首页> 外文会议>International Conference on Environmental Concerns and Emerging Abatement Technologies >EFFECT OF INORGANIC CARBON ON THE BIODEGRADATION OF DIMETHYL PHTHALATE BY CHLORELLA PYRENOIDOSA
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EFFECT OF INORGANIC CARBON ON THE BIODEGRADATION OF DIMETHYL PHTHALATE BY CHLORELLA PYRENOIDOSA

机译:无机碳对小球藻蛋白质邻苯二甲酸二甲酯生物降解的影响

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摘要

The effect and mechanism of inorganic carbon (IC) on the biodegradation of dimethyl phthalate (DMP) by a green microalga Chlorella pyrenoidosa was investigated. It was indicated that DMP could be used as the sole carbon source to support the slow growth of C.pyrenoidosa, but both the growth of C.pyrenoidosa and the biodegradation rate of DMP were obviously enhanced when initial inorganic carbon concentration (IC) was increased from 0.6 to 23.7 mg/l. Phthalic acid (PA) was found to be an intermediate product of DMP biodegradation and accumulated in the culture solution, which caused a sharp decrease in pH of medium and inhibited both the growth of alga and the biodegradation of DMP. The role of IC for improving the biodegradation of DMP was both supplying a favorite carbon source to support the rapid growth of alga and mitigating the decrease of pH caused by the production of PA. A suggested second-order kinetic equation of organic pollutant biodegradation by microalgae (-dC/dt = K N r) fitted well with the experimental data. The second-order constant (K) was apparently declined with the increase of initial IC because lower ratio between organic carbon from DMP and IC was used to support the growth of alga when initial IC increased.
机译:研究了无机碳(IC)对邻苯二甲酸酯(DMP)生物降解的绿色微藻菌菌嘧啶菌嘧啶的影响和机制。结果表明,DMP可以用作支持C.pyrenoidosa缓慢生长的唯一碳源,但是当初始无机碳浓度(IC)增加时,C.Pyrenoidosa的生长和DMP的生物降解率明显增强了从0.6到23.7 mg / L.发现邻苯二甲酸(PA)是DMP生物降解的中间产物,并在培养溶液中积聚,这导致培养基的pH急剧下降并抑制藻类的生长和DMP的生物降解。 IC用于改善DMP生物降解的作用均供应最喜欢的碳源,以支持藻类的快速生长,并减轻PA生产引起的pH值的降低。用微藻(-DC / DT = K N r)与实验数据很好地提出了有机污染物生物降解的二阶动力学方程。随着初始IC的增加,二阶常数(k)显然是下降,因为当初始IC增加时,使用来自DMP和IC的有机碳之间的较低比率来支持藻类的生长。

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