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移动床生物膜反应器(MBBR)的研究现状及进展 被引量:9
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作者 赖竹林 周雪飞 《水处理技术》 CAS CSCD 北大核心 2021年第10期7-11,共5页
随着污水排放标准越来越严格,要求有效去除污水有机污染物和营养成分。相对于传统活性污泥和固定生物膜工艺,移动床生物膜反应器(MBBR)具有耐受性强、无需反冲洗、占地面积小等优点得到广泛关注。基于生物膜活性和微生物群落分析,对生... 随着污水排放标准越来越严格,要求有效去除污水有机污染物和营养成分。相对于传统活性污泥和固定生物膜工艺,移动床生物膜反应器(MBBR)具有耐受性强、无需反冲洗、占地面积小等优点得到广泛关注。基于生物膜活性和微生物群落分析,对生物膜形成、污水处理影响因素、去除痕量有机污染物及建模研究进行了系统阐述,并提出MBBR可从不同场景下的填料开发、耦合ASM模型和CFD仿真模拟及联合其他生物工艺等提高污水处理效果的发展建议。 展开更多
关键词 移动床生物膜反应器 生物群落 悬浮生物质 建模 水力学模拟 脱氮除磷
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Effect of temperature on suspension magnetization roasting of hematite using biomass waste as reductant:A perspective of gas evolution
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作者 CAO Yue SUN Yong-sheng +2 位作者 HAN Yue-xin GAO Peng LI Yan-jun 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期1870-1887,共18页
The magnetization reduction of hematite using biomass waste can effectively utilize waste and reduce CO_(2) emission to achieve the goals of carbon peaking and carbon neutrality.The effects of temperatures on suspensi... The magnetization reduction of hematite using biomass waste can effectively utilize waste and reduce CO_(2) emission to achieve the goals of carbon peaking and carbon neutrality.The effects of temperatures on suspension magnetization roasting of hematite using biomass waste for evolved gases have been investigated using TG-FTIR,Py-GC/MS and gas composition analyzer.The mixture reduction process is divided into four stages.In the temperature range of 200-450℃ for mixture,the release of CO_(2),acids,and ketones is dominated in gases products.The yield and concentration of small molecules reducing gases increase when the temperature increases from 450 to 900℃.At 700℃,the volume concentrations of CO,H_(2) and CH_(4) peak at 8.91%,8.90% and 4.91%,respectively.During the suspension magnetization roasting process,an optimal iron concentrate with an iron grade of 70.86%,a recovery of 98.66% and a magnetic conversion of 45.70% is obtained at 700℃.Therefore,the magnetization reduction could react greatly in the temperature range of 600 to 700℃ owing to the suitable reducing gases.This study shows a detail gaseous evolution of roasting temperature and provides a new insight for studying the reduction process of hematite using biomass waste. 展开更多
关键词 suspension magnetization roasting biomass pyrolysis gases evolution reduction behavior
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