Effects of biochar compared to organic and inorganic fertilizers on soil quality and plant growth in a greenhouse experiment

被引:399
作者
Schulz, Hardy [1 ]
Glaser, Bruno [1 ]
机构
[1] Univ Halle Wittenberg, D-06120 Halle, Germany
关键词
carbon sequestration; soil amelioration; soil fertility; terra preta; crop response; BLACK CARBON; SUSTAINABLE AGRICULTURE; CHARCOAL; NITROGEN; MANURE; INCREASES; FERRALSOL; NITRATE; MODEL;
D O I
10.1002/jpln.201100143
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Our contemporary society is struggling with soil degradation due to overuse and climate change. Pre-Columbian people left behind sustainably fertile soils rich in organic matter and nutrients well known as terra preta (de Indio) by adding charred residues (biochar) together with organic and inorganic wastes such as excrements and household garbage being a model for sustainable agriculture today. This is the reason why new studies on biochar effects on ecosystem services rapidly emerge. Beneficial effects of biochar amendment on plant growth, soil nutrient content, and C storage were repeatedly observed although a number of negative effects were reported, too. In addition, there is no consensus on benefits of biochar when combined with fertilizers. Therefore, the objective of this study was to test whether biochar effects on soil quality and plant growth could be improved by addition of mineral and organic fertilizers. For this purpose, two growth periods of oat (Avena sativa L.) were studied under tropical conditions (26 degrees C and 2600?mm annual rainfall) on an infertile sandy soil in the greenhouse in fivefold replication. Treatments comprised control (only water), mineral fertilizer (111.5?kg N ha1, 111.5?kg P ha1, and 82.9?kg K ha1), compost (5% by weight), biochar (5% by weight), and combinations of biochar (5% by weight) plus mineral fertilizer (111.5?kg N ha1, 111.5?kg P ha1, and 82.9?kg K ha1), and biochar (2.5% by weight) plus compost (2.5% by weight). Pure compost application showed highest yield during the two growth periods, followed by the biochar + compost mixture. biochar addition to mineral fertilizer significantly increased plant growth compared to mineral fertilizer alone. During the second growth period, plant yields were significantly smaller compared to the first growth period. biochar and compost additions significantly increased total organic C content during the two growth periods. Cation-exchange capacity (CEC) could not be increased upon biochar addition while base saturation (BS) was significantly increased due to ash addition with biochar. On the other hand, compost addition significantly increased CEC. Biochar addition significantly increased soil pH but pH value was generally lower during the second growth period probably due to leaching of base cations. Biochar addition did not reduce ammonium, nitrate, and phosphate leaching during the experiment but it reduced nitrification. The overall plant growth and soil fertility decreased in the order compost > biochar + compost > mineral fertilizer + biochar > mineral fertilizer > control. Further experiments should optimize biocharorganic fertilizer systems.
引用
收藏
页码:410 / 422
页数:13
相关论文
共 52 条
[1]  
[Anonymous], 1999, CYCLES SOILS CARBON
[2]   Biochar amendment techniques for upland rice production in Northern Laos 1. Soil physical properties, leaf SPAD and grain yield [J].
Asai, Hidetoshi ;
Samson, Benjamin K. ;
Stephan, Haefele M. ;
Songyikhangsuthor, Khamdok ;
Homma, Koki ;
Kiyono, Yoshiyuki ;
Inoue, Yoshio ;
Shiraiwa, Tatsuhiko ;
Horie, Takeshi .
FIELD CROPS RESEARCH, 2009, 111 (1-2) :81-84
[3]   Potential mechanisms for achieving agricultural benefits from biochar application to temperate soils: a review [J].
Atkinson, Christopher J. ;
Fitzgerald, Jean D. ;
Hipps, Neil A. .
PLANT AND SOIL, 2010, 337 (1-2) :1-18
[4]   Forest regrowth as the controlling factor of soil nutrient availability 75 years after fire in a deciduous forest of Southern Quebec [J].
Bélanger, N ;
Côté, B ;
Fyles, JW ;
Courchesne, F ;
Hendershot, WH .
PLANT AND SOIL, 2004, 262 (1-2) :363-372
[5]   Effect of banded biochar on dryland wheat production and fertiliser use in south-western Australia: an agronomic and economic perspective [J].
Blackwell, Paul ;
Krull, Evelyn ;
Butler, Greg ;
Herbert, Allan ;
Solaiman, Zakaria .
AUSTRALIAN JOURNAL OF SOIL RESEARCH, 2010, 48 (6-7) :531-545
[6]   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
[7]   Microbial immobilization of ammonium and nitrate in relation to ammonification and nitrification rates in organic and conventional cropping systems [J].
Burger, M ;
Jackson, LE .
SOIL BIOLOGY & BIOCHEMISTRY, 2003, 35 (01) :29-36
[8]   Agronomic values of greenwaste biochar as a soil amendment [J].
Chan, K. Y. ;
Van Zwieten, L. ;
Meszaros, I. ;
Downie, A. ;
Joseph, S. .
AUSTRALIAN JOURNAL OF SOIL RESEARCH, 2007, 45 (08) :629-634
[9]  
Chan K.Y., 2009, Biochar for environmental management: science and technology, P67, DOI DOI 10.4324/9781849770552
[10]   Biochar and the Nitrogen Cycle: Introduction [J].
Clough, Tim J. ;
Condron, Leo M. .
JOURNAL OF ENVIRONMENTAL QUALITY, 2010, 39 (04) :1218-1223