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生物炭制备及其对土壤理化性质影响的研究进展 被引量:54

Research Progress on Preparing Biochar and its Effect on Soil Physio-Chemical Properties
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摘要 生物炭作为一种新型的土壤改良剂和吸附剂,近年来成为农业、环境、能源等领域的关注热点。生物炭是通过有机物质在缺氧的条件下热解形成的,不同的原料及生产条件都会对生物炭的性质产生影响。生物炭能够能够改良土壤,改善土壤的容重、总孔隙度和保水性,还可以调节土壤的酸碱度,增强土壤阳离子交换量(CEC),提高土壤养分。系统总结了生物炭生产方法、理化特性及其对土壤理化性质的影响,为优选生物炭、提升生物炭产品附加值、促进土壤改良提供理论支撑。 Recently, biochar as a new soil conditioner and adsorbent has become a hot spot concerned in agriculture, environment, energy and other fields. Biochar is produced by organic matter pyrolysis in absence of oxygen. Different raw materials and production conditions will produce biochar properties. Biochar can improve soil fertility, bulk density, total porosity and water retention, and also can adjust soil pH, enhance soil cation exchange capacity (CEC), improve soil nutrients. This paper summarized biochar producing method, its physical and chemical properties and its effect on soil physical and chemical properties, thus provided theoretical support to optimize biochar, upgrade the added value of it products, and promote the soil improvement.
出处 《中国农业科技导报》 CAS CSCD 北大核心 2015年第2期126-133,共8页 Journal of Agricultural Science and Technology
基金 公益性行业(农业)科研专项(201303095-2)资助
关键词 生物炭 生产方法 理化性质 改良土壤 biochar production method physical and chemical properties soil improvement
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  • 1Antal M J, Gronli M. The art, science and technology of charcoal production[J]. Ind. Engin. Chem., 2003, 42:1619 -1640.
  • 2全顺子,李宗铁.神奇的木醋液和木炭粉[M].吉林:延边大学出版社,2007:7-10,73-76.
  • 3张阿凤,潘根兴,李恋卿.生物黑炭及其增汇减排与改良土壤意义[J].农业环境科学学报,2009,28(12):2459-2463. 被引量:240
  • 4Karaosmanoglu F, Fsigigur-Ergundenler A, Sever A. Biochar from the straw-stalk of rapeseed plant [ J ]. Energy Fuels, 2000, 14(2): 336-339.
  • 5Ozyurtkan M H, Ozcimen D, Mericboyu A E. Investigation of the carbonization behavior of hybrid poplar [ J ]. Fuel Process. Technol., 2008, 89(9) : 858-863.
  • 6Ozcimen D, Karansmanoglu F. Production and characterization of bio-oil and bieehar from rapeseed cake[ J]. Renew. Energy, 2004, 29(5): 779-787.
  • 7Ozcimen D, Ersoy-Mericboyu A. A study on the carbonization of grapeseed and chestnut shell [ J ]. Fuel Process. Technol., 2008, 89(11) : 1041-1046.
  • 8Sanchez M E, Martinez O, G6mez X, et al.. Pyrolysis of mixtures of sewage sludge and manure: a comparison of the results obtained in the laboratory (semi-pilot) and in a pilot plant[J]. Waste Manag., 2007, 27( 10): 1328-1334.
  • 9Inyang M, Gao B, Pullammanappallil P, et al.. Biochar from anaerobically digested sugarcane bagasse [ J ]. Bioresource Technol., 2010, 101(22) : 8868-8872.
  • 10闫智培,李十中.生物质热解生产生物炭研究进展[A].见:全国农村清洁能源与低碳技术学术研讨会论文集[C].郑州:全国农村清洁能源与低碳技术学术研讨会,2011,185-190.

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