2013•Shengtai yu nongcun huanjing xuebaoRequires access

Biodegradation of Sulfadiazine in Acclimated Corn Rhizospheric Soil

Huaming Guo

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Abstract

A pot experiment using rhizospheric bags were carried out to investigate regularity of the degradation of sulfadiazine in acclimated and unacclimated corn rhizospheric soils and non-rhizospheric soils.Results show that the degradation tallies with the first order kinetic reaction model,with degradation rate constant varying in the range of 0.015-0.043 d-1and the half life in the range of 16.8-46.5 d.The degradation rate of sulfadiazine added at a rate of 2,5 and 10 mg·kg-1,separately,reached 65.5% and 43.9%,60.4% and 40.2%,and 58.5% and 34.2%,respectively,in unacclimated rhizospheric and non-rhizospheric soils after 40 days of incubation.The degradation date of sulfadiazine in acclimated rhizospheric and non-rhizospheric soils were 77.7% and 58.4%,71.3% and 53.4%,and 66.1% and 51.9%,respectively.Obviously,the degradation rate was much higher in rhizospheric soils than in non-rhizospheric soils and in acclimated soils than in unacclimated soils.The synergy of the root system with appropriate acclimation may significantly improve degradation rate of sulfadiazine in soils.

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A pot experiment using rhizospheric bags were carried out to investigate regularity of the degradation of sulfadiazine in acclimated and unacclimated corn rhizospheric soils and non-rhizospheric soils.Results show that the degradation tallies with the first order kinetic reaction model,with degradation rate constant varying in the range of 0.015-0.043 d-1and the half life in the range of 16.8-46.5 d.The degradation rate of sulfadiazine added at a rate of 2,5 and 10 mg·kg-1,separately,reached 65.5% and 43.9%,60.4% and 40.2%,and 58.5% and 34.2%,respectively,in unacclimated rhizospheric and non-rhizospheric soils after 40 days of incubation.The degradation date of sulfadiazine in acclimated rhizospheric and non-rhizospheric soils were 77.7% and 58.4%,71.3% and 53.4%,and 66.1% and 51.9%,respectively.Obviously,the degradation rate was much higher in rhizospheric soils than in non-rhizospheric soils and in acclimated soils than in unacclimated soils.The synergy of the root system with appropriate acclimation may significantly improve degradation rate of sulfadiazine in soils.

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Available abstract

A pot experiment using rhizospheric bags were carried out to investigate regularity of the degradation of sulfadiazine in acclimated and unacclimated corn rhizospheric soils and non-rhizospheric soils.Results show that the degradation tallies with the first order kinetic reaction model,with degradation rate constant varying in the range of 0.015-0.043 d-1and the half life in the range of 16.8-46.5 d.The degradation rate of sulfadiazine added at a rate of 2,5 and 10 mg·kg-1,separately,reached 65.5% and 43.9%,60.4% and 40.2%,and 58.5% and 34.2%,respectively,in unacclimated rhizospheric and non-rhizospheric soils after 40 days of incubation.The degradation date of sulfadiazine in acclimated rhizospheric and non-rhizospheric soils were 77.7% and 58.4%,71.3% and 53.4%,and 66.1% and 51.9%,respectively.Obviously,the degradation rate was much higher in rhizospheric soils than in non-rhizospheric soils and in acclimated soils than in unacclimated soils.The synergy of the root system with appropriate acclimation may significantly improve degradation rate of sulfadiazine in soils.

Key concepts: Sulfadiazine, Soil water, Chemistry, Biodegradation, Acclimatization, Degradation (telecommunications), Environmental chemistry, Ultisol

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