<p>Coffee processing generates substantial waste, with about 94% of the cherry discarded as by-products (<i>skin</i> and <i>pulp</i> ≈ 43%, mucilage ≈ 12%, parchment ≈ 6%, <i>silverskin</i> ≈2%, and <i>spent coffee grounds</i> ≈ 31%). This study presents the first comprehensive biochemical and microbiological analysis of Arabica coffee side-streams to evaluate their potential as sustainable food ingredients. Nutritional composition of the side-streams showed high crude fiber (44–62&#xa0;g/100&#xa0;g), crude protein (5 –16&#xa0;g/100&#xa0;g), and carbohydrates (17–39&#xa0;g/100&#xa0;g), supporting their use in fortified and nutritionally enhanced plant-based foods and ingredients. Using microwave-assisted extraction, the following bioactive compounds were quantified: total phenolics (5–20&#xa0;mg GAE/g), total flavonoids (2–17&#xa0;mg QE/g), tannins (6–72&#xa0;mg TAE/g), and caffeine (6–15&#xa0;mg/g). The DPPH assay showed antioxidant capacity with an IC<sub>50</sub> range of 1–5&#xa0;mg/mL, where lower values denote stronger activity. Heavy metals were measured within safety limits, especially for cadmium and lead. Microbial analyses revealed total plate counts (2 × 10<sup>4</sup>–3 × 10<sup>5</sup>&#xa0;cfu/g) and yeasts/moulds (2 × 10<sup>4</sup>–2 × 10<sup>5</sup>&#xa0;cfu/g), with relatively low Gram-negative bacteria (2 × 10<sup>1</sup>–3 × 10<sup>3</sup>&#xa0;cfu/g). These loads are substantially lower than those in the pulping water (TPA: 2 × 10<sup>6</sup>&#xa0;cfu/mL; Gram-negative: 5 × 10<sup>4</sup>&#xa0;cfu/mL; yeasts/moulds: 2 × 10<sup>5</sup>&#xa0;cfu/mL), underscoring the need for strict water quality control during wet processing and supporting high-temperature treatment (160–230&#xa0;°C) to mitigate potential endotoxins. Overall, coffee side-streams are voluminous and should be valorized in a future circular bioeconomy.</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Biochemical and microbiological characterization of Coffea arabica sidestreams for food ingredient applications

  • Gaston Odiwuor Adoyo,
  • Willis O. Owino,
  • Elizabeth Nakhungu Wafula,
  • Søren Balling Engelsen,
  • George Ooko Abong,
  • Winnie A. Nyonje

摘要

Coffee processing generates substantial waste, with about 94% of the cherry discarded as by-products (skin and pulp ≈ 43%, mucilage ≈ 12%, parchment ≈ 6%, silverskin ≈2%, and spent coffee grounds ≈ 31%). This study presents the first comprehensive biochemical and microbiological analysis of Arabica coffee side-streams to evaluate their potential as sustainable food ingredients. Nutritional composition of the side-streams showed high crude fiber (44–62 g/100 g), crude protein (5 –16 g/100 g), and carbohydrates (17–39 g/100 g), supporting their use in fortified and nutritionally enhanced plant-based foods and ingredients. Using microwave-assisted extraction, the following bioactive compounds were quantified: total phenolics (5–20 mg GAE/g), total flavonoids (2–17 mg QE/g), tannins (6–72 mg TAE/g), and caffeine (6–15 mg/g). The DPPH assay showed antioxidant capacity with an IC50 range of 1–5 mg/mL, where lower values denote stronger activity. Heavy metals were measured within safety limits, especially for cadmium and lead. Microbial analyses revealed total plate counts (2 × 104–3 × 105 cfu/g) and yeasts/moulds (2 × 104–2 × 105 cfu/g), with relatively low Gram-negative bacteria (2 × 101–3 × 103 cfu/g). These loads are substantially lower than those in the pulping water (TPA: 2 × 106 cfu/mL; Gram-negative: 5 × 104 cfu/mL; yeasts/moulds: 2 × 105 cfu/mL), underscoring the need for strict water quality control during wet processing and supporting high-temperature treatment (160–230 °C) to mitigate potential endotoxins. Overall, coffee side-streams are voluminous and should be valorized in a future circular bioeconomy.