4.6 Article

Spent Coffee Grounds' Valorization towards the Recovery of Caffeine and Chlorogenic Acid: A Response Surface Methodology Approach

期刊

SUSTAINABILITY
卷 13, 期 16, 页码 -

出版社

MDPI
DOI: 10.3390/su13168818

关键词

circular economy; bioactive compounds; accelerated solvent extraction; process optimization

资金

  1. Operational Programme Competitiveness, Entrepreneurship and Innovation (NSRF) [MIS 5002803]
  2. European Union (European Regional Development Fund)

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The study aimed to exploit the potential of spent coffee grounds as a source of bioactive compounds and developed a cost-effective and environmentally friendly extraction technique. The results showed that SCG extracts have high potential for high value-added applications.
The amount of spent coffee grounds (SCGs) created, represents an environmental challenge worldwide. In this context, the aim of the present study was to exploit the potential of SCGs as a source of bioactive compounds that can be utilized in high value-added products. Thus, a cost-effective and environmentally friendly extraction technique was developed to ensure extracts with high total phenolic content and antioxidant activity, as well as significant amounts of caffeine and chlorogenic acid. Response surface methodology was implemented to evaluate the effects of the main extraction parameters (i.e., time, temperature, and ethanol-to-water ratio) and their interactions on the defined responses. The ethanol ratio was found to be the most significant variable. Then, a set of optimum values was determined (i.e., 7 min, 75 degrees C, and ethanol:water ratio 5:95), where the predicted values for responses were found to be 5.65% for the yield (Y-1), 152.68 mg gallic acid equivalents per L for total phenolic content (Y-2), 0.797 mu mol Trolox equivalent per mL for the antioxidant activity (Y-3), 30.5 ppm for caffeine concentration (Y-4), and 17.4 ppm for chlorogenic acid concentration (Y-5). Furthermore, the corresponding high experimental values from the validation experiment fitted well to these predictions, clearly clarifying the high potential of SCG extracts for use in high value-added applications.

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