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Phosphorus speciation during anaerobic digestion and subsequent solid/liquid separation

机译:厌氧消化过程中的磷形状和随后的固体/液体分离

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摘要

This study aims to investigate the effect of anaerobic digestion (AD) on P species and how the different species are distributed in the digestate and digestate fractions, i.e. liquid and solid fractions. To do so, six full scale AD plants were used in this work and representative biomass samples were collected for investigation. P fractionation proceeded by adopting fractionation protocols consisting in step-by-step extraction with different solvents, (i.e. NaHCO_3, HCl and NaOH-EDTA). Subsequently P species in the different fractions were identified by using ~(31)PNMR. On average, AD did not substantially affect P speciation that depended on the P-fraction content of feeds. A high NaHCO_3 fraction content in the ingestate determined, also, a high content of this fraction in the digestate, with consequently lower contents of both P-HCl and P-NaOH-EDTA, i.e. digestate P-fraction contents represented an inheritance of P speciation in the ingestate. A feed effect was observed in single plants. Highest pig/cow slurry content in the feeds seemed to decrease readily soluble P (extracted with NaHCO_3) content and increased P associated with both organic matter and amorphous Fe/Al in the digestate. Again, using a large amount of digestate in the feed increased P-soluble content in the digestate. ~(31)P NMR analyses revealed that inorganic P compounds dominated the spectra of all biomasses and fractions, with orthophosphate as the predominant species. When present, organic phosphorus compounds were typically represented by monophosphate esters, DNA and phospholipids, with a predominance of monophosphate esters.
机译:本研究旨在探讨厌氧消化(AD)对P种的影响以及如何将不同物种分布在消化物和消化级分中,即液体和固体级分。为此,在这项工作中使用六种全规模的广告植物,收集代表生物质样品进行调查。通过采用分馏方案,采用分馏方案,通过不同的溶剂组成的分馏方案进行,(即NaHCO_3,HCl和NaOH-EDTA)。随后通过使用〜(31)PNMR来鉴定不同级分中的P物种。平均而言,AD基本上没有影响依赖于饲料的P馏分含量的P形态。在摄入中的高NaHCO_3馏分含量确定,在消化物中,该级分的高含量,因此P-HCl和P-NaOH-EDTA的含量降低,即消化p级分含量表示P形态的遗传在摄入。在单植物中观察到饲料效果。饲料中的最高猪/牛浆液含量似乎可降低易溶的p(用NaHCO_3提取)含量,并在消化物中增加与有机物质和无定形Fe / Al相关的P.同样,在饲料中使用大量消化物增加了消化物中的p溶性含量。 〜(31)P NMR分析显示,无机P化合物将所有生物质和级分的光谱占主导地位,正磷酸盐作为主要物种。当存在时,有机磷化合物通常由单磷酸酯,DNA和磷脂表示,其主要是单磷酸酯。

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  • 来源
    《The Science of the Total Environment》 |2020年第10期|139284.1-139284.11|共11页
  • 作者单位

    Department of Food Environmental and Nutritional Sciences Division of Chemistry and Molecular Biology Universita degli Studi di Milano Via Celoria 2 20133 Milano Italy;

    Department of Food Environmental and Nutritional Sciences Division of Chemistry and Molecular Biology Universita degli Studi di Milano Via Celoria 2 20133 Milano Italy;

    Department of Food Environmental and Nutritional Sciences Division of Chemistry and Molecular Biology Universita degli Studi di Milano Via Celoria 2 20133 Milano Italy;

    Ricicla Group Labs Dipartimento di Scienze Agrarie e Ambientali Produzione Territorio Agroenergia Universita degli Studi di Milano Via Celoria 2 20133 Milano Italy;

    Ricicla Group Labs Dipartimento di Scienze Agrarie e Ambientali Produzione Territorio Agroenergia Universita degli Studi di Milano Via Celoria 2 20133 Milano Italy;

    Ricicla Group Labs Dipartimento di Scienze Agrarie e Ambientali Produzione Territorio Agroenergia Universita degli Studi di Milano Via Celoria 2 20133 Milano Italy;

    Ricicla Group Labs Dipartimento di Scienze Agrarie e Ambientali Produzione Territorio Agroenergia Universita degli Studi di Milano Via Celoria 2 20133 Milano Italy;

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

    Anaerobic digestion; Phosphorus speciation; ~(31)P NMR; Renewable fertilizers;

    机译:厌氧消化;磷形态;〜(31)p nmr;可再生肥料;

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