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煤间接液化灰渣制备免烧砖研究 被引量:25
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作者 章丽萍 温晓东 +3 位作者 史云天 陈傲蕾 曲宏斌 dhawal chheda 《中国矿业大学学报》 EI CAS CSCD 北大核心 2015年第2期354-358,共5页
基于煤炭液化合成油过程中产生的灰渣急需进行合理利用与处置的紧迫性,实验以某企业煤间接液化过程中产生的气化渣、锅炉渣、除尘灰为研究对象,采用了氧化物成分分析、工业分析、元素分析、电子扫描显微镜(SEM)以及能谱仪(EDS)对3种灰... 基于煤炭液化合成油过程中产生的灰渣急需进行合理利用与处置的紧迫性,实验以某企业煤间接液化过程中产生的气化渣、锅炉渣、除尘灰为研究对象,采用了氧化物成分分析、工业分析、元素分析、电子扫描显微镜(SEM)以及能谱仪(EDS)对3种灰渣的组分、元素组成、表面结构进行测试分析,探讨了以气化渣和锅炉渣为制备免烧砖的主材料,以生石灰、水泥、除尘灰为辅料,以石膏为激发剂,采用正交实验,通过预搅拌、陈化、二次搅拌、成型、蒸汽养护、脱模出室分检工序制备免烧砖.结果表明:气化渣、锅炉渣、除尘灰、石灰、石膏、水泥的质量分数分别为35.6%,32.4%,14%,8%,4%,6%,在100℃蒸养18h可制备出符合《非烧结砖垃圾尾矿砖》(JC/T422—2007)标准和《蒸压灰砂砖》(GB 11945—1999)标准要求的免烧砖. 展开更多
关键词 煤间接液化 灰渣 免烧砖 蒸汽养护 抗压强度
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Evaluation of co-metabolic removal of trichloroethylene in a biotrickling filter under acidic conditions 被引量:3
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作者 dhawal chheda George A.Sorial 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2017年第7期54-61,共8页
This study investigated the removal of hydrophobic trichloroethylene(TCE) in the presence of methanol(co-metabolite) in a biotrickling filter,which was seeded with fungi at pH 4.Starvation was chosen as the biomas... This study investigated the removal of hydrophobic trichloroethylene(TCE) in the presence of methanol(co-metabolite) in a biotrickling filter,which was seeded with fungi at pH 4.Starvation was chosen as the biomass control strategy.Two systems,Biofilter I(methanol:TCE 70:30) and Biofilter II(methanol:TCE 80:20) were run in parallel,each with varying composition ratios.The TCE loading rates for both biofilters ranged from 3.22 to 12.88 g/m^3/hr.Depending on the ratio,methanol concentrations varied from 4.08 to 27.95 g/m^3/hr.The performance of the systems was evaluated and compared by calculating removal kinetics,carbon mass balance,efficiencies and elimination capacities.Methanol was observed to enhance TCE removal during the initial loading rate.However,methanol later inhibited TCE degradation above 6.44 g TCE/m^3/hr(Biofilter I) and 3.22 g TCE/m^3/hr(Biofilter II).Conversely,TCE did not impede methanol removal because over 95% methanol elimination was consistently achieved.Overall,Biofilter I was able to outperform Biofilter II due to its greater resistance towards methanol competition. 展开更多
关键词 Biofiltration Biotrickling Filter Fungi Methanol Trichloroethylene
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