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Reduction of adsorbed dyes content in the discharged sludge coming from an industrial textile wastewater treatment plant using aerobic activated sludge process

机译:使用好氧活性污泥工艺减少工业纺织废水处理厂排放的污泥中吸附染料的含量

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Dye mass balance study at full-scale industrial textile wastewater (ITW) treatment plant showed that 1.5 ton of excess waste sludge, containing 304.5 Kg of dyes, are daily produced and discharged in landfills. Therefore, this by-product of activated sludge process (ASP) presents a serious environmental problem. In this work, a laboratory and pilot scale investigations were carried out to optimize aerobic biodegradation efficiency to reduce the amount of residual adsorbed dye that will be found in the waste sludge. The resistance of acclimated biomass to the toxicity of ITW was studied in 2.5 L batch reactors using different dye to biomass (D/B) ratios of 0.102, 0.25 and 0.72 g CODs/g VSS. Results of respirometric analyses showed that acclimated activated sludge (AS) biomass is able to treat ITW at high D/B ratio of 0.72 g CODs/g VSS. Moreover, biodegradation kinetic study using Monod law showed that COD and color removal were better for the highest D/B ratio. The half saturation coefficient of heterotrophs for indigo dye (K-sind) of 20.01 g/m(3) showed high affinity between biomass and dye molecules. Optimization of the process at pilot-scale with different hydraulic retention time (HRT) of 2-5 days, and different sludge recycling rates (SRR) of 220-680 m(3)/d, showed that high HRT of 5 days and a SRR of 0.22 allowed the best dye biodegradation efficiency (95%). Application of the best conditions at full-scale reduced significantly (89%) the amount of the discharged dyes from 304.5 Kg/d to 33 Kg/d. Results were numerically validated using a mathematical model based on the activated sludge model 1 (ASM1).
机译:在大规模工业纺织废水(ITW)处理厂进行的染料质量平衡研究表明,每天产生1.5吨的多余污泥,其中包含304.5 Kg的染料,并排入垃圾填埋场。因此,该活性污泥法(ASP)的副产物带来了严重的环境问题。在这项工作中,进行了实验室和中试规模的研究,以优化需氧生物降解效率,以减少废物污泥中发现的残留吸附染料的量。在2.5升间歇式反应器中使用0.102、0.25和0.72 g CODs / g VSS的不同染料/生物量(D / B)比,研究了适应的生物质对ITW毒性的抗性。呼吸测定分析结果表明,适应的活性污泥(AS)生物量能够以0.72 g COD / g VSS的高D / B比处理ITW。此外,利用莫诺定律的生物降解动力学研究表明,对于最高的D / B比,COD和脱色效果更好。靛蓝染料(K-sind)的异养生物的半饱和系数为20.01 g / m(3),表明生物量和染料分子之间具有很高的亲和力。在具有2-5天的不同水力停留时间(HRT)和220-680 m(3)/ d的不同污泥回收率(SRR)的中试规模下优化工艺,结果表明,HRT为5天, SRR为0.22可实现最佳的染料生物降解效率(95%)。全面应用最佳条件可将排放的染料量从304.5 Kg / d显着降低(89%)至33 Kg / d。使用基于活性污泥模型1(ASM1)的数学模型对结果进行数值验证。

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