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EVALUATON OF MICROWAVE PLASMA TORCH FOR ATOMIC FLUORESCENCE SPECTROMETRY WITH AN ULTRASONIC NEBULIZATION SAMPLE INTRODUCTION SYSTEM
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作者 Yi Mu LI Yi Xiang DUAN +1 位作者 Jun LIU Qin Han JIN Department of Chemistry, Jilin University, Changchun, 130O23 《Chinese Chemical Letters》 SCIE CAS CSCD 1993年第7期615-618,共4页
In this paper, a new MPT(microwave plasma torch) device has been used as a atomizer for atomic fluorescence spectrometry. Spme elements, such as Zn, Cd, Hg, Pb, As, Co, Mg, Cu, Ag, Mn, Fe have been investigated in det... In this paper, a new MPT(microwave plasma torch) device has been used as a atomizer for atomic fluorescence spectrometry. Spme elements, such as Zn, Cd, Hg, Pb, As, Co, Mg, Cu, Ag, Mn, Fe have been investigated in detail. 展开更多
关键词 TORCH EVALUATON OF MICROWAVE PLASMA TORCH FOR atomic fluorescence spectrometry WITH AN ULTRASONIC NEBULIZATION SAMPLE INTRODUCTION SYSTEM Cd USN LONG HCL MPT
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Evaluation of Atomic Fluorescence Spectrometry for Determination of Mercury Using a Low-Powered Argon Microwave Plasma Torch (MPT)
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作者 Duan Yixiang, Kong Xiangxing, Zhang Hanqi, Liu Jun Jin Qinhan (Department of Chemistry, Jilin University, Changchun) 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 1991年第1期59-61,共3页
The Microwave-Induced Plasma (MIP) has received considerable attention during the past decade since theintroduction of the Becnakker Cavity. It has been commonly used as an atomization cell for atomic emission spectro... The Microwave-Induced Plasma (MIP) has received considerable attention during the past decade since theintroduction of the Becnakker Cavity. It has been commonly used as an atomization cell for atomic emission spectrometry (AES) and atomic absorption spectrometry (AAS), and a great success was achieved for both techniques. More 展开更多
关键词 atomic fluorescence spectrometry Argon microwave torch Determination of mercury
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Investigation and Analysis of Soil Pollution of Heavy Metals(Hg,As) in Duanzhou District,Zhaoqing City 被引量:1
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作者 Jianqiao Qin Ping Kong +3 位作者 Yuanyuan Xu Dexin Xiong Dongni Yu Shaoli Wu 《Plant Diseases and Pests》 CAS 2021年第5期20-26,共7页
The soil heavy metals(Hg and As)in Duanzhou District of Zhaoqing City were determined by AFS200 T atomic fluorescence spectropho-tometer,and the soil environment in Duanzhou District was evaluated by several evaluatio... The soil heavy metals(Hg and As)in Duanzhou District of Zhaoqing City were determined by AFS200 T atomic fluorescence spectropho-tometer,and the soil environment in Duanzhou District was evaluated by several evaluation methods of soil heavy metal pollution,such as single factor index method,pollution load index method and Nemerow comprehensive pollution index method.Finally,according to the data and conclu-sions,the soil pollution situation in Duanzhou District of Zhaoqing was analyzed.The results will let more people pay attention to the changes of the environment and realize the harm of the environment,and the government can formulate a new plan conducive to the coordinated development of the environment and economy. 展开更多
关键词 Soil heavy metals(Hg As) atomic fluorescence spectrometry Evaluation of soil heavy metal pollution
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Selenium speciation in flue desulfurization residues 被引量:4
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作者 Liping Zhong Yan Cao +2 位作者 Wenying Li Kechang Xie Wei-Ping Pan 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2011年第1期171-176,共6页
Flue gas from coal combustion contains significant amounts of volatile selenium (Se). The capture of Se in the flue gas desulfurization (FGD) scrubber unit has resulted in a generation of metal-laden residues. It ... Flue gas from coal combustion contains significant amounts of volatile selenium (Se). The capture of Se in the flue gas desulfurization (FGD) scrubber unit has resulted in a generation of metal-laden residues. It is important to determine Se speciation to understand the environmental impact of its disposal. A simple method has been developed for selective inorganic Se(IV), Se(VI) and organic Se determination in the liquid-phase FGD residues by hydride generation atomic fluorescence spectrometry (AFS). It has been determined that Se(IV), Se(VI) and organic Se can be accurately determined with detection limits (DL) of 0.05, 0.06 and 0.06 μg/L, respectively. The accuracy of the proposed method was evaluated by analyzing the certified reference material, NIST CRM 1632c, and also by analyzing spiked tap-water samples. Analysis indicates that the concentration of Se is high in FGD liquid residues and primarily exists in a reduced state as selenite (Se(IV)). The toxicity of Se(IV) is the strongest of all Se species. Flue gas desulfurization residues pose a serious environmental risk. 展开更多
关键词 SELENIUM SPECIATION flue gas desulfurization hydride generation atomic fluorescence spectrometry
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