772 837330?words=in-situ*|characterization*|foamed*|bitu men*|treated*|layer*|mixes*|heavy-duty*|pavements*. Loizos, A. and V. Papavasiliou, “Evaluation of Foamed Asphalt Cold In-Place Pavement Recycling Using Non- destructive Techniques,” Journal of Transportation Engineering, Vol. 132, No. 12, Dec. 2006, pp. 970–978 [Online]. Available: http://scitation.aip.org/getabs/serv- let/GetabsServlet?prog=normal&id=JTPEDI000132000 012000970000001&idtype=cvips&gifs=yes. Mallela, J., H. Von Quintus, and K.L. Smith, Performance Evaluation of Cold In-Place Recycling Projects in Arizo- naI, Report FHWA-AZ-06-460, Applied Research Asso- ciates, Inc., Champaign, Ill., FHWA, Arizona Department of Transportation, Mar. 2006 [Online]. Available: http:// www.azdot.gov/TPD/ATRC/publications /project_ reports/PDF/AZ460.pdf. Mallick, R., K. Maser, and S. Nazarian, Guidelines for the Use of Ground Penetrating Radar (GPR) and Portable Seismic Property Analyzer (PSPA) in Full Depth Recla-

50 mation Projects, Final report, submitted to the Recycled Materials Resource Center—Project 39, Apr. 2007 [Online]. Available: http://www.rmrc.unh.edu/ Research/past/P39/p39final.pdf. Matthews, D.M., Contractors Perspective on Successful Con- struction of CIR and FDR, First Western States Regional In-Place Recycling Conference, Salt Lake City, Utah. June 3-5, 2008 [Online]. Available: http://utahltap.org/files/ publications/publication/pub__5717472.pdf. Marquis, B., D. Peabody, and R. Mallick, Using Foamed Asphalt as a Stabilizing Agent in Full Depth Reclamation of Route 8 in Belgrade, Maine, Maine DOT/Worcester Polytech Institute—Final report, submitted to the Recy- cled Materials Resource Center, University of New Hampshire, Oct. 2002 [Online]. Available: http://www. rmrc.unh.edu/Research/past/P16/P16final.pdf. Maurer, G., and P. Polish, Exploring Alternative Strategies for the Rehabilitation of Low-Volume Roads, NV- RDT-08-001, Nevada Department of Transportation, Carson City, Jan. 2008 [Online]. Available: http://www. nevadadot.com/reports_pubs/Research_Pubs/pdfs/ ResearchReports/2008/08_001.pdf. Muthen, M., Foamed Asphalt Mixes—Mix Design Proce- dure, Report No. CR-98/077, SABITA, Pretoria, South Africa, Dec. 1998. New Jersey Department of Environmental Protection, Asphalt Milling Guidance Document, 2010 [Online]. Available: http://www.state.nj.us/dep/dshw/rrtp/amgd.htm. Niazi, Y., and M. Jalili, “Effect of Portland Cement and Lime Additives on Properties of Cold In-Place Recycled Mix- tures with Asphalt Emulsion,” Construction and Build- ing Materials, Vol. 23, 2009, pp. 1338–1343. Nickelson, B., Coweta County Uses Innovative Construction Techniques to Rebuild County Roads, Portland Cement Association, Skokie, Ill., 2010 [Online]. Available: http:// www.cement.org/pavements/pv_sc_fdr.asp. Park, T., “Causes of Bleeding in a Hot In-Place Asphalt Pavement,” Construction and Building Materials, Vol. 21, No. 12, Dec. 2007, pp. 2023–2030. Portland Cement Association, Full Depth Reclamation: Recycling Roads Saves Money and Natural Resources, 2005 [Online]. Available: http://www.recyclingroads. org /techdocs /SR995%20FDR%20Recycling%20 Roads%20Saves%20Money.PDF [accessed Apr. 2009]. Prokopy, J., “Cement Cures,” Roads & Bridges, Vol. 41, No. 10, Oct. 2003, pp. 25–27 [Online]. Available: http:// www.roadsbridges.com/Cement-Cures-article4543. Romanoschi, S., M. Hossain, P. Lewis, and O. Dumitru, Accelerated Testing for Studying Pavement Design and Performancei, Report No. FHWA-KS-03-8, U.S.DOT/ FHWA/Kansas Department of Transportation/Kansas State University, Manhattan, Aug. 2004 [Online]. Avail- able: http://ntl.bts.gov/lib/24000/24800/24884/KS038_ Report.pdf. Rosenmerkel, J.R., EPA Case Study: Waukesha County Air- port, Case Study 15, U.S. Environmental Protection Agency, Washington, D.C., Dec. 2003 [Online]. Available: http:// www.epa.gov/osw/partnerships/c2p2/cases/15-fdr.pdf. Salomon, A. and D. Newcomb, Cold In-Place Recycling Lit- erature Review, Mn/DOT/RC 2000-21, Aug. 2000 [Online]. Available: http://www.cts.umn.edu/Publica- tions/ResearchReports/reportdetail.html?id=605. Shuler, S. and C. Schmidt, Performance Evaluation of Vari- ous HMA Rehabilitation Strategies, Report No. CDOT- 2008-9, Colorado Department of Transportation, Dec. 2008 [Online]. Available: http://www.dot.state.co.us/ publications/PDFFiles/hmarehab.pdf. Stroup-Gardiner, M., Hot In-Place Recycling Using the Hitone Process, California Pavement Preservation Cen- ter Report no. CP2 - 2008 - 108. 2008. Thomas, T., J. Huffman, and A. Kadrmas, “Going in Cold,” Roads & Bridges, Vol. 38, No. 3, Mar. 2000, pp. 38–42 [Online]. Available: http://www.roadsbridges.com/ Going-in-Cold-article1600. Thompson, M.R., Garcia, L., and Carpenter, S.H., Cold In- Place Recycling and Full-Depth Recycling with Asphalt Products, (CIR & FDR w AP), Illinois Center for Trans- portation Series No. 09-036. Research Report ICT-09- 036. March 2009. Udelhofen, G., “Hot-in-Place Recycling Key to Denver’s Street Maintenance,” Asphalt Contractor, Vol. 20, No. 5, June/July 2006, pp. 32–37 [Online]. Available: http://www.forcon- structionpros.com/print/Asphalt-Contractor/Features/ Hot-in-place-Recycling-Key-to-Denvers-St reet- Maintenance/2FCP2496. Uhlmeyer, J., Cold In-Place Recycling in Washington State. First Western States Regional In-Place Recycling Confer- ence, Salt Lake City, Utah, June 3-5, 2008 [Online]. Avail- able: http://utahltap.org/files/publications/publication/ pub__3853073.pdf VanTimmeren, T., “Peak Performance,” Roads & Bridges, Vol. 46, No. 2, Feb. 2008, pp. 36–37 [Online]. Available: http://www.roadsbridges.com/Peak-Performance- article8943. VanTimmeren, T., “In the Mix,” Roads & Bridges, Vol. 47, No. 2, Feb. 2009, pp. 34–36 [Online]. Available: http:// www.roadsbridges.com/In-the-mix-article10067. Wirtgen Cold Recycling Manual, 2nd ed., Wirtgen GmbH, Hohner Strasse 2, 53578, Windhagen, Germany, Novem- ber 2004.

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 Recycling and Reclamation of Asphalt Pavements Using In-Place Methods
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TRB’s National Cooperative Highway Research Program (NCHRP) Synthesis 421: Recycling and Reclamation of Asphalt Pavements Using In-Place Methods discusses the use of hot in-place recycling, cold in-place recycling, and full-depth reclamation of asphalt pavements.

In-place recycling and reclamation of asphalt pavements provides agencies with the ability to optimize the value of in-place materials, minimize construction time and traffic flow disruptions, and reduce the number of construction vehicles moving in and out of the construction area.

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