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生物质高温无焰燃烧技术的研究与探讨
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作者 马培勇 唐志国 林其钊 《华电技术》 CAS 2006年第12期83-86,91,共5页
阐述了生物质(秸秆)利用技术现状,分析了生物质气化技术、液化技术、直接燃烧技术存在的问题和不足。基于超焓燃烧思想提出生物质能利用新技术———无焰燃烧,采用了液态排渣技术、分级燃烧技术和烟气再循环等技术实现生物质(秸秆)的高... 阐述了生物质(秸秆)利用技术现状,分析了生物质气化技术、液化技术、直接燃烧技术存在的问题和不足。基于超焓燃烧思想提出生物质能利用新技术———无焰燃烧,采用了液态排渣技术、分级燃烧技术和烟气再循环等技术实现生物质(秸秆)的高效、低污染、经济、安全、大规模的高品位开发利用。 展开更多
关键词 生物质(秸秆) 无焰燃烧 高温燃烧
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Rice Straw-Derived Biochar Properties and Functions as Cu(Ⅱ) and Cyromazine Sorbents as Influenced by Pyrolysis Temperature 被引量:8
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作者 JIANG Jun Yongbo PENG +3 位作者 YUAN Min HONG Zhineng WANG Dejian XU Renkou 《Pedosphere》 SCIE CAS CSCD 2015年第5期781-789,共9页
In this study, biochars from rice straw (Oryza sativa L.) were prepared at 200-600 ℃ by oxygen-limited pyrolysis to investigate the changes in properties of rice straw biochars produced at different temperatures, a... In this study, biochars from rice straw (Oryza sativa L.) were prepared at 200-600 ℃ by oxygen-limited pyrolysis to investigate the changes in properties of rice straw biochars produced at different temperatures, and to examine the adsorption capacities of the biochars for a heavy metal, copper(II) (Cu(II)), and an organic insecticide of cyromazine, as well as to further reveal the adsorption mechanisms. The results obtained with batch experiments showed that the amount of Cu(II) adsorbed varied with the pyrolysis temperatures of rice straw biochar. The biochar produced at 400 ~C had the largest adsorption capacity for Cu(II) (0.37 mol kg-1) among the biochars, with the non-electrostatic adsorption as the main adsorption mechanism. The highest adsorption capacity for cyromazine (156.42 g kg-1) was found in the rice straw biochar produced at 600 ℃, and cyromazine adsorption was exclusively predominated by surface adsorption. An obvious competitive adsorption was found between 5 mmol L-1 Cu(II) and 2 g L-1 cyromazine when they were in the binary solute system. Biochar may be used to remediate heavy metal- and organic insecticide-contaminated water, while the pyrolysis temperature of feedstocks for producing biochar should be considered for the restoration of multi-contamination. 展开更多
关键词 adsorption capacity adsorption mechanism DESORPTION heavy metal multi-contaminated water non-electrostatic adsorption organic insecticide surface charge
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