低成本吸附剂与漆酶对降低制浆造纸废水负荷的共轭效应及其动力学和热力学研究

J. Rabbani, S. Ahmad, M. Iqbal
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摘要

制浆造纸工业废水是环境污染的主要来源。本研究的关键因素是确定木炭(60%)和冲积土(40%)混合物与漆酶的共轭作用,以减轻制浆造纸工业的排放负荷。采用木炭(60%)和冲积土(40%)混合吸附剂对出水的生物需氧量(BOD)、化学需氧量(COD)、颜色和木质素进行吸附。研究了pH、温度、吸附剂浓度和吸附时间对去除过程的影响。在25度、pH 6.0、搅拌速率为500转/分、搅拌50分钟后达到吸附平衡。结果表明,COD、BOD、颜色和木质素的去除率分别为86%、80%、60%和62%。此外,漆酶对COD还原率为95%,BOD还原率为93%,颜色还原率为83%,木质素还原率为75%。采用Freundlich和Langmuir模型分析了COD和BOD的实验间歇平衡吸附,并采用拟一阶和拟二阶模型讨论了动力学。BOD和COD数据符合拟二级动力学模型。热力学参数∆G˚、∆H˚和∆S˚的结果表明,由于高TDS和木质素,吸附是非自发的,本质上是吸热的,并且在本研究过程中,吸附剂混合物的随机性和无序程度有所增加。因此,漆酶与吸附剂混合使用具有良好的效果,是可行的。
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CONJUGATIVE EFFECT OF LOW COST ADSORBENT WITH LACCASE ENZYME FOR REDUCTION OF PULP AND PAPER EFFLUENT LOAD, ITS KINETICS AND THERMODYNAMICS
Pulp and paper industrial effluent has the foremost role in environmental pollution. The key factor of the current study is to determine the conjugative effect of charcoal (60%) and alluvial soil (40%) mixture with laccase enzyme to lessen the effluent load of the pulp and paper industry. The adsorbent mixture of charcoal (60%) and alluvial soil (40%) was used for the adsorption of biological oxygen demand (BOD) chemical oxygen demand (COD), color, and lignin of effluent. The impact of pH, temperature, adsorbent concentration, and adsorption time on the removal procedure were studied. Adsorption equilibrium was achieved after 50 minutes with an agitation rate of 500 rpm at pH 6.0 at 25 degree. Results indicated that COD, BOD, color, and lignin were removed 86%, 80%, 60%, and 62% respectively. Moreover, the laccase enzyme also enhanced the reduction of these parameters as COD 95%, BOD 93% color 83%, and lignin 75%. The experimental batch equilibrium adsorption for COD and BOD was analyzed by Freundlich and Langmuir models and kinetics was also discussed by pseudo-first-order and pseudo-second-order. The BOD and COD data fitted to the pseudo-secondorder kinetic model. Thermodynamics parameters ∆G˚, ∆H˚, and ∆S˚ results indicated thatadsorption was nonspontaneous due to high TDS and lignin, endothermic in nature, and revealed an increase in randomnessand degree of disorderliness at adsorbent mixture during the present study. Consequently, the use of laccase enzyme incombination with an adsorbent mixture presents promising results and is applicable.  
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