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硼氢化钾改性碳微球活化过硫酸盐高效去除偶氮染料 被引量:1
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作者 陶慧宇 邓琪 +4 位作者 赵永花 周香琴 吴代赦 李东阳 马志飞 《南昌大学学报(理科版)》 CAS 北大核心 2023年第1期56-63,共8页
为降解偶氮染料废水,采用水热法制备了铁碳微球颗粒(FeOX@C),通过KBH4溶液改性获得了还原剂改性微球颗粒材料(Fe@C),考察了其活化过硫酸盐(PDS)对偶氮类染料活性黑5染料(RB5)废水的降解效能及其活化机制。结果表明,Fe@C活化PDS对RB5去... 为降解偶氮染料废水,采用水热法制备了铁碳微球颗粒(FeOX@C),通过KBH4溶液改性获得了还原剂改性微球颗粒材料(Fe@C),考察了其活化过硫酸盐(PDS)对偶氮类染料活性黑5染料(RB5)废水的降解效能及其活化机制。结果表明,Fe@C活化PDS对RB5去除具备优异性能,脱色效率和萘环破坏效率分别为95.6%,48.4%;Fe@C、过硫酸盐投加量增加促进RB5脱色和萘环的破坏效率,随着RB5初始浓度的增加,去除效率逐渐降低;pH值为3和11降低了RB5脱色和萘环破坏速率,但两者的最终去除效率未出现明显差异;不同浓度SO_(4)^(2-)和Cl^(-)对体系中RB5去除效果的影响较小;不同影响因素对Fe@C/PDS体系RB5脱色速率和萘环破坏速率存在差异性,证明产生的活性物质优先攻击发色基团,再破坏萘环结构;在Fe@C/PDS体系中主要活性物质为单线态氧(^(1)O_(2)),且硫酸根自由基(SO_(4)·^(-))和羟基自由基(·OH)存在一定作用,表明降解主要遵循非自由基作用机制。 展开更多
关键词 KBH_(4)还原 铁碳微球 过硫酸盐 偶氮染料 自由基机制
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Microaerobic iron oxidation and carbon assimilation and associated microbial community in paddy soil
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作者 Yating Chen Xiaomin Li +1 位作者 Tongxu Liu Fangbai Li 《Acta Geochimica》 EI CAS CSCD 2017年第3期502-505,共4页
Iron oxidation is a prevalent and important biogeochemical process in paddy soil,but little is known about whether and how microbially mediated iron oxidation is coupled with carbon assimilation,particularly under mic... Iron oxidation is a prevalent and important biogeochemical process in paddy soil,but little is known about whether and how microbially mediated iron oxidation is coupled with carbon assimilation,particularly under microaerobic conditions.Here,we investigated kinetics of CO_2 assimilation and Fe(Ⅱ)oxidation in an incubation experiment with paddy soil under suboxic conditions,and profiled the associated microbial community using DNA-stable isotope probing and 16S r RNA gene-based sequencing.The results showed that CO_2 assimilation and Fe(II)oxidation in the gradient tubes were predominantly mediated by the microbes enriched in the paddy soil,primarily Azospirillum and Magnetospirillum,as their relative abundances were higher in the^( 13)C heavy fractions compared to^( 12)C heavy fractions.This study provided direct evidence of chemoautotrophic microaerophiles linking iron oxidation and carbon assimilation at the oxic–anoxic interface in the paddy soil ecosystem. 展开更多
关键词 Paddy soil Microaerobic Fe(Ⅱ)-oxidation CO2 assimilation SIP
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