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Nickel inhibition of calcium precipitation by ureolytic mixed microorganisms under batch conditions

机译:分批条件下尿素分解混合微生物对镍对钙沉淀的抑制作用

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The respirometric assessment of the inhibitory impact of Ni(II) on substrate utilization and microbial carbonate precipitation (MCP) by ureolytic mixed microorganisms was investigated with a glucose containing mineral medium under batch conditions over an incubation period of 134 h. The IC_(25) was determined as 224 mg Ni(II) L~(-1) from the BOD values of samples. The interpretation of kinetic data showed that the substrate removal rate fitted a zero-order at the beginning of the incubation period and first-order during the last period, for a range of Ni(II) concentrations between 0 and 512 mg L~(-1). Increasing Ni(II) concentrations from 0 to 512 mg L~(-1) reduced the substrate degradation rate constant from 10.8 to 5.3 mg L~(-1) h~(-1) for zero-order rate constant (k0). and from 0.015 to 0.002 h~(-1) for first-order rate constant (k1). The zero- and first-order reaction rates during incubation period were equalized to the reaction rate of the Monod equation in order to determine the kinetic constants, half saturation concentration (K_s) and maximum substrate removal rate (R_(max)). BOD removal rate was inhibited accordingly to mixed inhibition model with increasing Ni(II) concentrations during the calcification process. Also, the inhibition of calcium precipitation was observed at a higher Ni(II) concentration because of inhibition of ammonium production in these samples.
机译:在含葡萄糖的矿物培养基中,在134 h的孵育时间内,对含尿素的混合微生物对Ni(II)对底物利用率和碳酸盐微生物沉淀(MCP)抑制作用的呼吸测定进行了评估。从样品的BOD值确定IC_(25)为224 mg Ni(II)L〜(-1)。动力学数据的解释表明,对于浓度范围为0至512 mg L〜(-)的Ni(II),底物去除速率在孵育期开始时为零级,而在最后一个时期为一级。 1)。 Ni(II)的浓度从0增加到512 mg L〜(-1),对于零级速率常数(k0),底物降解速率常数从10.8降低到5.3 mg L〜(-1)h〜(-1)。一阶速率常数(k1)为0.015至0.002 h〜(-1)。孵育期间的零级和一级反应速率等于Monod方程的反应速率,以确定动力学常数,半饱和浓度(K_s)和最大底物去除速率(R_(max))。在混合抑制模型中,随着钙化过程中Ni(II)浓度的增加,BOD的去除率受到抑制。而且,由于这些样品中铵的产生受到抑制,因此在较高的Ni(II)浓度下也观察到了钙沉淀的抑制作用。

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