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自固定化生物混合物,包含黑曲霉 Y3 和节杆菌。sp ZXY-2 微球,用于去除水中的莠去津:一种生物功能整合系统。

Self-immobilized biomixture with pellets of Aspergillus niger Y3 and Arthrobacter. sp ZXY-2 to remove atrazine in water: A bio-functions integration system.

机构信息

State Key Lab of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, No. 73, Huanghe Road, Nangang District, Harbin, Heilongjiang 150090, People's Republic of China.

State Key Lab of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, No. 73, Huanghe Road, Nangang District, Harbin, Heilongjiang 150090, People's Republic of China.

出版信息

Sci Total Environ. 2019 Nov 1;689:875-882. doi: 10.1016/j.scitotenv.2019.06.313. Epub 2019 Jun 22.

Abstract

The microorganism Arthrobacter. ZXY-2 exhibits excellent degradation efficiency for atrazine in free cells. However, its poor fixability makes it hard to be kept and recycled in water. To conquer the problem, this work employed mycelial pellets of Aspergillus niger Y3 to immobilize ZXY-2, which formed a self-immobilized biomixture (SIB) to remove atrazine. SIB could completely degrade 57.3 mg/L atrazine within 10 h. The SIB exhibited the highest degradation efficiency at pH = 7 and 40 °C. Degradation of atrazine with initial concentrations of 57.3 mg/L and 17.5 mg/L was described well by zero and first-order reaction kinetics, respectively. The recycling experiments demonstrated that SIB could be recycled for 5 batches. The results of SEM, FT-IR, and zeta potential analysis showed that porous structure, functional groups, and electronegativity of SIB all contributed to its stable formation. Therefore, this study demonstrates that SIB could be formed stably and could remove atrazine efficiently.

摘要

微生物节杆菌。ZXY-2 在游离细胞中对莠去津表现出优异的降解效率。然而,其较差的固定化能力使其难以在水中保持和回收。为了解决这个问题,本工作采用黑曲霉 Y3 的菌丝球固定化 ZXY-2,形成自固定化生物混合物(SIB)以去除莠去津。SIB 可以在 10 小时内完全降解 57.3mg/L 的莠去津。SIB 在 pH=7 和 40°C 时表现出最高的降解效率。初始浓度为 57.3mg/L 和 17.5mg/L 的莠去津的降解分别符合零级和一级反应动力学。循环实验表明,SIB 可以循环使用 5 批。SEM、FT-IR 和 zeta 电位分析的结果表明,SIB 的多孔结构、官能团和电负性都有助于其稳定形成。因此,本研究表明 SIB 可以稳定形成并有效地去除莠去津。

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