Characterization and nutritional value of hydrothermal liquid products from distillers grains

Hydrothermal liquid products (HLPs) produced by hydrothermal treatment (HTT) contain a large amount of nitrogen, phosphorus and other substances, while the environmental problems caused by arbitrary discharge. This work explored the effects of temperature, reaction time and solid-liquid ratio on the...

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Veröffentlicht in:Journal of environmental management 2022-08, Vol.316, p.115275-115275, Article 115275
Hauptverfasser: Xu, Qingya, Liu, Taoze, Liu, Bangyu, Cheng, Hongguang, Yang, Cheng, Wang, Bing, Zimmerman, Andrew R., Gao, Bin
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Sprache:eng
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Zusammenfassung:Hydrothermal liquid products (HLPs) produced by hydrothermal treatment (HTT) contain a large amount of nitrogen, phosphorus and other substances, while the environmental problems caused by arbitrary discharge. This work explored the effects of temperature, reaction time and solid-liquid ratio on the chemistry of HLPs of two different distillers grains, with a focus on nutrient composition. Increased HTT temperature was related to increased HLPs pH, dissolved organic carbon content, and aromaticity, and decreased electrical conductivity. Maximum nutrient extraction efficiencies observed for NH4+-N, NO3−-N and PO43− were 92.0, 89.9, and 94.3%, respectively. Response surface methodology showed that the release of nutrient extraction efficiency was the greatest at the hydrothermal treatment of 200 °C for 1 h, and using a solid/liquid ratio of 10%. Comparative studies, the nutritional value of HLPs are appropriate for use as an agricultural fertilizer, and its use as a substitute for synthetic fertilizers could increase the sustainability and profitability of farming. [Display omitted] •Nutritional value of HLPs was discussed.•Different reaction conditions on the nutrients of HLPs was investigated.•Identify the optimal HLPs nutrients recovery conditions based on RSM.•HLPs are nutrient-rich and can serve as nutrient solution to plant growth.
ISSN:0301-4797
1095-8630
DOI:10.1016/j.jenvman.2022.115275