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首页> 外文期刊>Transactions of the ASABE >Integrated Extraction and Anaerobic Digestion Process for Recovery of Nutraceuticals and Biogas from Pomegranate Marc
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Integrated Extraction and Anaerobic Digestion Process for Recovery of Nutraceuticals and Biogas from Pomegranate Marc

机译:综合提取和厌氧消化工艺从石榴渣中回收营养食品和沼气

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摘要

Pomegranate marc (PM), a by-product of pomegranate juice processing, has not been effectively utilized. The objectives of this study were: (1) to determine the yields and properties of antioxidants (henceforth referring to total phenolics in terms of tannic acid equivalent) and oil extracted from various dry and wet constituents of PM, including peel, seeds, and mixture; and (2) to evaluate the anaerobic digestibility and biogas production potential of PM before and after antioxidant extraction (AE) and oil extraction (OE). Water and petroleum ether were used as solvents in the extraction of antioxidants and oil, respectively. The anaerobic digestion tests were conducted at 35°C ± 2°C with a feedstock to microorganism ratio of 0.5 on volatile solid (VS) basis under two initial organic loadings of 3.0 and 5.0 g VS L -1 . According to the results, both dry and wet PM extracts had similar extraction efficiency and functionality. The wet PM extract had an antioxidant content of 23.0%, which corresponded to an antioxidant yield of 106 kg per ton of PM peel on dry basis (d.b.). The DPPH scavenging activities of antioxidants were 6.5 to 6.6 g g -1 (d.b.). The oil yield from the dry PM seeds was 138 kg ton -1 (d.b.). Compared to the low initial organic loading, the high initial organic loading improved methane content (55.1% to 67.5%) but not biogas yield. The extracted residuals of peel, seeds, and mixture had methane yields of 148, 183, and 161 mL g -1 VS, respectively, which were lower than that from raw PM. Because the integrated process of extraction followed by anaerobic digestion can produce high functional antioxidants and high-quality biogas and oil from the PM, it is recommended as a value-added utilization method for the by-product
机译:石榴汁加工的副产品石榴渣(PM)尚未得到有效利用。这项研究的目的是:(1)确定抗氧化剂的产量和性质(此后指单宁酸当量中的总酚类)和从PM的各种干湿成分中提取的油,包括果皮,种子和混合物。 ; (2)评价抗氧化剂萃取(AE)和油萃取(OE)前后PM的厌氧消化率和沼气产生潜力。水和石油醚分别用作抗氧化剂和油的萃取溶剂。厌氧消化测试在35°C±2°C下进行,进料与微生物的比为0.5(基于挥发性固体(VS)),在两个初始有机负荷分别为3.0和5.0 g VS L -1 。根据结果​​,干和湿PM提取物具有相似的提取效率和功能。湿的PM提取物的抗氧化剂含量为23.0%,相当于每吨PM干皮的抗氧化剂产量为106千克(d.b.)。抗氧化剂的DPPH清除活性为6.5至6.6 g g -1 (d.b.)。干燥的PM种子的油产量为138 kg吨 -1 (d.b.)。与较低的初始有机负荷相比,较高的初始有机负荷可提高甲烷含量(55.1%至67.5%),但不会提高沼气产量。果皮,种子和混合物的提取残留物的甲烷产量分别为148、183和161 mL g -1 VS,低于原始PM的甲烷。由于萃取后进行厌氧消化的综合过程可以从PM中产生高功能的抗氧化剂以及高质量的沼气和油脂,因此建议将其作为副产品的增值利用方法

著录项

  • 来源
    《Transactions of the ASABE》 |2009年第6期|p.1997-2006|共10页
  • 作者单位

    Wenjuan Qu, ASABE Member Engineer, Graduate Student, School of Food and Biological Engineering, Jiangsu University, Zhenjiang, Jiangsu, China;

    and Department of Biological and Agricultural Engineering, University of California, Davis, California;

    Zhongli Pan, ASABE Member Engineer, Research Engineer and Adjunct Associate Professor, USDA-ARS West Regional Research Center, Processed Foods Research Unit, Albany, California, and Department of Biological and Agricultural Engineering, University of California, Davis, California;

    Ruihong Zhang, ASABE Member, Professor, Department of Biological and Agricultural Engineering, University of California, Davis, California;

    Haile Ma, ASABE Member, Professor, School of Food and Biological Engineering, Jiangsu University, Zhenjiang, Jiangsu, China;

    Xiguang Chen, ASABE Member Engineer, Graduate Student, Department of Biological and Agricultural Engineering, University of California, Davis, California;

    Baoning Zhu, Assistant Professor, Department of Environmental Science and Technology, Beijing University of Chemical Technology, Beijing, China;

    Zhenbin Wang, Associate Professor, School of Food and Biological Engineering, Jiangsu University, Zhenjiang, Jiangsu, China;

    and Griffiths G. Atungulu, Food Processing Engineer, Department of Biological and Agricultural Engineering, University of California, Davis, California. Corresponding author: Zhongli Pan, USDA-ARS West Regional Research Center, Processed Foods Research Unit, 800 Buchanan Street, Albany, CA 94710;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Anaerobic digestion; Antioxidant; Biogas; Methane; Pomegranate marc;

    机译:厌氧消化;抗氧化剂沼气甲烷石榴马克;

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