Spent coffee grounds as an alternative fertilizer: impact on bioaccessibility of antioxidants and commercial quality of lettuce

IF 3.5 2区 农林科学 Q1 AGRICULTURE, MULTIDISCIPLINARY Journal of the Science of Food and Agriculture Pub Date : 2024-10-02 DOI:10.1002/jsfa.13936
Mariela Patrignani, Héctor Joaquín Hasperué, Ana Cervera-Mata, Silvia Pastoriza, José Ángel Rufián Henares
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Abstract

Background

During the processing of spent coffee grounds (SCGs) several residues are obtained, which are mostly disposed of in landfills. There is an urgent need for a comprehensive waste management strategy for these residues. This study evaluates the potential of SCGs as a biofertilizer by assessing their effects on lettuce leaves and the release of antioxidants following in vitro digestion and fermentation.

Results

Lettuce plants were grown with different amounts of SCGs (0–150 g kg−1) in the substrate. High SCG concentrations in the soil generated lighter colored tissues, a decrease in the green color, less root development, and lower dry weight of leaves (P < 0.05). The SCG levels also affected the release of antioxidants by the final product. This effect was more pronounced in the digested fraction: applying the Ferric Reducing Antioxidant Power (FRAP) method, the addition of SCGs from 10 g kg−1 to 125 g kg−1 increased the amount of antioxidant from 43.88 ± 4.81 to 105.96 ± 29.09 μmol Trolox g−1 of dry weight (P < 0.05). The Indigo Carmine Reducing Capacity (ICRED) method also showed a similar trend, but in this case the highest value was obtained with 150 g kg−1 of SCGs (16.41 ± 3.93 mmol catechin g−1 of dry weight) (P < 0.05). Moreover, in the fermented fraction a significant increase in the antioxidant released was found with low levels of SCG(P<0.05), while lettuces fertilized with intermediate amounts of SCGs (25 and 50 g kg−1) presented the highest amount of insoluble antioxidant (P < 0.05).

Conclusion

A compromise should be found in order to achieve a product with a high antioxidant capacity and an acceptable visual quality. © 2024 Society of Chemical Industry.

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废弃咖啡渣作为替代肥料:对抗氧化剂的生物可及性和生菜的商业品质的影响。
背景:在加工废咖啡渣(SCG)的过程中会产生一些残留物,这些残留物大多被丢弃在垃圾填埋场。目前迫切需要针对这些残渣制定全面的废物管理策略。本研究通过评估咖啡渣对莴苣叶片的影响以及体外消化和发酵后抗氧化剂的释放情况,评估了咖啡渣作为生物肥料的潜力:结果:在基质中添加不同数量的 SCG(0-150 克/千克)的情况下种植生菜。土壤中 SCG 浓度高时,组织颜色变浅,绿色减少,根系发育不良,叶片干重降低(P-1 至 125 g kg-1 的抗氧化剂量从 43.88 ± 4.81 增加到 105.96 ± 29.00)。09 μmol Trolox g-1 干重(P RED)法也显示出类似的趋势,但在这种情况下,150 g kg-1 的 SCGs(16.41 ± 3.93 mmol儿茶素 g-1 干重)(P-1)获得的数值最高,显示出最高的不溶性抗氧化剂量(P 结论):应找到一个折中方案,以获得抗氧化能力高且视觉质量可接受的产品。© 2024 化学工业协会。
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来源期刊
CiteScore
8.10
自引率
4.90%
发文量
634
审稿时长
3.1 months
期刊介绍: The Journal of the Science of Food and Agriculture publishes peer-reviewed original research, reviews, mini-reviews, perspectives and spotlights in these areas, with particular emphasis on interdisciplinary studies at the agriculture/ food interface. Published for SCI by John Wiley & Sons Ltd. SCI (Society of Chemical Industry) is a unique international forum where science meets business on independent, impartial ground. Anyone can join and current Members include consumers, business people, environmentalists, industrialists, farmers, and researchers. The Society offers a chance to share information between sectors as diverse as food and agriculture, pharmaceuticals, biotechnology, materials, chemicals, environmental science and safety. As well as organising educational events, SCI awards a number of prestigious honours and scholarships each year, publishes peer-reviewed journals, and provides Members with news from their sectors in the respected magazine, Chemistry & Industry . Originally established in London in 1881 and in New York in 1894, SCI is a registered charity with Members in over 70 countries.
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