首页> 外文期刊>Journal of Agricultural and Food Chemistry >Elemental characterization of commercial mate tea leaves (Ilex paraguariensis A. St.-Hil.) before and after hot water infusion using ion beam techniques
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Elemental characterization of commercial mate tea leaves (Ilex paraguariensis A. St.-Hil.) before and after hot water infusion using ion beam techniques

机译:使用离子束技术在热水注入之前和之后的商业伴侣茶叶(Ilex paraguariensis A. St.-Hil。)的元素表征

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Ilex paraguariensis A. St.-Hil. is used to prepare a traditional tealike beverage widely appreciated in Argentina, Paraguay, Uruguay, and southern Brazil. In these countries, the tea is popularly known as mate or chimarrao. The aim of this work is to characterize the elemental composition of commercial Ilex paraguariensis and determine the portion of each element present in the leaves that is eluted in the water during the infusion process and consequently ingested by the drinker. Using the particle-induced X-ray emission technique, we verified the presence of Mg, Al, Si, P, S, Cl, K, Ca, Ti, Mn, Fe, Cu, Zn, and Rb at different concentrations, which accounts for about 3.4% of the total mass. The results show a loss of about 90% of K and Cl, 50% of Mg and P, and 20% of Mn, Fe, Cu, Zn, and Rb by the leaves after the infusion. The volume of water used in the infusion affects only the concentration of elements such as Cl, P, K, and Mg until the first 600 mL of water, where a steep decrease in the concentration of these elements was observed in brewed leaves. Furthermore, higher water temperatures (typical temperatures used in infusions, between 80 and 100 degrees C) favor the extraction of K and Cl into the infusion, while the concentration of other elements remains practically constant as a function of temperature.
机译:巴拉圭冬青树用于制备传统的茶状饮料,在阿根廷,巴拉圭,乌拉圭和巴西南部广受赞誉。在这些国家/地区,茶通常被称为伴侣或chimarrao。这项工作的目的是表征商业化巴拉圭冬青的元素组成,并确定叶中存在的每种元素在输注过程中被洗脱并因此被饮用者摄入的部分。使用粒子诱导X射线发射技术,我们验证了不同浓度下Mg,Al,Si,P,S,Cl,K,Ca,Ti,Mn,Fe,Cu,Zn和Rb的存在,这说明了约占总质量的3.4%。结果表明,输注后叶片损失了约90%的K和Cl,50%的Mg和P以及20%的Mn,Fe,Cu,Zn和Rb。注入的水量仅影响诸如Cl,P,K和Mg等元素的浓度,直到最初的600 mL水为止,在酿造的叶子中观察到这些元素的浓度急剧下降。此外,较高的水温(用于注入的典型温度在80到100摄氏度之间)有利于将K和Cl提取到注入物中,而其他元素的浓度实际上随温度保持恒定。

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