The University of Tokyo · 지구·행성과학
타카후미 히라타 교수의 연구실은 주로 고정밀 동위원소 분석 기법 개발을 핵심으로 하며, 특히 MC-ICP-MS와 레이저 유도 분석(LA-MC-ICP-MS)을 활용한 고정밀 동위원소 비율 측정 기술에 중점을 두고 있습니다. 연체질료, 지질 및 금속 표준물질을 대상으로 한 동위원소 분수화 보정, 잡음 저감 기술, 그리고 레이저 유도 과정에서의 신호 안정화 기법 개발을 통해 정밀 연대 측정과 원소 분석의 정확도를 향상시키는 데 기여하고 있습니다. 특히 204Pb 측정 정밀도 향상을 위한 Hg 제거 장치 개발 등 실용적이고 응용 가능한 분석 기술의 개선에도 주력하고 있습니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
A correction method for the mass discrimination effect was developed for isotopic analyses using multiple collector inductively coupled plasma mass spectrometry (MC-ICP-MS). For Pb isotopic analysis using MC-ICP-MS, the correction factor for the mass discrimination effect on Pb is based on the addition of TI to the sample solution and measurement of TI isotopic ratios; the correction factor obtained using Tl is directly applied to the Pb isotopes (conventional external correction). However, the
65Cu/63Cu and 56Fe/54Fe isotopic ratios for two metal reference materials (NIST SRM 976 and NIST SRM 665) have been measured by a laser ablation-multiple collector-inductively coupled plasma mass spectrometer (LA-MC-ICPMS). A time resolved analysis (TRA) data acquisition technique was used to monitor the time profile in 65Cu/63Cu and 56Fe/54Fe isotopic ratios. An ArF excimer laser (193 nm) which produces pit sizes of 16–63 µm was used to ablate Cu and Fe from metal samples. Measured 65Cu/63Cu ra
Precise 238U–206Pb ages for three Phanerozoic zircons (<600 Ma) have been measured using a laser ablation-ICPMS technique. In order to obtain reliable age data from young zircons, precise measurement of 204Pb intensity is highly important. To achieve this, a newly developed Hg-trap device using an activated charcoal filter was applied to the Ar make-up gas before mixing with He carrier gas, and the resulting isobaric interference on 204Pb by the 204Hg signal was significantly reduced. The level
A laser ablation technique has been developed for elemental and isotopic ratio analyses of solid materials using inductively coupled plasma mass spectrometry. Using a soft ablation technique developed in this study, reproducibility of the signal intensity and precision of the elemental and isotopic ratio measurement were successfully improved. The technique involves beginning the ablation at low laser power (lower than 1 mJ) and gradually increasing power to achieve a constant and stable signal.