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Changes and release risk of typical pharmaceuticals and personal care products in sewage sludge during hydrothermal carbonization process

水热碳化 化学 污水污泥 污水 污水处理 制浆造纸工业 烧焦 环境化学 环境科学 废物管理 药品和个人护理产品的环境影响 咖啡因 废水 流出物 化学工程 碳化 色谱法 污水污泥处理 有机化学 热解 吸附 工程类 内分泌学 医学
作者
Fei Wang,Zheyun Yin,Yarui Liu,Hongwen Sun,Hongkai Zhu,Hao Chen,Kai Zhang
出处
期刊:Chemosphere [Elsevier]
卷期号:284: 131313-131313 被引量:9
标识
DOI:10.1016/j.chemosphere.2021.131313
摘要

Hydrochars were obtained by hydrothermal carbonization treatment of municipal sewage sludge. Effects of reaction temperature (180–300 °C) and reaction time (2–15 h) on structural characteristics of the hydrochars, and changes and release risk of typical pharmaceuticals and personal care products (PPCPs) in the hydrochars were investigated. Reaction temperature played a more important role than reaction time on hydrochar properties and decarboxylation reaction was the primary process during the converting of sludge to hydrochars. The sludge hydrochars had higher yields, carbon recovery rates, polarity and less aromaticity than biochars. Hydrothermal process reduced PPCPs’ load in sludge hydrochars effectively except caffeine and acetaminophen. The hydrochars prepared at intermediate and high temperatures (240 and 300 °C) had higher caffeine concentrations than the original sludge, which can be ascribed to the transformation of N-containing precursors. The highest CaCl2 extracted caffeine concentration occurred at intermediate temperature of 240 °C (48.1 μg/kg) due to the stronger affinity of caffeine in the high-temperature hydrochars. Caffeine was not detected in hydroxypropyl-β-cyclodextrin (HPCD) extract. Hydrochars prepared at low temperature (180 °C) had a higher acetaminophen concentration than the original sludge, which was attributed to the high thermal stability temperature of acetaminophen. Low- and intermediate-temperature hydrochars had higher CaCl2 extracted acetaminophen concentrations. The HPCD extracted acetaminophen was low with a range of nd to 6.72 μg/kg. In conclusion, PPCPs are less likely to constitute a limiting factor on the farm application of sludge hydrochar. This study provides theoretical support for the safe application of sludge hydrochar in the farmland.
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