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[利用堆肥工艺去除猪粪中四环素和重金属的形态变化]

[Removal of Chlortetracycline and Morphological Changes in Heavy Metals in Swine Manure Using the Composting Process].

作者信息

Wen Qin-Xue, Cao Yong-Sen, Chen Zhi-Qiang

机构信息

State Key Laboratory of Urban Water Resource and Environment(SKLUWRE, HIT), Harbin Institute of Technology, Harbin 150090, China.

出版信息

Huan Jing Ke Xue. 2017 Oct 8;38(10):4405-4411. doi: 10.13227/j.hjkx.201703040.

Abstract

The widespread use of antibiotics and heavy metals in livestock farms results in large residues of antibiotics and heavy metals in the livestock manure. Composting technology can biodegrade residual antibiotics and solidify heavy metals. A pilot composting reactor was used to analyze the characteristics of chlortetracycline (CTC) removal at different antibiotic concentrations[0 mg·kg (CK), 10 mg·kg (T1), and 50 mg·kg (T2)]. Moreover, the morphological changes in heavy metals during the composting process were analyzed. After composting, no chlortetracycline was detected in the CK group and the antibiotics degradation rates of T1 and T2 groups reached 96.31% and 97.32%, respectively. The chlortetracycline degradation fits the pseudo-first-order kinetics model. Heavy metals can be solidified during the composting; thus, the bioavailable state of Cu and Zn (exchangeable state, reducible state) changed into the oxidation state and residues with apparent passivation formed. The correlation analysis showed that the removal of CTC showed strong positive correlations with the biological available Cu and Zn.

摘要

畜牧场中抗生素和重金属的广泛使用导致畜禽粪便中抗生素和重金属大量残留。堆肥技术可以生物降解残留的抗生素并固化重金属。采用中试规模的堆肥反应器分析不同抗生素浓度[0 mg·kg(CK)、10 mg·kg(T1)和50 mg·kg(T2)]下金霉素(CTC)的去除特性。此外,还分析了堆肥过程中重金属的形态变化。堆肥后,CK组未检测到金霉素,T1组和T2组抗生素降解率分别达到96.31%和97.32%。金霉素降解符合准一级动力学模型。堆肥过程中重金属可被固化,因此Cu和Zn的生物可利用态(交换态、可还原态)转变为氧化态,并形成具有明显钝化作用的残渣。相关性分析表明,CTC的去除与生物可利用态的Cu和Zn呈强正相关。

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