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高温堆肥可以有效降解鸡粪中残留的四环素。

High temperatures can effectively degrade residual tetracyclines in chicken manure through composting.

机构信息

Soil and Fertilizer Institute, Fujian Academy of Agricultural Sciences, Fuzhou, 350003, China; College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.

Soil and Fertilizer Institute, Fujian Academy of Agricultural Sciences, Fuzhou, 350003, China.

出版信息

J Hazard Mater. 2019 Dec 15;380:120862. doi: 10.1016/j.jhazmat.2019.120862. Epub 2019 Jul 3.

Abstract

Tetracyclines (TCs) residues in livestock manure are the main origin of environmental tetracyclines contamination and have serious environmental and health risks. This work aimed to examine the effect of temperature on the degradation patterns of TCs antibiotics. Tetracycline (TC), doxycycline (DC), oxytetracycline (OTC) and chlortetracycline (CTC) were all degraded much more quickly in sterilized double distilled HO (ddHO) at higher temperatures and lost antibacterial activity after being incubated at 70 °C for 72 h. High pH value enhanced the degradation process of TCs solutions. Degradation products of the TCs were identified with LC/MS. The TCs from simulated composting with sterilized chicken manure and nonsterilized manure all showed temperature-dependent thermal degradation. The degradation pattern fitted the availability-adjusted loss model well. The fitted equations showed that the half-lifes of degradation of the TCs were 1.66-7.62 h at 70 °C, 3.29-21.39 h at 60 °C and 9.25-57.19 h at 50 °C. Compared with those of nonsterilized manures, we concluded that high temperature can effectively degrade the residual TCs in chicken manure by thermal degradation during high temperature composting. Temperatures that are elevated moderately, for example, up to 70 °C, during the composting process can make the degradation process more effective and rapid.

摘要

四环素(TCs)残留在牲畜粪便中是环境中四环素污染的主要来源,具有严重的环境和健康风险。本工作旨在研究温度对 TCs 抗生素降解模式的影响。在高温下,经过消毒的双蒸水(ddHO)中,四环素(TC)、强力霉素(DC)、土霉素(OTC)和金霉素(CTC)的降解速度都明显加快,在 70°C 孵育 72 小时后失去抗菌活性。较高的 pH 值促进了 TCs 溶液的降解过程。用 LC/MS 鉴定了 TCs 的降解产物。经过消毒的鸡粪和未消毒鸡粪模拟堆肥中的 TCs 均表现出温度依赖性的热降解。降解模式很好地符合可用调整损失模型。拟合方程表明,在 70°C 下 TCs 的降解半衰期为 1.66-7.62 h,在 60°C 下为 3.29-21.39 h,在 50°C 下为 9.25-57.19 h。与未消毒鸡粪相比,我们得出结论,高温堆肥过程中高温可通过热降解有效降解鸡粪中残留的 TCs。例如,在堆肥过程中适度升高温度,例如升高至 70°C,可使降解过程更加有效和快速。

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