Technological and quality effects of partial sodium replacement with potassium and calcium chlorides in traditionally fermented green Nabali Baladi table olives (Olea europaea L.)
This study evaluated the viability and quality effects of partially replacing sodium chloride with potassium and calcium
chlorides in traditionally fermented green Nabali Baladi table olives (Olea europaea L.). Five mineral salt formulations
of olives were fermented for 180 days and observed. To assess potential effects of salt substitution on fermentation and
fermentation quality, water activity, pH evolution, texture, bioactive compounds, mineral composition, and sensory
characteristics were compared. Reformulated brines had slightly higher water activity values (0.947?0.958) than that
of the NaCl control (0.942), but fermentation in each treatment was normal and steady in all treatments, and this was
indicated by increasing acidification indicating stable fermentation. Texture markedly decreased during fermentation, and
the puncture strength decreased from around 16.7 N to 9.1?11.5 N, and CaCl2-containing brines had a higher firmness at
later stages (higher than conventional brine). The bioactive compounds decreased with progression; compound-dependent
reduction (?15?70%) was observed, but a mixed salt type formulation resulted in enhanced phenolic retention in later
stages of treatment. Mineral content analysis showed a substantial decrease in sodium content (1320 to 122 mg/100 g) and
significant increases in potassium (up to 604 mg/100 g) and calcium (up to 475 mg/100 g), showing that there is effective
ion exchange between olives and brines. Through sensory evaluations, a stronger bitterness was observed in the solutions
containing KCl and enhanced texture in CaCl2 formulations; however, mixed-salt formulations showed the most balanced
sensory characteristics. In general, the integrated NaCl/KCl/CaCl2 brines represent a strong solution towards sodium reduction
coupled with the preservation of fermentation performance, nutritional quality, and sensory acceptability.