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基于紫外的高级氧化技术去除水中NDMA的研究 被引量:2
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作者 查晓松 金苏雯 +3 位作者 赵倩 黄培楠 张琳 翁元捷 《水处理技术》 CAS CSCD 北大核心 2022年第9期32-37,共6页
采用两种基于紫外的高级氧化技术—紫外/过氧化氢(UV/H_(2)O_(2))和紫外/过硫酸盐(UV/PS)降解亚硝基二甲胺(NDMA),并考察氧化剂投加量、pH、溶解氧、光照强度等反应条件对NDMA降解效果的影响。结果表明,UV/PS和UV/H_(2)O_(2)对NDMA的去... 采用两种基于紫外的高级氧化技术—紫外/过氧化氢(UV/H_(2)O_(2))和紫外/过硫酸盐(UV/PS)降解亚硝基二甲胺(NDMA),并考察氧化剂投加量、pH、溶解氧、光照强度等反应条件对NDMA降解效果的影响。结果表明,UV/PS和UV/H_(2)O_(2)对NDMA的去除率在一定范围内都会随着氧化剂投加量和光照强度的增加而升高,且增加光照强度对NDMA去除率的促进效果要好于增加氧化剂投加量。对于UV/PS,弱酸性条件下对NDMA的去除效果最好,K_(obs)为0.0104 min^(-1);而对于UV/H_(2)O_(2),强碱性条件下对NDMA的去除效果最佳,K_(obs)为0.0153 min^(-1)。对反应机理的分析表明,NDMA受到紫外光辐射或者是氧化性自由基(·OH或·SO_(4)^(-))进攻时,分子中的N—N键断裂,生成二甲胺和亚硝酸盐,二甲胺会被进一步降解生成甲胺且最终被降解生成甲酸盐;而亚硝酸盐最终被氧化为硝酸盐。 展开更多
关键词 亚硝基二甲胺 紫外高级氧化技术 影响因素 反应机理
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Nitrate reduction by·CO_(2)^(-) from UV-activated HCOOH 被引量:2
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作者 Xu Yiqiao Wu Lei Zheng Tianyi 《Journal of Southeast University(English Edition)》 EI CAS 2022年第1期77-84,共8页
To address the environmental and health hazards of nitrate(NO_(3)^(-))in water,a denitrification advanced reduction process(ARP)using only formic acid(HCOOH)activated by ultraviolet(UV)light was proposed.The efficienc... To address the environmental and health hazards of nitrate(NO_(3)^(-))in water,a denitrification advanced reduction process(ARP)using only formic acid(HCOOH)activated by ultraviolet(UV)light was proposed.The efficiency,influencing factors,mechanism,and kinetics of the reduction were investigated through component analysis and radical detection.Results show that,after 90 min of UV illumination,the reduction and gas conversion ratios of 50 mg/L NO_(3)^(-)-N reach 99.9%and 99.8%,respectively,under 9 mM of C_(0)(HCOOH),pH=3.0,and N_(2) aeration.Meanwhile,96.7%of HCOOH is consumed and converted into gas.The NO_(3)^(-)-N conversion process includes the transformation to NO_(2)^(-)-N,followed by a further reduction to gas and a direct conversion into gas,introducing small amounts of nitrite and ammonia.The carbon dioxide anion radical(·CO_(2)^(-))from HCOOH/HCOO^(-)is the principal cause of NO_(3)^(-)-N reduction by UV/HCOOH/N 2 ARP.In contrast,·CO_(2)^(-)production is caused by the hydroxyl radical(·OH).The NO_(3)^(-)-N reduction efficiency is enhanced by the increase in the light intensity,considerably affected by the initial pH,and less affected by inorganic anions,including Cl^(-),H_(2)PO_(4)^(-),and HCO_(3)^(-)/CO_(3)^(2-).The initial HCOOH concentration and light intensity are the main factors that influence the NO_(3)^(-)-N reduction rate. 展开更多
关键词 nitrate reduction advanced reduction process ULTRAVIOLET HCOOH ·CO-2
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