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Effects of multiple antibiotics on greenhouse gas and ammonia emissions during swine manure composting

机译:多种抗生素对猪粪堆肥温室气体和氨排放的影响

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摘要

Antibiotics are commonly used in intensive farming, leading to multiple antibiotic residue in livestock waste. However, the effects of multiple antibiotics on the emissions of greenhouse gas and ammonia remain indistinct. This paper selects sulfamethoxazole and norfloxacin to represent two different types of antibiotics to explore their effects on gaseous emissions. Four treatments including CK (control), SMZ (spiked with 5 mg kg(-1) DW sulfamethoxazole), NOR (spiked with 5 mg kg(-1) DW norfloxacin), and SN (spiked with 5 mg kg(-1) DW sulfamethoxazole and 5 mg kg(-1) DW norfloxacin) were composted for 65 days. Coexistence of sulfamethoxazole and norfloxacin facilitated the biodegradation of organic carbon, and significantly (p < 0.05) increased the cumulative CO2 emission by 31.9%. The cumulative CH4 emissions were decreased by 6.19%, 23.7%, and 27.6% for SMZ, NOR, and SN, respectively. The total NH3 volatilization in SMZ and NOR rose to 1020 and 1190 mg kg(-1) DW, respectively. The individual existence of sulfamethoxazole significantly (p < 0.05) ascended the N2O emission rate in the first 7 days due to the increase of NO2--N content. In addition, coexistence of sulfamethoxazole and norfloxacin notably dropped the total greenhouse gas emission (subtracting CO2) by 15.5%.
机译:抗生素通常用于密集的耕种,导致牲畜废物中多种抗生素残留物。然而,多种抗生素对温室气体和氨的排放的影响仍然是模糊的。本文选择磺胺甲恶唑和诺氟沙星,代表两种不同类型的抗生素,以探讨它们对气态排放的影响。包括CK(对照),SMZ(用5mg kg(-1)DW磺胺甲氧唑(掺入5mg kg(-1)dw norfloxacin),和sn(用5 mg kg(-1)掺时(-1) DW磺胺甲氧唑和5mg kg(-1)dw norfloxacin堆肥65天。磺胺甲氧唑和诺氟沙星的共存有助于有机碳的生物降解,显着(P <0.05)增加累积二氧化碳排放量31.9%。 SMZ,NOR和SN分别下降6.19%,23.7%和27.6%的累积CH4排放量。 SMZ中的总NH 3挥发,也不升至1020和1190mg kg(-1)dw。由于NO2-N含量的增加,磺胺甲氧唑的个体存在显着(P <0.05)在前7天中升起了N2O发射率。此外,磺胺甲恶唑和诺氟沙星的共存显着地将温室气体排放量(减去CO 2)降至15.5%。

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