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| 1 | Role of adsorption behavior on metal build-up in urban road dust显示文摘Metal pollution of stormwater runoff can cause potential toxic impacts on the receiving water environment and human health. Effective pollution mitigation requires accurate stormwater quality modeling. Even though a significant knowledge base exists on the factors influencing metal build-up on urban roads, very limited studies have investigated how metal–particulate interaction influences metal build-up. This study quantitatively assessed the influence of particulate characteristics, together with vehicular traffic and land use, on the build-up of Zn, Cu, Pb, Cr, Ni and Cd on urban roads. The study outcomes revealed that the variability in metal build-up is highly influenced by the variability associated with metal adsorption to particulates. The percentage contribution from particulate properties influencing metal adsorption in the case of < 150 μm size road dust particles was found to be higher(Zn 44%, Cu 52%, Cr 16%, Ni 27% and Cd 45%) when compared to traffic and land use characteristics(Zn 21%, Cu 13%, Cr and Ni <10% and Cd 34%). Similar adsorption behavior was noted for metals associated with > 150 μm size road dust particles. Among different particulate properties influencing metal adsorption, effective cation exchange capacity showed a strong positive relationship with the build-up of Cd compared to other metals,highlighting the potential role of Cd in stormwater quality as a readily available metal. The build-up of metals such as Cr and Ni are highly influenced by metal oxides of Al, Fe and Mn and clay forming minerals, indicating that Cr and Ni are relatively stable in nature. | Ayomi Jayarathne Buddhi Wijesiri Prasanna Egodawatta Godwin A. Ayoko Ashantha Goonetilleke | 2019 | Journal of Environmental Sciences2019,31,9: | 3 |
| 2 | Review on thermal energy storage with phase change materials and applications显示文摘 | Atul Sharma V.V. Tyagi C.R. Chen D. Buddhi | 2007 | Renewable and Sustainable Energy Reviews2007,,2: | 2 |
| 3 | Performance equations of a collector cum storage system using phase change materials显示文摘 | BANSAL N K BUDDHI D | 1992 | Solar energy1992,48,3: | 1 |
| 4 | Total water-solu- ble sugars quantificaton in bio-oil using the phenol-sulfuric acid assay显示文摘 | Rover M R Johnston P A Buddhi P | 2013 | JAnal Appl Pyrol2013,104,2: | 1 |
| 5 | Numerical simulation of a heat thermal energy storage system with enhanced heat conduction 显示文摘 | Costa M Buddhi D Oliva A | 1998 | Energy Conversion Mgmt1998,39,34: | 1 |
| 6 | Thermal cycle testing of calcium chlo- ride hexahydrate as a possible PCM for latent heat storage 显示文摘 | Tyagi V V Buddhi D | 2008 | Solar Energy Mater Solar Cells2008,92,8: | 1 |
| 7 | Removal of contaminants from industrial wastewater through various non-conventional technologies: a review显示文摘 | Swamin D Buddhi D | 2006 | International Journal of Environment and Pollution2006,27,4: | 1 |
| 8 | Review on thermal energy storage with phase change materials and applications 显示文摘 | Sharma A Tyagi V V Chen C R Buddhi D | 2009 | Renewable & Sustainable Energy Reviews2009,13,2: | 1 |
| 9 | Numerical Heat Transfer Studies of the Fatty Acids for Different Heat Ex- changer Materials on the Performance of a Latent Heat Storage System 显示文摘 | Sharma A Won L D Buddhi D | 2005 | Renew Energy2005,30,14: | 1 |
| 10 | PCM thermal storage in buildings:A state of art显示文摘 | Tyagi Vineet Veer Buddhi D | 2007 | Renewable Sustainable Energy Rev2007,11,: | 1 |
| 11 | Numerical simulation of a latent heat thermal energy storage system with enhanced heat conductionn显示文摘 | COSTA M BUDDHI D OLIVA A | 1998 | Energy Convers Management1998,39,: | 1 |
| 12 | Numerical simulation of a latent heat thermal energy storage system with enhanced heat conduction 显示文摘 | Costa M Buddhi D Oliva A | 1998 | EnergyConversion & Management1998,39,: | 1 |
| 13 | Review onthermal energy storage with phase change materials andapplications显示文摘 | Sharma Atul Tyagi V V Chen C R Buddhi D | 2009 | Renewable and Sustainable Energy Reviews2009,,13: | 1 |
| 14 | Accelerated Thermal Cycle Test of Acetamide,Stearic Acid and Paraffin Wax for Solar Thermal Latent Heat Storage Applications显示文摘 | Sharma A Sharma S D Buddhi D | 2002 | Energy Conversion and Management2002,43,14: | 1 |
| 15 | 显示文摘 | Buddhi D Sharma S D Sharma A | 2003 | Energy Conversion and Management2003,44,: | 1 |
| 16 | Numerical simulation of a latent heat thermal energy storage system with enhanced heat conduction显示文摘 | Costa M Buddhi D Oliva A | 1998 | Energy Conversion and Management1998,39,34: | 1 |
| 17 | PCM thermal storage in buildings a state of art 显示文摘 | Tyagi V V Buddhi D | 2007 | Renewable and Sustainable Energy Re- views2007,11,6: | 1 |
| 18 | Accelerated thermal cycle test of acetamide, stearic acid and paraffin wax for solar thermal latent heat storage applications显示文摘 | SHARMA A SHARMA S D BUDDHI D | 2002 | Energy Conversion and Management2002,43,14: | 1 |
| 19 | Review on thermal energy storage with phase change materials and applications 显示文摘 | Sharma A Tyagi V V Chen C R Buddhi D | 2009 | Renewable and Sustainable Energy Reviews2009,13,2: | 1 |
| 20 | PCM thermal storage in buildings: A state of art 显示文摘 | Vineet Veer Tyagi Buddhi D | 2007 | Renewable and Sustainable Energy Reviews2007,11,: | 1 |