首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Degradation of Triclosan and Carbamazepine in Two Agricultural and Garden Soils with Different Textures Amended with Composted Sewage Sludge
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Degradation of Triclosan and Carbamazepine in Two Agricultural and Garden Soils with Different Textures Amended with Composted Sewage Sludge

机译:堆肥污泥对两种不同质地的农业和园林土壤中三氯生和卡马西平的降解

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摘要

Composted sewage sludge (CSS) has been extensively used in agriculture and landscaping, offering a practical solution for waste disposal. However, some pharmaceutical and personal care products (PPCPs) like triclosan (TCS) and carbamazepine (CBZ) have restricted its land application. In this study, CSS was added to agricultural soil and garden soil at 0%, 5%, 10%, and 25% (w/w soil), and 4 mL of TCS and CBZ stock solution (1000 mg/L in methanol) was spiked into soil amended with CSS of each bottle to arrive at the concentration of 10 mg/kg. Samples were then collected after incubation for 120 days and analyzed for concentrations and half-life (t1/2) of TCS and CBZ, and soil physicochemical properties, together with enzyme activities. The results showed that TCS was degraded completely during the incubation period. In contrast, only about 5.82–21.43% CBZ was degraded. CSS amendment inhibited TCS and CBZ degradation and prolonged t1/2 compared to the control, and the t1/2 of TCS and CBZ increased with CSS addition amount in all treatments except for CBZ in the garden soil amended with 10% CSS. Correlation studies showed a significantly positive relationship between t1/2 of TCS and CBZ and total organic carbon (TOC), while a significantly negative relationship between t1/2 of the two PPCPs and pH was observed. Alkaline phosphatase showed a significantly negative relationship with the Ct/C0 of TCS in garden soil amended with 25% CSS and CBZ in the control. The urease activity was negatively correlated with the Ct/C0 of TCS in 10% and 25% CSS treatments and CBZ in 10% CSS treatment for garden soil.
机译:堆肥污水污泥(CSS)已广泛用于农业和园林绿化,为废物处理提供了实用的解决方案。但是,一些药物和个人护理产品(PPCP),例如三氯生(TCS)和卡马西平(CBZ),限制了其土地用途。在这项研究中,将CSS以0%,5%,10%和25%(w / w土壤)和4 mL TCS和CBZ储备溶液(甲醇中1000 mg / L)添加到农业土壤和花园土壤中将其掺入土壤,并用每瓶CSS改良,以达到10 mg / kg的浓度。孵育120天后收集样品,分析TCS和CBZ的浓度和半衰期(t1 / 2),土壤理化性质以及酶活性。结果表明,TCS在孵育过程中被完全降解。相反,仅约5.82–21.43%的CBZ降解。与对照相比,CSS改良剂抑制了TCS和CBZ的降解并延长了t1 / 2的时间,并且除添加10%CSS的花园土壤中的CBZ以外,所有处理中TCS和CBZ的t1 / 2均随CSS添加量的增加而增加。相关性研究显示,TCS和CBZ的t1 / 2与总有机碳(TOC)之间存在显着的正相关,而两个PPCP的t1 / 2与pH之间存在显着的负相关。碱性磷酸酶与TCS的Ct / C0呈显着负相关,在对照中用25%CSS和CBZ修正后的菜园土壤中。在花园土壤中,尿素酶活性与10%和25%CSS处理中TCS的Ct / C0和10%CSS处理中CBZ呈负相关。

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