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A novel technology for bulking control in biological wastewater treatment plant for pulp and paper making industry

机译:制浆造纸生物废水处理厂中散装控制的新技术

摘要

Filamentous foaming and bulking in activated sludge process are common problems in pulp and paper mill wastewater treatment processes. In this study, the predominant foaming and bulking causing filamentous microorganism in the pulp and paper mill effluent treatment system was identified. Its growth kinetics was studied and used as a theoretical basis to develop an optimal operational strategy for foaming and bulking preventive control. Filamentous actinomycetes, Nocardia amarae was found to be the predominant filamentous microorganisms. The kinetics study revealed that the Food to Microorganism (F/M) ratio was a critical factor affecting the excessive growth of N. amarae. Accordingly, a novel Feast-Fast Operation (FFO) strategy was developed, in which the sludge microbes underwent a repetitive switch between high and low F/M ratio during the course of wastewater treatment. Feast-to-Fast Loading Ratio (FFLR) was proposed and used as the parameter for optimization of FFO performance. At FFLR of 4 and 3.5, the sludge volume index (SVI) rapidly reduced to a healthy level of 70 ml g-1 and the systems were free from stable foam, while the biochemical oxygen demand (BOD) removal efficiency remained above 96.2%. The FFO strategy effectively suppressed filamentous overgrowth and improved the settleability of activated sludge without adversely affecting the BOD removal efficiency.
机译:活性污泥工艺中的丝状起泡和膨化是纸浆和造纸厂废水处理工艺中的常见问题。在这项研究中,确定了在制浆造纸厂废水处理系统中主要的泡沫和膨松导致丝状微生物。对它的生长动力学进行了研究,并为开发预防和控制发泡和膨胀的最佳操作策略提供了理论基础。发现丝状放线菌是诺卡氏菌,是主要的丝状微生物。动力学研究表明,食物与微生物(F / M)的比例是影响a菜猪笼草过度生长的关键因素。因此,开发了一种新颖的Feast-Fast Operation(FFO)策略,其中污泥微生物在废水处理过程中在高F / M和低F / M比之间反复进行切换。提出了快到快的装载比率(FFLR),并将其用作优化FFO性能的参数。在FFLR为4和3.5时,污泥体积指数(SVI)迅速降低至70 ml g-1的健康水平,并且系统中没有稳定的泡沫,而生化需氧量(BOD)去除效率保持在96.2%以上。 FFO策略有效地抑制了丝状体的过度生长,并提高了活性污泥的沉降性,而对BOD的去除效率没有不利影响。

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