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厌氧条件下生物铁泥中铁氨氧化现象探究 被引量:2
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作者 俞小军 杨珍妮 +4 位作者 张莉红 陈新娟 冯娟娟 王亚娥 李杰 《环境科学与技术》 CAS CSCD 北大核心 2022年第3期156-162,共7页
文章采用经过厌氧预处理的生物铁泥作为接种污泥,以氨氮和三价铁为主要营养源,探究在厌氧条件下生物铁泥中的铁氨氧化过程及其影响因素。结果表明:实验组出现了明显的铁氨氧化现象,NH;去除率为89.33%,伴随NH;去除产生的Fe(Ⅱ)浓度最高... 文章采用经过厌氧预处理的生物铁泥作为接种污泥,以氨氮和三价铁为主要营养源,探究在厌氧条件下生物铁泥中的铁氨氧化过程及其影响因素。结果表明:实验组出现了明显的铁氨氧化现象,NH;去除率为89.33%,伴随NH;去除产生的Fe(Ⅱ)浓度最高达到了751.16 mg/L,其氨氮去除率和Fe(Ⅱ)浓度远远高于接种生物铁泥但未投加三价铁的对照组B,对照组B氨氮去除率和Fe(Ⅱ)浓度最后分别仅为26.03%和257.8 mg/L,而只投加三价铁的对照组A未出现NH;的去除和Fe(Ⅲ)的还原。各影响因素实验中NH;出水浓度的对数值基本都与其反应时间符合一级衰减动力学模式,其模型拟合校正系数R;在0.784~0.971之间。 展开更多
关键词 铁氨氧化 生物铁泥 脱氮 影响因素
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Experimental and mechanistic study on iron extraction from high-iron red mud under multiple physical field coupling conditions
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作者 DONG Hai-pei YANG Jin-lin +3 位作者 ZHOU Wen-tao YU Xu-yang MA Shao-jian WANG Ding-zheng 《Journal of Central South University》 2025年第7期2476-2486,共11页
Red mud is a solid waste discharged in the process of alumina production,and how to realize the efficient recovery of its iron is an urgent problem to be solved.In this study,the iron extraction test and mechanism stu... Red mud is a solid waste discharged in the process of alumina production,and how to realize the efficient recovery of its iron is an urgent problem to be solved.In this study,the iron extraction test and mechanism study of high iron red mud were carried out under the coupling conditions of multiple physical field(microwave field,gas-solid flow field and temperature field)with biomass as the reducing agent.The test results showed that under the optimal conditions,an iron concentrate with a yield of 78.4%,an iron grade of 59.23%,and a recovery rate of 86.65%was obtained.The analyses of XRD,XPS,TEM,and SEM-EDS showed that during the roasting process,the hematite in the high-iron red mud was completely converted to magnetite,and the biomass produced the reductant that provided the magnetization reaction;A large number of cracks and pores appeared in the surface of the hematite reduction product particles,which helped to induce iron minerals to undergo effective mineral phase transformation.The above study provides ideas for the phase transformation and efficient recovery of iron minerals in red mud. 展开更多
关键词 multiple physical field high-iron red mud biomass mineral phase transformation iron extraction
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