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Understanding the process of microwave-assisted digestion combining diluted nitric acid and oxygen as auxiliary reagent

机译:了解稀硝酸和氧气作为辅助试剂的微波辅助消化过程

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摘要

Sample preparation has a long history when thinking about the conversion of solid samples to representative solutions using concentrated acid solutions and high temperature. However, chemical sciences are evolving to cleaner procedures and surely, sample preparation must follow these steps. The advent of microwave-assisted digestion led to new devices that have allowed the development of new procedures based on diluted solutions of nitric acid and more recently the use of oxygen as a reagent. No doubts oxygen has played a major role in most dry and wet digestion procedures for digestion of organic samples, but its role was improved by using it to regenerate nitric acid and consequently decreasing the volumes of acids needed to promote efficient digestions. These aspects were clearly demonstrated by comparing the efficiency of whole milk powder digestions under different pressures of oxygen, atmospheric air or inert argon atmosphere. The pressure profiles in these conditions were also evaluated and indicate the regeneration process. The efficiency of the digestion process using oxygen was demonstrated by measuring residual carbon contents and residual acidity in digests and it was shown that both parameters were fully compatible with requirements of modern instrumental analysis without any further extensive dilution of the digestates.
机译:考虑使用浓酸溶液和高温将固体样品转化为代表性溶液时,样品制备历史悠久。但是,化学科学正在向更清洁的程序发展,并且样品制备必须遵循这些步骤。微波辅助消化的出现导致了新的设备,这些设备允许开发基于硝酸稀溶液的新方法,最近还使用氧气作为试剂。毫无疑问,氧气在大多数干法和湿法消化过程中对有机样品的消化起着重要作用,但是通过使用其再生硝酸并因此减少了促进有效消化所需的酸量,氧气的作用得到了改善。通过比较全氧奶粉在不同氧气,大气或惰性氩气压力下的消化效率,可以清楚地说明这些方面。还评估了这些条件下的压力曲线,并指示了再生过程。通过测量消化液中残留的碳含量和残留酸度,可以证明使用氧气进行消化的效率,并且表明这两个参数完全符合现代仪器分析的要求,而无需进一步稀释消化液。

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