Affiliation:
1. Fujian Provincial Key Laboratory of Water Cycling and Eco-Geological Processes, Key Laboratory of Groundwater Science and Engineering of Nature Resources, Institute of Hydrogeology and Environmental Geology, Chinese Academy of Geological Sciences (CAGS), Zhengding 050803, China
Abstract
Many non-traditional isotopes, such as chlorine, magnesium, calcium, etc., are widely used as groundwater tracers. A new sample processing protocol of purification and concentration for isotopic analysis is presented to overcome many of the major drawbacks of existing methods. Contemporary sample preparation often requires several laborious off-line procedures in a ultra clean laboratory prior to instrumental determination; additionally, interference ions in real samples are difficult to completely remove, especially when the concentration of those ions is equal to that of the target ions. The new protocol includes the following steps: (i) one-step purification using a newly developed isotopic preparative chromatograph (IPC) with a background suppressed mode to obtain extremely pure components that only have target ions and H2O; (ii) enrichment of the collected pure solution from the previous step using a newly developed ultra clean concentrator filled with high purity nitrogen; (iii) transforming the enriched target ion into suitable speciation inside the ultra clean concentrator; (iv) finally, sending the enriched solutions to a multi-collector inductively coupled-plasma mass-spectrometer (MC-ICP-MS) or thermal ionization mass spectrometer (TIMS). The present method was validated using certified reference materials and real samples for both chlorine and magnesium; the precision of chlorine ratio value was generally below 0.22‰ and that of Mg was below 0.12‰. This processing protocol provides a potential method for isotope sample preparation and analysis in a small number of geological samples with low concentrations of many other elements or compounds such as nitrate, sulfate, lithium, calcium, strontium, etc.
Funder
Hebei Foundation of Science and Technology Development guided by Central Government
National Natural Science Foundation of China
Administration Bureau of Middle Route Project of China
Subject
Filtration and Separation,Analytical Chemistry
Reference26 articles.
1. One-step chromatographic purification of K, Ca, and Sr from geological samples for high precision stable and radiogenic isotope analysis by MC-ICP-MS;Li;J. Anal. At. Spectrom.,2021
2. Multicollector Inductively Coupled Plasma–Mass Spectrometry with 1013 Ω Faraday Cup Amplifiers for Ultrasensitive Mg Isotopic Analysis of Cerebrospinal Fluid Microsamples;Grigoryan;Anal. Chem.,2020
3. Magnesium isotopic composition of submarine vent fluids from arc and back-arc hydrothermal systems in the western Pacific;Eom;Chem. Geol.,2020
4. Quantifying groundwater recharge and discharge for the middle reach of Heihe River of China using isotope mass balance method;Zhang;J. Groundw. Sci. Eng.,2021
5. Indication of hydrogen and oxygen stable isotopes on the characteristics and circulation patterns of medium-low temperature geothermal resources in the Guanzhong Basin, China;Feng;J. Groundw. Sci. Eng.,2022