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Erschienen in: Journal of Material Cycles and Waste Management 3/2018

23.04.2018 | ORIGINAL ARTICLE

Laboratory investigation on high- and low-temperature performances of asphalt mastics modified by waste oil shale ash

verfasst von: Wensheng Wang, Yongchun Cheng, Guojin Tan, Ziyu Liu, Chenglin Shi

Erschienen in: Journal of Material Cycles and Waste Management | Ausgabe 3/2018

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Abstract

The objective of this study was to use two kinds of waste oil shale ash (OSA) as partial replacements of conventional mineral filler for evaluating high- and low-temperature performances of asphalt mastics. First, asphalt mastics with conventional mineral filler replacement by OSA (OSA/MF) of 0, 10, 15, 30% by volume based on filler–asphalt (F/A) ratios of 0.8, 1.1, 1.4 were prepared. Then, based on the measured penetration, softening point and ductility of modified asphalt mastics, the overall desirability analysis was adopted to determine the optimal OSA/MF. Subsequently, the high-temperature and low-temperature properties of asphalt mastics with the optimal OSA/MF were studied through dynamic shear rheometer (DSR) and bending beam rheometer (BBR) tests. Results indicated that OSA could improve the high-temperature stability but reduces the temperature susceptibility of asphalt mastics, whereas the asphalt consistency is influenced insignificantly. Besides, the high- and low-temperature properties of asphalt mastics could be improved by the addition of OSA and the oil shale semi-coke (OSSC) modified asphalt mastic is slightly better than oil shale fly ash (OSFA) modified asphalt mastic in some aspects. Based on these results, the optimum F/A ratios could be obtained to enhance the high-temperature and low-temperature properties of asphalt mastics.

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Literatur
1.
Zurück zum Zitat Wang Q, Bai JR, Ge JX, Wei YZ, Li SY (2014) Geochemistry of rare earth and other trace elements in Chinese oil shale. Oil Shale 31:266CrossRef Wang Q, Bai JR, Ge JX, Wei YZ, Li SY (2014) Geochemistry of rare earth and other trace elements in Chinese oil shale. Oil Shale 31:266CrossRef
2.
Zurück zum Zitat Wang S, Jiang XM, Han XX, Tong JH (2012) Investigation of Chinese oil shale resources comprehensive utilization performance. Energy 42:224–232CrossRef Wang S, Jiang XM, Han XX, Tong JH (2012) Investigation of Chinese oil shale resources comprehensive utilization performance. Energy 42:224–232CrossRef
3.
Zurück zum Zitat Deng SH, Wang ZJ, Gu Q et al (2011) Extracting hydrocarbons from Huadian oil shale by sub-critical water. Fuel Process Technol 92:1062–1067CrossRef Deng SH, Wang ZJ, Gu Q et al (2011) Extracting hydrocarbons from Huadian oil shale by sub-critical water. Fuel Process Technol 92:1062–1067CrossRef
4.
Zurück zum Zitat Lv DW, Li ZX, Liu HY et al (2015) The characteristics of coal and oil shale in the coastal sea areas of Huangxian Coalfield, Eastern China. Oil Shale 32:204–217CrossRef Lv DW, Li ZX, Liu HY et al (2015) The characteristics of coal and oil shale in the coastal sea areas of Huangxian Coalfield, Eastern China. Oil Shale 32:204–217CrossRef
5.
Zurück zum Zitat Gao GM, Liu DR, Zou HF, Zou LC, Gan SC (2010) Preparation of silica aerogel from oil shale ash by fluidized bed drying. Powder Technol 197:283–287CrossRef Gao GM, Liu DR, Zou HF, Zou LC, Gan SC (2010) Preparation of silica aerogel from oil shale ash by fluidized bed drying. Powder Technol 197:283–287CrossRef
6.
Zurück zum Zitat Li GH, Wang WZ, Long T et al (2014) A general and facile method to prepare uniform gamma-alumina hollow microspheres from waste oil shale ash. Mater Lett 133:143–146CrossRef Li GH, Wang WZ, Long T et al (2014) A general and facile method to prepare uniform gamma-alumina hollow microspheres from waste oil shale ash. Mater Lett 133:143–146CrossRef
7.
Zurück zum Zitat Hanni R (1996) Energy and valuable material by-product from firing Estonian oil shale. Waste Manag 16:97–99CrossRef Hanni R (1996) Energy and valuable material by-product from firing Estonian oil shale. Waste Manag 16:97–99CrossRef
8.
Zurück zum Zitat Smadi MM, Haddad RH (2003) The use of oil shale ash in Portland cement concrete. Cem Concr Comp 25:43–50CrossRef Smadi MM, Haddad RH (2003) The use of oil shale ash in Portland cement concrete. Cem Concr Comp 25:43–50CrossRef
9.
Zurück zum Zitat Radwan MM, Farag LM, Abo-El-Enein SA, El-Hamid HKA (2013) Alkali activation of blended cements containing oil shale ash. Constr Build Mater 40:367–377CrossRef Radwan MM, Farag LM, Abo-El-Enein SA, El-Hamid HKA (2013) Alkali activation of blended cements containing oil shale ash. Constr Build Mater 40:367–377CrossRef
10.
Zurück zum Zitat Asi I, Assa’Ad A (2005) Effect of Jordanian oil shale fly ash on asphalt mixes. Mater Civil Eng 17:553–559CrossRef Asi I, Assa’Ad A (2005) Effect of Jordanian oil shale fly ash on asphalt mixes. Mater Civil Eng 17:553–559CrossRef
11.
Zurück zum Zitat Ghuzlan K, Al-Khateeb G, Damrah AA (2013) Using oil shale ash waste as a modifier for asphalt binders. J Mater Cycles Waste 15:522–529CrossRef Ghuzlan K, Al-Khateeb G, Damrah AA (2013) Using oil shale ash waste as a modifier for asphalt binders. J Mater Cycles Waste 15:522–529CrossRef
12.
Zurück zum Zitat Azzam MOJ, Al-Ghazawi Z (2015) Evaluation of incorporating oil shale filler aggregate into hot mix asphalt using Superpave mix design. Constr Build Mater 101:359–379CrossRef Azzam MOJ, Al-Ghazawi Z (2015) Evaluation of incorporating oil shale filler aggregate into hot mix asphalt using Superpave mix design. Constr Build Mater 101:359–379CrossRef
13.
Zurück zum Zitat Tan YQ, Li ZH, Zhang XY, Dong ZJ (2010) Research on high- and low-temperature properties of asphalt-mineral filler mastic. J Mater Civil Eng 22:811–819CrossRef Tan YQ, Li ZH, Zhang XY, Dong ZJ (2010) Research on high- and low-temperature properties of asphalt-mineral filler mastic. J Mater Civil Eng 22:811–819CrossRef
14.
Zurück zum Zitat Tan YQ, Lei Z, Zhang XY (2012) Investigation of low-temperature properties of diatomite-modified asphalt mixtures. Constr Build Mater 36:787–795CrossRef Tan YQ, Lei Z, Zhang XY (2012) Investigation of low-temperature properties of diatomite-modified asphalt mixtures. Constr Build Mater 36:787–795CrossRef
15.
Zurück zum Zitat Yao H, You ZP, Li L et al (2012) Performance of asphalt binder blended with non-modified and polymer-modified nanoclay. Constr Build Mater 35:159–170CrossRef Yao H, You ZP, Li L et al (2012) Performance of asphalt binder blended with non-modified and polymer-modified nanoclay. Constr Build Mater 35:159–170CrossRef
16.
Zurück zum Zitat Liu HB, Fu LX, Jiao YB et al (2017) Short-term aging effect on properties of sustainable pavement asphalts modified by waste rubber and diatomite. Sustain Basel 9:996CrossRef Liu HB, Fu LX, Jiao YB et al (2017) Short-term aging effect on properties of sustainable pavement asphalts modified by waste rubber and diatomite. Sustain Basel 9:996CrossRef
17.
Zurück zum Zitat Cheng YC, Tao JL, Jiao YB, Tan GJ et al (2016) Influence of the properties of filler on high and medium temperature performances of asphalt mastic. Constr Build Mater 118:268–275CrossRef Cheng YC, Tao JL, Jiao YB, Tan GJ et al (2016) Influence of the properties of filler on high and medium temperature performances of asphalt mastic. Constr Build Mater 118:268–275CrossRef
18.
Zurück zum Zitat Yan KZ, Xu HB, Zhang HL (2013) Effect of mineral filler on properties of warm asphalt mastic containing Sasobit. Constr Build Mater 48:622–627CrossRef Yan KZ, Xu HB, Zhang HL (2013) Effect of mineral filler on properties of warm asphalt mastic containing Sasobit. Constr Build Mater 48:622–627CrossRef
19.
Zurück zum Zitat Huang B, Dong Q, Burdette EG (2009) Laboratory evaluation of incorporating waste ceramic materials into Portland cement and asphaltic concrete. Constr Build Mater 23:3451–3456CrossRef Huang B, Dong Q, Burdette EG (2009) Laboratory evaluation of incorporating waste ceramic materials into Portland cement and asphaltic concrete. Constr Build Mater 23:3451–3456CrossRef
20.
Zurück zum Zitat Xue YJ, Hou HB, Zhu SJ, Zha J (2009) Utilization of municipal solid waste incineration ash in stone mastic asphalt mixture: pavement performance and environmental impact. Constr Build Mater 23:989–996CrossRef Xue YJ, Hou HB, Zhu SJ, Zha J (2009) Utilization of municipal solid waste incineration ash in stone mastic asphalt mixture: pavement performance and environmental impact. Constr Build Mater 23:989–996CrossRef
21.
Zurück zum Zitat Dalhat MA, Wahhab AA (2015) Sulfur extended heavy oil fly ash and cement waste asphalt mastic for roofing and waterproofing. Mater Struct 48:1–12CrossRef Dalhat MA, Wahhab AA (2015) Sulfur extended heavy oil fly ash and cement waste asphalt mastic for roofing and waterproofing. Mater Struct 48:1–12CrossRef
22.
Zurück zum Zitat Parvez MA, Wahhab AA, Shawabkeh RA, Hussein IA (2014) Asphalt modification using acid treated waste oil fly ash. Constr Build Mater 70:201–209CrossRef Parvez MA, Wahhab AA, Shawabkeh RA, Hussein IA (2014) Asphalt modification using acid treated waste oil fly ash. Constr Build Mater 70:201–209CrossRef
23.
Zurück zum Zitat Al-Masaeid H, Khedaywi T, Smadi M (1989) Properties of asphalt-oil shale ash bituminous mixtures under normal and freeze-thaw conditions. J Transp Res Board (TRB), Transportation Research Record (1228):54–62 Al-Masaeid H, Khedaywi T, Smadi M (1989) Properties of asphalt-oil shale ash bituminous mixtures under normal and freeze-thaw conditions. J Transp Res Board (TRB), Transportation Research Record (1228):54–62
24.
Zurück zum Zitat Azzam MOJ, Al-Ghazawi Z, Al-Otoom A (2015) Incorporation of Jordanian oil shale in hot mix asphalt. J Clean Prod 112:2259–2277CrossRef Azzam MOJ, Al-Ghazawi Z, Al-Otoom A (2015) Incorporation of Jordanian oil shale in hot mix asphalt. J Clean Prod 112:2259–2277CrossRef
25.
Zurück zum Zitat Khedaywi T, Yeginobali A, Smadi M (1989) Potential uses of Jordanian spent oil shale ash as a cementive material. Bmc Genet 15:1–7 Khedaywi T, Yeginobali A, Smadi M (1989) Potential uses of Jordanian spent oil shale ash as a cementive material. Bmc Genet 15:1–7
26.
Zurück zum Zitat Wahhab AA, Hussein IA, Parvez MA, Shawabkeh RA (2015) Use of modified oil fly ash to enhance asphalt concrete performance. Mater Struct 48:3231–3240CrossRef Wahhab AA, Hussein IA, Parvez MA, Shawabkeh RA (2015) Use of modified oil fly ash to enhance asphalt concrete performance. Mater Struct 48:3231–3240CrossRef
27.
Zurück zum Zitat E20, JTG (2011) Technical specification for construction of highway asphalt pavements. Ministry of Transport of the People’s Republic of China, Beijing E20, JTG (2011) Technical specification for construction of highway asphalt pavements. Ministry of Transport of the People’s Republic of China, Beijing
28.
Zurück zum Zitat D6373-07, ASTM (2007) Standard specification for performance graded asphalt binder. American Society for Testing and Materials, Washington D6373-07, ASTM (2007) Standard specification for performance graded asphalt binder. American Society for Testing and Materials, Washington
29.
Zurück zum Zitat E42, JTG (2005) Test methods of aggregate for highway engineering. Ministry of Transport of the People’s Republic of China, Beijing E42, JTG (2005) Test methods of aggregate for highway engineering. Ministry of Transport of the People’s Republic of China, Beijing
30.
Zurück zum Zitat E986, ASTM (2004) Standard practice for scanning electron microscope beam size characterization. American Society for Testing and Materials, Washington E986, ASTM (2004) Standard practice for scanning electron microscope beam size characterization. American Society for Testing and Materials, Washington
31.
Zurück zum Zitat 1097-7, EN (2008) Tests for mechanical and physical properties of aggregates—part 7: determination of the particle density of filler—pyknometer method. European Norm, Brussels 1097-7, EN (2008) Tests for mechanical and physical properties of aggregates—part 7: determination of the particle density of filler—pyknometer method. European Norm, Brussels
32.
Zurück zum Zitat Odler I (2003) The BET-specific surface area of hydrated Portland cement and related materials. Cem Concr Res 33:2049–2056CrossRef Odler I (2003) The BET-specific surface area of hydrated Portland cement and related materials. Cem Concr Res 33:2049–2056CrossRef
33.
Zurück zum Zitat C1271, ASTM (1999) Standard test method for X-ray spectrometric analysis of lime and limestone. American Society for Testing and Materials, Washington C1271, ASTM (1999) Standard test method for X-ray spectrometric analysis of lime and limestone. American Society for Testing and Materials, Washington
34.
Zurück zum Zitat D5, ASTM (2006) Standard test method for penetration of bituminous materials. American Society for Testing and Materials, Washington D5, ASTM (2006) Standard test method for penetration of bituminous materials. American Society for Testing and Materials, Washington
35.
Zurück zum Zitat D36, ASTM (2006) Standard test method for softening point of bitument (ring and ball apparatus). American Society for Testing and Materials, Washington D36, ASTM (2006) Standard test method for softening point of bitument (ring and ball apparatus). American Society for Testing and Materials, Washington
36.
Zurück zum Zitat Whiteoak D, Read J (2003) The shell bitumen handbook. Thomas Telford Services Ltd., London Whiteoak D, Read J (2003) The shell bitumen handbook. Thomas Telford Services Ltd., London
37.
Zurück zum Zitat D113, ASTM (2007) Standard test method for ductility of bituminous materials. American Society for Testing and Materials, Washington D113, ASTM (2007) Standard test method for ductility of bituminous materials. American Society for Testing and Materials, Washington
38.
Zurück zum Zitat D7175, ASTM (2015) Standard test method for determining the rheological properties of asphalt binder using a dynamic shear rheometer. American Society for Testing and Materials, Washington D7175, ASTM (2015) Standard test method for determining the rheological properties of asphalt binder using a dynamic shear rheometer. American Society for Testing and Materials, Washington
39.
Zurück zum Zitat T313, AASHTO (2009) Standard method of test for determining the flexural creep stiffness of asphalt binder using the bending beam rheometer. American Society for Testing and Materials, Washington T313, AASHTO (2009) Standard method of test for determining the flexural creep stiffness of asphalt binder using the bending beam rheometer. American Society for Testing and Materials, Washington
40.
Zurück zum Zitat Tan YQ, Guo M, Cao LP, Zhang L (2013) Performance optimization of composite modified asphalt sealant based on rheological behavior. Constr Build Mater 47:799–805CrossRef Tan YQ, Guo M, Cao LP, Zhang L (2013) Performance optimization of composite modified asphalt sealant based on rheological behavior. Constr Build Mater 47:799–805CrossRef
41.
Zurück zum Zitat Yan KZ, He WL, Chen M, Liu WY (2016) Laboratory investigation of waste tire rubber and amorphous ploy alpha olefin modified asphalt. Constr Build Mater 129:256–265CrossRef Yan KZ, He WL, Chen M, Liu WY (2016) Laboratory investigation of waste tire rubber and amorphous ploy alpha olefin modified asphalt. Constr Build Mater 129:256–265CrossRef
Metadaten
Titel
Laboratory investigation on high- and low-temperature performances of asphalt mastics modified by waste oil shale ash
verfasst von
Wensheng Wang
Yongchun Cheng
Guojin Tan
Ziyu Liu
Chenglin Shi
Publikationsdatum
23.04.2018
Verlag
Springer Japan
Erschienen in
Journal of Material Cycles and Waste Management / Ausgabe 3/2018
Print ISSN: 1438-4957
Elektronische ISSN: 1611-8227
DOI
https://doi.org/10.1007/s10163-018-0737-2

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