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首页> 外文期刊>The Korean journal of chemical engineering >Effect of conditions of air-lift type reactor work on cadmium adsorption
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Effect of conditions of air-lift type reactor work on cadmium adsorption

机译:气举式反应器工作条件对镉吸附的影响

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摘要

We investigated cadmium sorption by activated sludge immobilized in 1.5% sodium alginate with 0.5% polyvinyl alcohol. Experiments were conducted in an air-lift type reactor at the constant concentration of biosorbent reaching 5 d.m./dm(3), at three flow rates: 0.1, 0.25 and 0.5 V/h, and at three concentrations of the inflowing cadmium solution: 10, 25 and 50mg/dm(3). Analyses determined adsorption capacity of activated sludge immobilized in alginate as well as reactor's work time depending on flow rate and initial concentration of the solution. Results achieved were described with the use of Thomas model. The highest adsorption capacity of the sorbent (determined from the Thomas model), i.e., 200.2 mg/g d.m. was obtained at inflowing solution concentration of 50 mg/dm(3) and flow rate of 0.1 V/h, whereas the lowest one reached 53.69 mg/g d.m. at the respective values of 10 mg/dm(3) and 0.1 V/h. Analyses were also carried out to determine the degree of biosorbent adsorption capacity utilization at the assumed effectiveness of cadmium removal - at the breakthrough point (C=0.05*C-0) and at adsorption capacity depletion point (C-0.9*C-0). The study demonstrated that the effectiveness of adsorption capacity utilization was influenced by both the concentration and flow rate of the inflowing solution. The highest degree of sorbent capacity utilization was noted at inflowing solution concentration of 50 mg/dm(3) and flow rate of 0.1 V/h, whereas the lowest one at the respective values of 10 mg/dm(3) and 0.1 V/h. The course of the process under dynamic conditions was evaluated using coefficients of tangent inclination - a, at point C/C-0=A1/2. A distinct tendency was demonstrated in changes of tangent slope a as affected by the initial concentration of cadmium and flow rate of the solution. The highest values of a coefficient were achieved at the flow rate of 0.1 V/h and initial cadmium concentration of 50 mg/dm(3).
机译:我们研究了固定在1.5%海藻酸钠和0.5%聚乙烯醇中的活性污泥对镉的吸附。实验在气举式反应器中进行,生物吸附剂的恒定浓度达到5 dm / dm(3),三种流速:0.1、0.25和0.5 V / h,并且三种浓度的流入的镉溶液:10 ,25和50mg / dm(3)。根据溶液的流速和初始浓度,分析确定的固定在藻酸盐中的活性污泥的吸附能力以及反应器的工作时间。使用Thomas模型描述了获得的结果。吸附剂的最高吸附容量(根据托马斯模型确定),即200.2 mg / gd.m。在流入溶液浓度为50 mg / dm(3)且流速为0.1 V / h的情况下获得了,而最低的溶液达到了53.69 mg / gd.m。分别为10 mg / dm(3)和0.1 V / h。还进行了分析,以确定在假定的去除镉效率下-在突破点(C = 0.05 * C-0)和吸附能力耗尽点(C-0.9 * C-0)处生物吸附剂吸附能力利用的程度。 。研究表明,吸附容量利用的效率受流入溶液的浓度和流速的影响。在流入溶液浓度为50 mg / dm(3)和流速为0.1 V / h时,吸附剂利用率最高,而在10 mg / dm(3)和0.1 V / h时,吸附剂利用率最低。 H。使用切线倾角系数a在C / C-0 = A1 / 2处评估动态条件下的过程。在切线斜率α的变化中表现出明显的趋势,该变化受镉的初始浓度和溶液流速的影响。在0.1 V / h的流量和50 mg / dm的初始镉浓度下,系数的最大值达到最高(3)。

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