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Methods of creating solar-reflective nonwhite surfaces and their application to residential roofing materials
Authors:Ronnen Levinson  Paul Berdahl  Hashem Akbari  William Miller  Ingo Joedicke  Joseph Reilly  Yoshi Suzuki  Michelle Vondran  
Affiliation:aLawrence Berkeley National Laboratory, 1 Cyclotron Road, Berkeley, CA 94720, USA;bOak Ridge National Laboratory, PO Box 2008, MS6070, Oak Ridge, TN 37831, USA;cISP Mineral Products, Inc., 34 Charles St., Hagerstown, MD 21740, USA;dAmerican Rooftile Coatings, 250 Viking Avenue, Brea, CA 92821, USA;eMCA Clay Tile, 1985 Sampson Avenue, Corona, CA 92879, USA;fSteelscape Inc., 1200 Arrow Route, Rancho Cucamonga, CA 91730, USA
Abstract:We describe methods for creating solar-reflective nonwhite surfaces and their application to a wide variety of residential roofing materials, including metal, clay tile, concrete tile, wood, and asphalt shingle. Reflectance in the near-infrared (NIR) spectrum (0.7–2.5 μm) is maximized by coloring a topcoat with pigments that weakly absorb and (optionally) strongly backscatter NIR radiation, and by adding an NIR-reflective basecoat (e.g., one colored with titanium dioxide rutile white) if both the topcoat and the substrate weakly reflect NIR radiation. Coated steel and glazed clay-tile roofing products achieved NIR reflectances of up to 0.50 and 0.75, respectively, using only cool topcoats. Gray-cement concrete tiles achieved NIR reflectances as high as 0.60 with coatings colored by NIR-scattering pigments. Such tiles could attain NIR reflectances of up to 0.85 by overlaying a white basecoat with a topcoat colored by NIR-transparent organic pigments. Granule-surfaced asphalt shingles achieved NIR reflectances as high as 0.45 when the granules were covered with a white basecoat and a cool color topcoat.
Keywords:Roofing  Residential  Reflective  Solar  Near infrared  Scattering  Absorption  Coating  Pigment  Metal  Clay tile  Concrete tile  Wood  Asphalt shingle  Treatment  Conversion coating
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