A rapid and simple co-precipitation method for iodine separation from natural samples was developed for determination of I-129 using accelerator mass spectrometry (AMS). The method includes three steps, i.e. decomposition of organic iodine, iodine separation and target preparation using co-precipitation, and sensitive measurement of I-129/I-127 ratio using AMS. The recovery of iodine was higher than 90% for most natural water samples in the decomposition step using K2S2O8. Iodine in the digested sample was then co-precipitated as AgI-AgCl-Ag2SO3-Ag2SO4 with a typical recovery of 95-98%. It was observed that addition of 0.2 mg I-127 carrier can significantly improve the measurement uncertainty of low-level 129I samples by enhancing iodine io...
A rapid and simple method was developed for speciation analysis of 129I in seawater by selective cop...
Accelerator mass spectrometry (AMS) is the most sensitive method for measuring I-129 in environmenta...
I-129 has been successfully applied as tracer in environmental, geological, and oceanographic resear...
A rapid and simple co-precipitation method for iodine separation from natural samples was developed ...
A rapid method using rotary evaporation combined with accelerator mass spectrometry (AMS) measuremen...
A rapid and simple method was developed for speciation analysis of I-129 in seawater by selective co...
Iodine-129 is a naturally generated isotope, but anthropogenic releases are the dominated source of ...
Iodine-129 (half-life:15.7 Ma) has been released into the environment by nuclear weapons testing and...
An improved solvent extraction procedure for iodine separation from brine samples has been applied a...
During recent decades, huge amount of radioactive waste has been dumped into the earth's surface env...
The newly established 3 MV Accelerator Mass Spectrometry (AMS) facility in Xi'an, with an instru...
During recent decades, huge amount of radioactive waste has been dumped into the earth's surfac...
An optimized pyrolysis method was presented for release of iodine from environmental solid samples w...
An optimized pyrolysis method was presented for release of iodine from environmental solid samples w...
An optimized pyrolysis method was presented for release of iodine from environmental solid samples w...
A rapid and simple method was developed for speciation analysis of 129I in seawater by selective cop...
Accelerator mass spectrometry (AMS) is the most sensitive method for measuring I-129 in environmenta...
I-129 has been successfully applied as tracer in environmental, geological, and oceanographic resear...
A rapid and simple co-precipitation method for iodine separation from natural samples was developed ...
A rapid method using rotary evaporation combined with accelerator mass spectrometry (AMS) measuremen...
A rapid and simple method was developed for speciation analysis of I-129 in seawater by selective co...
Iodine-129 is a naturally generated isotope, but anthropogenic releases are the dominated source of ...
Iodine-129 (half-life:15.7 Ma) has been released into the environment by nuclear weapons testing and...
An improved solvent extraction procedure for iodine separation from brine samples has been applied a...
During recent decades, huge amount of radioactive waste has been dumped into the earth's surface env...
The newly established 3 MV Accelerator Mass Spectrometry (AMS) facility in Xi'an, with an instru...
During recent decades, huge amount of radioactive waste has been dumped into the earth's surfac...
An optimized pyrolysis method was presented for release of iodine from environmental solid samples w...
An optimized pyrolysis method was presented for release of iodine from environmental solid samples w...
An optimized pyrolysis method was presented for release of iodine from environmental solid samples w...
A rapid and simple method was developed for speciation analysis of 129I in seawater by selective cop...
Accelerator mass spectrometry (AMS) is the most sensitive method for measuring I-129 in environmenta...
I-129 has been successfully applied as tracer in environmental, geological, and oceanographic resear...