The charcoal vision: A win-win-win scenario for simultaneously producing bioenergy, permanently sequestering carbon, while improving soil and water quality

被引:647
作者
Laird, David A. [1 ]
机构
[1] USDA ARS, Natl Soil Tilth Lab, Ames, IA 50011 USA
关键词
D O I
10.2134/agronj2007.0161
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Processing biomass through a distributed network of fast pyrolyzers may be a sustainable platform for producing energy from biomass. Fast pyrolyzers thermally transform biomass into bio-oil, syngas, and charcoal. The syngas could provide the energy needs of the pyrolyzer. Bio-oil is an energy raw material (similar to 17 MJ kg(-1)) that can be burned to generate heat or shipped to a refinery for processing into transportation fuels. Charcoal could also be used to generate energy; however, application of the charcoal co-product to soils may be key to sustainability. Application of charcoal to soils is hypothesized to increase bioavailable water, build soil organic matter, enhance nutrient cycling, lower bulk density, act as a liming agent, and reduce leaching of pesticides and nutrients to surface and ground water. The half-life of C in soil charcoal is in excess of 1000 yr. Hence, soil-applied charcoal will make both a lasting contribution to soil quality and C in the charcoal will be removed from the atmosphere and sequestered for millennia. Assuming the United States can annually produce 1.1 x 10(9) Mg of biomass from harvestable forest and crop lands, national implementation of The Charcoal Vision would generate enough bio-oil to displace 1.91 billion barrels of fossil fuel oil per year or about 25% of the current U.S. annual oil consumption. The combined C credit for fossil fuel displacement and permanent sequestration, 363 Tg per year, is 10% of the average annual U.S. emissions of CO2-C.
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页码:178 / 181
页数:4
相关论文
共 17 条
[1]   Use of mobile fast pyrolysis plants to densify biomass and reduce biomass handling costs - A preliminary assessment [J].
Badger, PC ;
Fransham, P .
BIOMASS & BIOENERGY, 2006, 30 (04) :321-325
[2]   An overview of fast pyrolysis of biomass [J].
Bridgwater, AV ;
Meier, D ;
Radlein, D .
ORGANIC GEOCHEMISTRY, 1999, 30 (12) :1479-1493
[3]   Revised black carbon assessment using benzene polycarboxylic acids [J].
Brodowski, S ;
Rodionov, A ;
Haumaier, L ;
Glaser, B ;
Amelung, W .
ORGANIC GEOCHEMISTRY, 2005, 36 (09) :1299-1310
[4]  
BRYAN M, 2006, 2038379 LAB
[5]   Black carbon sequestration as an alternative to bioenergy [J].
Fowles, Malcolm .
BIOMASS & BIOENERGY, 2007, 31 (06) :426-432
[6]   Ameliorating physical and chemical properties of highly weathered soils in the tropics with charcoal - a review [J].
Glaser, B ;
Lehmann, J ;
Zech, W .
BIOLOGY AND FERTILITY OF SOILS, 2002, 35 (04) :219-230
[7]   Engineering, nutrient removal, and feedstock conversion evaluations of four corn stover harvest scenarios [J].
Hoskinson, Reed L. ;
Karlen, Douglas L. ;
Birrell, Stuart J. ;
Radtke, Corey W. ;
Wilhelm, W. W. .
BIOMASS & BIOENERGY, 2007, 31 (2-3) :126-136
[8]  
*INT PAN CLIM CHAN, 2007, 4 INT PAN CLIM CHAN
[9]  
LAIRD DA, 2007, USE CHARCOL ENHANCE
[10]  
LEHMANN J, 2006, GLOBAL CHANGE, V11, P403