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首页> 外文期刊>Waste Management >Fate and impact of Pharmaceuticals and personal care products during septage co-composting using an in-vessel composter
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Fate and impact of Pharmaceuticals and personal care products during septage co-composting using an in-vessel composter

机译:使用船舶堆学术期间制药和个人护理产品的命运和药物的影响

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摘要

The present study aimed at understanding the impact of pharmaceutical and personal care product (PPCP) load on compost dynamics and fate of PPCPs during the composting. In addition, the compost dynamics during single PPCP degradation and multiple PPCPs degradation were investigated. Results revealed that co-composting could degrade the pharmaceutical, carbamazepine (CBZ) up to 83% during single pollutant degradation while it was 66% during multiple pollutant system, at an initial concentration (IC) of 5 mg/kg dw. In case of personal care product, namely triclosan (TCS), single pollutant degradation resulted in 86% removal whereas the removal efficiency was 83% in multiple pollutant system. Relatively high concentration of CBZ showed a negative impact on compost dynamics compared to that of TCS. Higher IC resulted in lower temperature development and relatively lower pollutant removal. The study on pollutant transfer in compost solid surface and in leachate revealed that TCS was not leached out while the leaching of CBZ was significant during composting process. The various transformation products formed during composting were identified and tentative pathways for CBZ and TCS degradation were proposed.
机译:本研究旨在了解药品和个人护理产品(PPCP)负荷对堆肥期间PPCPS对PPCP的堆肥动力学和命运的影响。另外,研究了单一PPCP降解期间的堆肥动力学和多个PPCPS降解。结果表明,在单一污染物降解期间,共堆肥可能会降低83%,而在多种污染物系统中为66%,初始浓度(IC)为5mg / kg DW。在个人护理产品的情况下,即三氯烷(TCS),单一污染物降解导致86%的去除,而多种污染物系统中去除效率为83%。与TCS相比,相对高的CBZ浓度对堆肥动力学显示出负面影响。较高的IC导致温度较低,污染物较低。堆肥固体表面和渗滤液中污染物转移的研究表明,在堆肥过程中CBZ的浸出显着,TCS没有浸出。鉴定了在堆肥期间形成的各种转化产物,并提出了CBZ和TCS降解的暂定途径。

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