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多种环境示踪剂在识别地下水硝酸盐来源方面的应用 被引量:3
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作者 马宝强 王潇 汤超 《环境科技》 2021年第6期37-40,44,共5页
地下水硝酸盐污染是世界各地区普遍存在的环境问题。为防控地下水硝酸盐污染,准确识别污染源和从源头控制污染排放是其防控的重要措施。在介绍硝酸盐氮、氧双同位素法(^(15)N,^(18)O)的同时,系统梳理了其它3种环境示踪剂(^(11)B^(3)H,Cl... 地下水硝酸盐污染是世界各地区普遍存在的环境问题。为防控地下水硝酸盐污染,准确识别污染源和从源头控制污染排放是其防控的重要措施。在介绍硝酸盐氮、氧双同位素法(^(15)N,^(18)O)的同时,系统梳理了其它3种环境示踪剂(^(11)B^(3)H,Cl^(-))在识别地下水硝酸盐来源方面的应用。相比单一环境示踪剂而言,多种不同环境示踪剂(^(15)N,^(18)O,^(11)B,^(3)H,Cl^(-))的联合使用能够使地下水硝酸盐污染溯源准确性大幅提升,可更准确地为地下水污染防治和环境保护提供依据。 展开更多
关键词 地下水污染 硝酸盐氮、氧同位素 同位素 同位素 氯离子
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Impact of an accidental explosion in Tianjin Port on enhanced atmospheric nitrogen deposition over the Bohai Sea inferred from aerosol nitrate dual isotopes
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作者 ZONG Zheng SUN Zeyu +3 位作者 TAN Yang TIAN Chongguo QU Lin JI Ling 《Atmospheric and Oceanic Science Letters》 CSCD 2020年第3期195-201,共7页
In recent years,emergent pollutant’s accidents have occurred frequently in China,causing serious harm to the ecological environment.In this study,the impact of an accidental fire and explosion at Tianjin Port in 2015... In recent years,emergent pollutant’s accidents have occurred frequently in China,causing serious harm to the ecological environment.In this study,the impact of an accidental fire and explosion at Tianjin Port in 2015 on the atmosphere over the Bohai Sea was explored.Results showed sharp increases in the concentrations of several important components of fine particulate matter(e.g.NO3−,SO42−,NH4+,organic carbon,elemental carbon)over Beihuangcheng Island after the explosion.Among them,NO3−was most affected(about 10 days),with a maximum concentration of 16.45μg m−3.Theδ15N-NO3−ranged from−1.58‰to+8.74‰,with an average of+2.79‰±3.32‰.Influenced by the explosion,δ15N-NO3−decreased significantly,which was in accordance with the industrial processes of explosives.Theδ18O-NO3−varied between+49.40‰and+69.52‰,and showed a marked increase(+66.62‰±3.92‰)in the explosion-affected period.Using Monte Carlo simulation,the•OH pathway for NO3−formation was 51.79%±10.94%at that time—much lower than in the regular period.The elevated dry deposition of NO3−caused by the explosion was 266.08μmol N m−2 d−1 over the Bohai Sea—again,much higher than in the regular period.With the dry nitrogen deposition of NH4+(42.41μmol N m−2 d−1),the total nitrogen deposition increased by 308.49μmol N m−2 d−1,leading to severe ecological risk.Through the inverse computation of the dry deposition flux of NO3−,the affected area over the Bohai Sea was less than 1.42×104 km2,which is about 20%of the total area. 展开更多
关键词 NITRATE nitrogen/oxygen isotope explosion Bohai Sea
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