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0.15MW单循环流化床的稻壳粉气化实验研究 被引量:1
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作者 李松 范晓旭 +2 位作者 郭冬彦 初雷哲 王琪 《中国农机化学报》 2016年第8期186-189,共4页
在0.15MW的生物质单循环流化床上,开展稻壳粉的气化实验研究。对以空气为气化剂,0~0.6mm河砂为流化介的稻壳粉气化过程进行分析。结果表明:利用该单循环流化床,稻壳粉在730℃左右能够进行稳定的气化反应。沿气化炉膛高度方向温差较小... 在0.15MW的生物质单循环流化床上,开展稻壳粉的气化实验研究。对以空气为气化剂,0~0.6mm河砂为流化介的稻壳粉气化过程进行分析。结果表明:利用该单循环流化床,稻壳粉在730℃左右能够进行稳定的气化反应。沿气化炉膛高度方向温差较小,最大值仅为42℃,温度分布均匀,流化循环状态良好。测定的气化气成分中,可燃气成分总体含量相对较低,无SO2和NOX等有害气体产生。气化过程的残留物灰分中,底渣含碳量几乎为零,循环灰平均含碳量为3%左右,飞灰平均含碳量为13%左右,气化反应充分,并且适合做土壤渗滤装置填料,净化生活污水的灰分所占比重高达90%以上。 展开更多
关键词 单循环流化床 稻壳粉气化 平均含碳量
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Regional Diferences in the Efect of Climate and Soil Texture on Soil Organic Carbon 被引量:1
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作者 WANG Mei-Yan SHI Xue-Zheng +4 位作者 YU Dong-Sheng XU Sheng-Xiang TAN Man-Zhi SUN Wei-Xia ZHAO Yong-Cun 《Pedosphere》 SCIE CAS CSCD 2013年第6期799-807,共9页
The agricultural soil carbon pool plays an important role in mitigating greenhouse gas emission ana unaerstanamg the son orgamc carbon-climate-soil texture relationship is of great significance for estimating cropland... The agricultural soil carbon pool plays an important role in mitigating greenhouse gas emission ana unaerstanamg the son orgamc carbon-climate-soil texture relationship is of great significance for estimating cropland soil carbon pool responses to climate change. Using data from 900 soil profiles, obtained from the Second National Soil Survey of China, we investigated the soil organic carbon (SOC) depth distribution in relation to climate and soil texture under various climate regimes of the cold northeast region (NER) and the warmer Huang-Huai-Hai region (HHHR) of China. The results demonstrated that the SOC content was higher in NER than in HHHR. For both regions, the SOC content at all soil depths had significant negative relationships with mean annual temperature (MAT), but was related to mean annual precipitation (MAP) just at the surface 0-20 cm. The climate effect on SOC content was more pronounced in NER than in HHHR. Regional differences in the effect of soil texture on SOC content were not found. However, the dominant texture factors were different. The effect of sand content on SOC was more pronounced than that of clay content in NER. Conversely, the effect of clay on SOC was more pronounced than sand in HHHR. Climate and soil texture jointly explained the greatest SOC variability of 49.0% (0-20 cm) and 33.5% (20-30 cm) in NER and HHHR, respectively. Moreover, regional differences occurred in the importance of climate vs. soil texture in explaining SOC variability. In NER, the SOC content of the shallow layers (0-30 cm) was mainly determined by climate factor, specifically MAT, but the SOC content of the deeper soil layers (30-100 cm) was more affected by texture factor, specifically sand content. In HHHR, all the SOC variability in all soil layers was predominantly best explained by clay content. Therefore, when temperature was colder, the climate effect became stronger and this trend was restricted by soil depth. The regional differences and soil depth influence underscored the importance of explicitly considering them in modeling long-term soil responses to climate change and predicting potential soil carbon sequestration. 展开更多
关键词 climate change CROPLAND soil carbon pool soil depth TEMPERATURE
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