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Wastewater treatment - adsorption of organic micropollutants on activated HTC-carbon derived from sewage sludge

机译:废水处理-有机微污染物在污水污泥衍生的活性HTC碳上的吸附

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摘要

Organic micropollutants (MPs), in particular xenobiotics and their transformation products, have been detected in the aquatic environment and the main sources of these MPs are wastewater treatment plants. Therefore, an additional cleaning step is necessary. The use of activated carbon (AC) is one approach to providing this additional cleaning. Industrial AC derived from different carbonaceous materials is predominantly produced in low-income countries by polluting processes. In contrast, AC derived from sewage sludge by hydrothermal carbonization (HTC) is a regional and sustainable alternative, based on waste material. Our experiments demonstrate that the HTC-AC from sewage sludge was able to remove most of the applied MPs. In fact more than 50% of sulfamethoxazole, diclofenac and bezafibrate were removed from artificial water samples. With the same approach carbamazepine was eliminated to nearly 70% and atrazine more than 80%. In addition a pre-treated (phosphorus-reduced) HTC-AC was able to eliminate 80% of carbamazepine and diclofenac. Atrazine, sulfamethoxazole and bezafibrate were removed to more than 90%. Experiments using real wastewater samples with high organic content (11.1 g m(-3)) succeeded in proving the adsorption capability of phosphorus-reduced HTC-AC.
机译:在水生环境中已检测到有机微污染物(MPs),尤其是异种生物及其转化产物,这些MPs的主要来源是废水处理厂。因此,需要额外的清洁步骤。活性炭(AC)的使用是提供这种额外清洁的一种方法。低碳国家主要通过污染过程生产源自不同碳质材料的工业AC。相比之下,通过水热碳化(HTC)从污水污泥中获得的AC是一种基于废物的区域性可持续发展替代方案。我们的实验表明,污水污泥中的HTC-AC能够去除大部分应用的MP。实际上,已从人造水样品中去除了50%以上的磺胺甲恶唑,双氯芬酸和苯甲酸酯。采用相同的方法,卡马西平被消除了近70%,阿特拉津则被消除了80%以上。另外,经过预处理(减少了磷)的HTC-AC能够消除80%的卡马西平和双氯芬酸。去除了,去津,磺胺甲恶唑和苯甲酸酯至90%以上。使用具有高有机含量(11.1 g m(-3))的真实废水样品进行的实验成功地证明了磷还原HTC-AC的吸附能力。

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