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优化水热处理以实现食物垃圾的可持续增值和脂肪酸回收。

Optimizing hydrothermal treatment for sustainable valorization and fatty acid recovery from food waste.

作者信息

Rasaq Waheed A, Thiruchenthooran Vaikunthavasan, Telega Paweł, Bobak Łukasz, Igwegbe Chinenye Adaobi, Białowiec Andrzej

机构信息

Department of Applied Bioeconomy, Wrocław University of Environmental and Life Sciences, 37a Chełmońskiego Str., 51-630 Wrocław, Poland.

Department of Food Chemistry and Biocatalysis, Wrocław University of Environmental and Life Sciences, Norwida 25, 50-375 Wrocław, Poland.

出版信息

J Environ Manage. 2024 Apr;357:120722. doi: 10.1016/j.jenvman.2024.120722. Epub 2024 Apr 3.

DOI:10.1016/j.jenvman.2024.120722
PMID:38569260
Abstract

This study employs response surface methodology and a central composite design (CCD) to optimize hydrothermal treatment (HTT) conditions for the valorization of food waste (FW). Lab-scale pressure reactor-based HTT processes are investigated to detect the effects of temperature (220-340 °C) and resident time (90-260 min) on elemental composition and fatty acid recovery in the hydrothermal liquid. Central to the study is the identification of temperature as the primary factor influencing food waste conversion during the HTT process, showcasing its impact on HTT product yields. The liquid fraction, rich in saturated fatty acids (SFA), demonstrates a temperature-dependent trend, with higher temperatures favoring SFA recovery. Specifically, HTT at 340 °C in 180 min exhibits the highest SFA percentages, reaching up to 52.5 wt%. The study establishes HTT as a promising avenue for nutrient recovery, with the liquid fraction yielding approximately 95% at optimized conditions. Furthermore, statistical analysis using response surface methodology predicts the optimal achievable yields for hydrochar and hydrothermal liquid at 6.15% and 93.85%, respectively, obtained at 320 °C for 200 min.

摘要

本研究采用响应面法和中心复合设计(CCD)来优化水热处理(HTT)条件,以实现食物垃圾(FW)的价值化。研究了基于实验室规模压力反应器的HTT工艺,以检测温度(220 - 340°C)和停留时间(90 - 260分钟)对水热液中元素组成和脂肪酸回收率的影响。该研究的核心是确定温度是HTT过程中影响食物垃圾转化的主要因素,并展示其对HTT产品产量的影响。富含饱和脂肪酸(SFA)的液相部分呈现出温度依赖性趋势,较高温度有利于SFA的回收。具体而言,在340°C下进行180分钟的HTT时,SFA百分比最高,可达52.5 wt%。该研究表明HTT是一种有前景的营养物质回收途径,在优化条件下液相部分的产率约为95%。此外,使用响应面法的统计分析预测,在320°C下处理200分钟时,水炭和水热液的最佳可实现产率分别为6.15%和93.85%。

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