Effect of Water Hardness on Catechin and Caffeine Content in Green Tea Infusions

Влияние жёсткости воды на содержание катехинов и кофеина в настоях зелёного чая
Mica Cabrera, Faizah Taher, Alendre Llantada, Quyen Do, Tyeshia Sapp, Monika Sommerhalter
2021-06-08

HPLC analysiscatechin autoxidationepigallocatechin gallate (EGCG)green tea infusionswater hardness
The health benefits of green tea are associated with its high catechin content. In scientific studies, green tea is often prepared with deionized water. However, casual consumers will simply use their local tap water, which differs in alkalinity and mineral content depending on the region. To assess the effect of water hardness on catechin and caffeine content, green tea infusions were prepared with synthetic freshwater in five different hardness levels, a sodium bicarbonate solution, a mineral salt solution, and deionized water. HPLC analysis was performed with a superficially porous pentafluorophenyl column. As water hardness increased, total catechin yield decreased. This was mostly due to the autoxidation of epigallocatechin (EGC) and epigallocatechin gallate (EGCG). Epicatechin (EC), epicatechin gallate (ECG), and caffeine showed greater chemical stability. Autoxidation was promoted by alkaline conditions and resulted in the browning of the green tea infusions. High levels of alkaline sodium bicarbonate found in hard water can render some tap waters unsuitable for green tea preparation.
1
Alkaline conditions promoted catechin autoxidation and caused browning of the green tea infusions.
2
Epicatechin (EC), epicatechin gallate (ECG), and caffeine exhibited greater chemical stability as water hardness increased.
3
High concentrations of alkaline sodium bicarbonate in some hard tap waters may make them unsuitable for preparing green tea.
4
Increasing water hardness decreased the total catechin yield in green tea infusions.
5
The reduction was primarily caused by autoxidation of epigallocatechin (EGC) and epigallocatechin gallate (EGCG).

green tea infusions prepared with water of different hardness and mineral/alkaline compositions

the effects of water hardness and alkalinity on catechin and caffeine content, catechin stability, autoxidation, and browning

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2021-06-08
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Mica Cabrera
Faizah Taher
Alendre Llantada
Quyen Do
Tyeshia Sapp
Monika Sommerhalter
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