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- W4313640417 abstract "Anaerobic liquid dairy digestate is a by-product of dairy waste anaerobic digestion from dairy operations and is associated with environmental risks if not handled properly, particularly nutrient leaching losses, water contaminations, and greenhouse gas emissions. We tested the applications of anerobic digestate (AD) as a biofertilizer and water source in greenhouse vegetable production to integrate food production and industry waste management for sustainable environments. We used a deep water culture system to assess the effects of AD effluent alone, inorganic nutrient solution (NS), and a combination of AD and NS on the growth, yield, and phytonutrient profile and heavy metal contamination assessment of hydroponically produced lettuce. Lettuce produced in AD had a lower leaf area, total chlorophyll content, and fresh biomass; however, it displayed significantly higher chicoric acid (200%), chlorogenic acid (67%), luteolin (800%), quercetin-3-O-β-d-glucuronide (378%), quercetin-3-glucoside (200%), quercetin-3-O-(6″-O-malonyl)-β-D-glucoside (1077%), folate (248%), pantothenic acid (200%), total phenolics (111%), total antioxidants (44%), and soluble sugars (253%) compared to control (inorganic feed). The AD-produced lettuce also showed significantly lower heavy metal bioaccumulation risks associated with the human consumption. Based on various results, we may conclude that AD utilization in hydroponics can offer a sustainable solution to harvest a better lettuce yield, higher phytonutrients, and environmental benefits." @default.
- W4313640417 created "2023-01-07" @default.
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- W4313640417 date "2023-01-06" @default.
- W4313640417 modified "2023-09-27" @default.
- W4313640417 title "Agronomic Performance and Phytochemical Profile of Lettuce Grown in Anaerobic Dairy Digestate" @default.
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- W4313640417 cites W2002213951 @default.
- W4313640417 cites W2002237597 @default.
- W4313640417 cites W2006106575 @default.
- W4313640417 cites W2020642425 @default.
- W4313640417 cites W2034039638 @default.
- W4313640417 cites W2034570874 @default.
- W4313640417 cites W2035285902 @default.
- W4313640417 cites W2039915589 @default.
- W4313640417 cites W2044299065 @default.
- W4313640417 cites W2044347381 @default.
- W4313640417 cites W2046756341 @default.
- W4313640417 cites W2052387991 @default.
- W4313640417 cites W2053003541 @default.
- W4313640417 cites W2053379787 @default.
- W4313640417 cites W2061052519 @default.
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- W4313640417 cites W2142478118 @default.
- W4313640417 cites W2144036506 @default.
- W4313640417 cites W2144627187 @default.
- W4313640417 cites W2153761325 @default.
- W4313640417 cites W2165292984 @default.
- W4313640417 cites W2167282177 @default.
- W4313640417 cites W2331303452 @default.
- W4313640417 cites W2346708615 @default.
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- W4313640417 cites W2498204241 @default.
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- W4313640417 cites W2923805558 @default.
- W4313640417 cites W2929189055 @default.
- W4313640417 cites W2940256593 @default.
- W4313640417 cites W2951148050 @default.
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- W4313640417 doi "https://doi.org/10.3390/agronomy13010182" @default.
- W4313640417 hasPublicationYear "2023" @default.
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