Sample pretreatment for ICP and ICP/MS using the automatic pretreatment device DEENA2 with acid addition, etc.!
The acid decomposition of impurities in titanium involves complicated reagent addition operations and is very labor-intensive. Additionally, there are issues related to human exposure to acidic reagents such as mixed acids and nitric acid, making the analysis hazardous. Therefore, using the automated pretreatment device DEENA2 for acid addition and other processes, we automated the sample pretreatment for ICP and ICP/MS. 【Summary (Partial)】 ■ Established a method for fully automated analysis, from the automatic addition of mixed acids and nitric acid to stirring and dilution. ■ Controlled the reaction during the automatic addition of mixed acids and nitric acid to safely conduct the analysis. ■ Achieved nearly zero exposure of mixed acids and nitric acid to humans. ■ Completely automated pretreatment tasks that previously required human intervention. ■ Conducted decomposition within a clean bench by using a fume hood. *For more details, please download the PDF or feel free to contact us.
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【Other Overview】 - By using dedicated vials, analysis with ultra-low blanks has become possible. - By automating tasks that previously required human intervention, significant improvements in work efficiency have been achieved. - Automation has led to a substantial reduction in human errors. *For more details, please download the PDF or feel free to contact us.*
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For more details, please download the PDF or feel free to contact us.
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The auto-analyzer developed by the former Technicon Corporation, a global pioneer in continuous flow analysis devices, is still widely used in analytical laboratories around the world today. In Japan, it continues to operate as an essential device in national and public research institutes, testing laboratories, and corporate factories and testing facilities. Our company, BL Tech Co., Ltd., has inherited approximately 40 years of auto-analyzer business in Japan and is focusing on the development and manufacturing of optimal continuous flow analysis devices to meet the current hot demand.