01070cam0 2200325 450 00001304220090318143422.00-07-044128-620080616d1989----km-y0itay50------baengUSa-------001yyPublic finance in theory and practiceintroductor's manual to accompanyRichard A. Musgrave, Peggy B. Musgrave5th ed.New YorkMcGraw-Hill1989XVI, 627 p.graf. e tab.28 cm001000023381001000023382Public finance in theory and practice35837Economia pubblica336.7319Finanza pubblica. Stati UnitiMusgrave,Richard Abel248771Musgrave,Peggy B.148075ITUNIPARTHENOPE20080616RICAUNIMARC000013042327/507364NAVA22008321/1667612NAVA2321/1657611NAVA2Public finance in theory and practice35837UNIPARTHENOPE05067nam 2201309z- 450 991058594380332120220812(CKB)5600000000483042(oapen)https://directory.doabooks.org/handle/20.500.12854/91201(oapen)doab91201(oapen)91201(EXLCZ)99560000000048304220202208d2022 |y 0engurmn|---annantxtrdacontentcrdamediacrrdacarrierSustainable Pavement Engineering and Road MaterialsBaselMDPI - Multidisciplinary Digital Publishing Institute20221 online resource (262 p.)3-0365-4745-2 3-0365-4746-0 In a similar way to many other engineering fields, the road pavement industry strongly affects the critical issues of our generation, including climate change, pollutant emission, the exploitation of natural resources and economic crises. For this reason, technicians and researchers are searching ravenously for sustainable solutions to implement in current road construction systems with the following goals: To reduce the consumption of energy and virgin materials; To run environmentally and economically friendly maintenance; To recycle waste from different industrial processes; To decrease the noise, the pollution and the heat generated by traffic, particularly in urban contexts. This Special Issue aims to collect high-quality studies that combine the aforementioned solutions, including works pertaining to: The hot, warm, and cold recycling of reclaimed asphalt pavement; Marginal materials for asphalt pavements; Innovative sustainable materials; Durability and environmental aspects; Structure performance, modeling and design; Advanced trends in rehabilitation and preservation; Surface characteristics and road safety; Management system/life cycle analysis; Urban heat island mitigation; Energy harvesting.History of engineering & technologybicsscTechnology: general issuesbicsscHistory of engineering and technologybicsscageingaggregate sizeagingalternative materialsasphalt pavement temperaturesbearing capacitybitumenbitumen selectionbituminous mixturesbrakingcarbon nanotubescircular economycivil engineeringcoal bottom ashcold central-plant recycled base coursecompressive strengthcomputed tomography (CT) imageconstructionconstruction industrycontact stressescoolingcyclic shear testdecision-making processenergy consumptionex-post CBAfalling weight deflectometer (FWD), cold recycling in-plantfatigue performancefatigue propertiesfree rollinggas emissionsgeogridgeopolymersgraphene nanoplateletshaulinghot-mix asphaltincidence of traffic accidentsinflation pressureinsulated truckinterlayer bondinglife cycle assessmentloadmaintenancemetakaolinmixing ration/anano-additivesnano-calcium oxidenano-titanium dioxidenanoclaynatural zeoliteperformance-graded bitumenpermeability coefficientspermeable pavementsporosityporous concreteproduction costsre-heatingreclaimed asphaltrecyclerecyclingreinforced asphalt pavementrejuvenationroad modernisationroad stabilisationrolling resistanceself-healingsonicationspeedstatic shear testtemperature mapstemperature segregationunbound base courseurban drainage systemswarm mix asphaltwaste managementwaste materialHistory of engineering & technologyTechnology: general issuesHistory of engineering and technologyBocci Edoardoedt1315232Bocci EdoardoothBOOK9910585943803321Sustainable Pavement Engineering and Road Materials3032279UNINA