Literature DB >> 17747369

Global deforestation: contribution to atmospheric carbon dioxide.

G M Woodwell, J E Hobbie, R A Houghton, J M Melillo, B Moore, B J Peterson, G R Shaver.   

Abstract

A study of effects of terrestrial biota on the amount of carbon dioxide in the atmosphere suggests that the global net release of carbon due to forest clearing between 1860 and 1980 was between 135 x 10(15) and 228 x 10(15) grams. Between 1.8 x 10(15) and 4.7 x 10(15) grams of carbon were released in 1980, of which nearly 80 percent was due to deforestation, principally in the tropics. The annual release of carbon from the biota and soils exceeded the release from fossil fuels until about 1960. Because the biotic release has been and remains much larger than is commonly assumed, the airborne fraction, usually considered to be about 50 percent of the release from fossil fuels, was probably between 22 and 43 percent of the total carbon released in 1980. The increase in carbon dioxide in the atmosphere is thought by some to be increasing the storage of carbon in the earth's remaining forests sufficiently to offset the release from deforestation. The interpretation of the evidence presented here suggests no such effect; deforestation appears to be the dominant biotic effect on atmospheric carbon dioxide. If deforestation increases in proportion to population, the biotic release of carbon will reach 9 x 10(15) grams per year before forests are exhausted early in the next century. The possibilities for limiting the accumulation of carbon dioxide in the atmosphere through reduction in use of fossil fuels and through management of forests may be greater than is commonly assumed.

Entities:  

Year:  1983        PMID: 17747369     DOI: 10.1126/science.222.4628.1081

Source DB:  PubMed          Journal:  Science        ISSN: 0036-8075            Impact factor:   47.728


  3 in total

1.  Global patterns of kelp forest change over the past half-century.

Authors:  Kira A Krumhansl; Daniel K Okamoto; Andrew Rassweiler; Mark Novak; John J Bolton; Kyle C Cavanaugh; Sean D Connell; Craig R Johnson; Brenda Konar; Scott D Ling; Fiorenza Micheli; Kjell M Norderhaug; Alejandro Pérez-Matus; Isabel Sousa-Pinto; Daniel C Reed; Anne K Salomon; Nick T Shears; Thomas Wernberg; Robert J Anderson; Nevell S Barrett; Alejandro H Buschmann; Mark H Carr; Jennifer E Caselle; Sandrine Derrien-Courtel; Graham J Edgar; Matt Edwards; James A Estes; Claire Goodwin; Michael C Kenner; David J Kushner; Frithjof E Moy; Julia Nunn; Robert S Steneck; Julio Vásquez; Jane Watson; Jon D Witman; Jarrett E K Byrnes
Journal:  Proc Natl Acad Sci U S A       Date:  2016-11-14       Impact factor: 11.205

2.  Effects of CO2 enrichment and water stress on gas exchange of Liquidambar styraciflua and Pinus taeda seedlings grown under different irradiance levels.

Authors:  Leslie C Tolley; B R Strain
Journal:  Oecologia       Date:  1985-01       Impact factor: 3.225

3.  The effects of enriched CO2 atmospheres on plant-insect herbivore interactions: growth responses of larvae of the specialist butterfly, Junonia coenia (Lepidoptera: Nymphalidae).

Authors:  E D Fajer
Journal:  Oecologia       Date:  1989-12       Impact factor: 3.225

  3 in total

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