Characteristics of biomass ashes from different materials and their ameliorative effects on acid soils

被引:0
作者
Renyong Shi [1 ,2 ]
Jiuyu Li [1 ]
Jun Jiang [1 ]
Khalid Mehmood [1 ,2 ]
Yuan Liu [1 ,2 ]
Renkou Xu [1 ]
Wei Qian [1 ]
机构
[1] State Key Laboratory of Soil and Sustainable Agriculture,Institute of Soil Science,Chinese Academy of Sciences
[2] University of Chinese Academy of Sciences
关键词
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中图分类号
S156.6 [红壤、黄壤改良];
学科分类号
082802 ;
摘要
The chemical characteristics,element contents,mineral compositions,and the ameliorative effects on acid soils of five biomass ashes from different materials were analyzed. The chemical properties of the ashes varied depending on the source biomass material. An increase in the concrete shuttering contents in the biomass materials led to higher alkalinity,and higher Ca and Mg levels in biomass ashes,which made them particularly good at ameliorating effects on soil acidity. However,heavy metal contents,such as Cr,Cu,and Zn in the ashes,were relatively high. The incorporation of all ashes increased soil p H,exchangeable base cations,and available phosphorus,but decreased soil exchangeable acidity. The application of the ashes from biomass materials with a high concrete shuttering content increased the soil available heavy metal contents. Therefore,the biomass ashes from wood and crop residues with low concrete contents were the better acid soil amendments.
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页码:294 / 302
页数:9
相关论文
共 24 条
[1]   Distribution and leaching characteristics of trace elements in ashes as a function of different waste fuels and incineration technologies [J].
Naeem Saqib ;
Mattias B?ckstr?m .
Journal of Environmental Sciences, 2015, 36 (10) :9-21
[2]  
Potential of Industrial Byproducts in Ameliorating Acidity and Aluminum Toxicity of Soils Under Tea Plantation[J] D.TIWARI; Pedosphere 2010, 05
[3]  
Crop Yield and Soil Responses to Long-Term Fertilization on a Red Soil in Southern China[J] ZHANG Hui-Min1;2;3;WANG Bo-Ren1;XU Ming-Gang1; and FAN Ting-Lu1 1Key Laboratory of Plant Nutrition and Nutrient Cycling;Ministry of Agriculture of China and Institute of Agricul- tural Resources and Regional Planning;Chinese Academy of Agricultural Sciences;Beijing 100081(China). 2Department of Resource and Environment;Northwest Sci-Tech University of Agriculture and Forestry;Yangling 712100 (China) 3Depa
[4]  
Contribution of Atmospheric Nitrogen Compounds to N Deposition in a Broadleaf Forest of Southern China[J] HU Zheng-Yi; XU Cheng-Kai; ZHOU Li-Na; SUN Ben-Hua; HE Yuan-Qiu; ZHOU Jing and CAO Zhi-Hong State Key Laboratory of Soil and Sustainable Agriculture; Institute of Soil Science; Chinese Academy of Sciences; Nanjing 210008 (China). College of Forest Resources and Environment; Nanjing Forestry University; Nanjing 210007 (China) College of Resources and Environment; Northwest Sci-Tech University
[5]  
Trace element concentrations and associations in some biomass ashes[J] Stanislav V. Vassilev;Christina G. Vassileva;David Baxter Fuel 2014,
[6]  
Investigation of heavy metal mobility and availability by the BCR sequential extraction procedure: relationship between soil properties and heavy metals availability[J] Ali Sungur;Mustafa Soylak;Hasan Ozcan Chemical Speciation & Bioavailability 2014,
[7]  
Physicochemical characterization and possible applications of the waste biomass ash from oleoresin industries of India[J] Rani Abraham;Jacob George;Jacob Thomas;K.K.M. Yusuff Fuel 2013,
[8]  
An overview of the composition and application of biomass ash. Part 1. Phase–mineral and chemical composition and classification[J] Stanislav V. Vassilev;David Baxter;Lars K. Andersen;Christina G. Vassileva Fuel 2013,
[9]  
Pollutants from the combustion of solid biomass fuels[J] A. Williams;J.M. Jones;L. Ma;M. Pourkashanian Progress in Energy and Combustion Science 2011,
[10]  
Characterization of MCM-41 mesoporous materials derived from polish fly ashes[J] International Journal of Mineral Processing 2011,