Peng X., Ye L. L., Wang C. H., et al. Temperature-and duration-dependent rice straw-derived biochar: Characteristics and its effects on soil properties of an ultisol in southern China. Soil & Tillage Research,2011, 112(2): 159-166
[2]
Yakov Kuzyakov, Irina Subbotina, Haiqing Chen, et al. Black carbon decomposition and incorporation into soil microbial biomass estimated by 14C labeling. Soil Biology & Biochemistry, 2009, 41(2): 210-219
[3]
沈伯雄, 张增辉, 李力, 等. 热解终温对污泥热解残渣特性的影响. 环境污染与防治,2011, 33(2): 7-11 Shen Boxiong, Zhang Zenghui, Li Li, et al. Effect of the final pyrolysis temperature on the characteristics of the pyrolysis residue of sewage sludge. Environmental Pollution & Control,2011, 33(2): 7-11 (in Chinese)
[4]
邵敬爱, 陈汉平, 晏蓉, 等. 热解温度对污泥热解半焦产率与特性影响的研究. 可再生能源, 2008, 26(5): 31-34 Shao Jingai, Chen Hanping, Yan Rong, et al. Research on the effect of temperature on the production and properties of char from sewage sludge pyrolysis. Renewable Energy Resources, 2008, 26(5): 31-34 (in Chinese)
[5]
Minori Uchimiya, Lynda H. Wartelle, K. Thomas Klasson, et al. Influence of pyrolysis temperature on biochar property and function as a heavy metal sorbent in soil. Journal of Agricultural and Food Chemistry,2011, 59(6): 2501-2510
[6]
Marco Keiluweit, Peter S. Nico, Mark G. Johnson, et al. Dynamic molecular structure of plant biomass-derived black carbon (Biochar). Environ. Sci. Technol.,2010, 44(4): 1247-1253
[7]
Mustafa K. Hossain, Vladimir Strezov, K. Yin Chan, et al. Influence of pyrolysis temperature on production and nutrient properties of wastewater sludge biochar. Journal of Environmental Management,2011, 92(1): 223-228
[8]
Shinogi Y. Nutrient leaching from carbon products of sludge. In: ASAE/CSAE Annual International Meeting, Paper No. 044063, Ottawa, Ontario, Canada, 2004
[9]
Bagreev A., Bandosz T. J., Locke D. C. Pore structure and surface chemistry of adsorbents obtained by pyrolysis of sewage derived fertilizer. Carbon, 2001, 39(13): 1971-1979
[10]
Bridle T. R., Pritchard D. Energy and nutrient recovery from sewage sludge via pyrolysis. Water Science and Technology, 2004, 50(9): 169-175
[11]
Strezov V., Evans T. J. Thermal processing of paper sludge and characterization of its pyrolysis products. Waste Management, 2009, 29(5): 1644-1648
[12]
王里奥, 陶玉, 罗书鸾. 利用城市污泥堆肥及建筑弃土种植麦冬研究. 环境工程学报,2010,4(10): 2367-2372 Wang Liao, Tao Yu, Luo Shu luan, et al. Research of Ophiopogogon japonicus planting by municipal sludge compost and construction abandoned soil. Chinese Journal of Environmental Engineering,2010, 4(10): 2367-2372 (in Chinese)
[13]
Hwang I. H., Ouchi Y., Matsuto T. Characteristics of leachate from pyrolysis residue of sewage sludge. Chemosphere, 2007, 68(10): 1913-1919
[14]
Caballero J. A., Front R., Marcilla A., et al. Characterization of sewage sludges by primary and secondary pyrolysis. Journal of Analytical and Applied Pyrolysis, 1997, 5(40-41): 433-450
[15]
Lehmann J., Gaunt J., Rondon M. Bio-char sequestration in terrestrial ecosystems-a review. Mitigation and Adaptation Strategies for Global Change, 2006, 11(2): 403-427
[16]
Tsai W. T., Lee M. K., Chang Y. M. Fast pyrolysis of rice straw, sugarcane bagasse and coconut shell in an induction heating reactor. Journal of Analytical and Applied Pyrolysis, 2006, 76(1-2): 230-237
[17]
Horne P. A., Williams P. T. Influence of temperature on the products from the flash pyrolysis of biomass. Fuel, 1996, 75(9): 1051-1059
[18]
中华人民共和国国家标准 GB/T 212-2001煤的工业分析方法 GB/T 212-2001 Proximate Analysis of Coal (in Chinese)
[19]
Cogger S. G., Forge T. A., Neilsen G. H. Biosolid recycling: Nitrogen management and soil ecology. Canadian Journal of Soil Science, 2006, 86(4): 613-620
[20]
余杰, 田宁宁, 王凯军, 等.中国城市污水处理厂污泥处理、处置问题探讨分析. 环境工程学报, 2007, 1(1): 82-86 Yu Jie, Tian Ningning, Wang Kaijun, et al. Analysis and discussion of sludge disposal and treatment of sewage treatment plants in China. Chinese Journal of Environmental Engineering, 2007, 1(1): 82-86 (in Chinese)
[21]
池勇志, 迟季平, 马颜, 等. 城镇污水污泥性质与处理处置概况. 环境科学与技术,2010, 33(12F): 169-172 Chi Yongzhi, Chi Jiping, Ma Yan, et al. Survey on sewage sludge characteristics and treatment and disposal. Environmental Science & Technology,2010, 33(12F): 169-172 (in Chinese)
[22]
Singh R. P., Agrawal M. Potential benefits and risks of land application of sewage sludge. Waste Management, 2008, 28(2): 347-358
[23]
Hospido A., Moreira M. T., Martin M., et al. Environmental evaluation of different treatment processes for sludge from urban wastewater treatments: Anaerobic digestion versus thermal process. International Journal of Life Cycle Analysis, 2005, 5(5): 336-345