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Household light makes global heat: high black carbon emissions from kerosene wick lamps.


ABSTRACT: Kerosene-fueled wick lamps used in millions of developing-country households are a significant but overlooked source of black carbon (BC) emissions. We present new laboratory and field measurements showing that 7-9% of kerosene consumed by widely used simple wick lamps is converted to carbonaceous particulate matter that is nearly pure BC. These high emission factors increase previous BC emission estimates from kerosene by 20-fold, to 270 Gg/year (90% uncertainty bounds: 110, 590 Gg/year). Aerosol climate forcing on atmosphere and snow from this source is estimated at 22 mW/m² (8, 48 mW/m²), or 7% of BC forcing by all other energy-related sources. Kerosene lamps have affordable alternatives that pose few clear adoption barriers and would provide immediate benefit to user welfare. The net effect on climate is definitively positive forcing as coemitted organic carbon is low. No other major BC source has such readily available alternatives, definitive climate forcing effects, and cobenefits. Replacement of kerosene-fueled wick lamps deserves strong consideration for programs that target short-lived climate forcers.

SUBMITTER: Lam NL 

PROVIDER: S-EPMC3531557 | biostudies-literature | 2012 Dec

REPOSITORIES: biostudies-literature

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Household light makes global heat: high black carbon emissions from kerosene wick lamps.

Lam Nicholas L NL   Chen Yanju Y   Weyant Cheryl C   Venkataraman Chandra C   Sadavarte Pankaj P   Johnson Michael A MA   Smith Kirk R KR   Brem Benjamin T BT   Arineitwe Joseph J   Ellis Justin E JE   Bond Tami C TC  

Environmental science & technology 20121204 24


Kerosene-fueled wick lamps used in millions of developing-country households are a significant but overlooked source of black carbon (BC) emissions. We present new laboratory and field measurements showing that 7-9% of kerosene consumed by widely used simple wick lamps is converted to carbonaceous particulate matter that is nearly pure BC. These high emission factors increase previous BC emission estimates from kerosene by 20-fold, to 270 Gg/year (90% uncertainty bounds: 110, 590 Gg/year). Aeros  ...[more]

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