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Chemically Assisted Primary Sedimentation as a tool to improve energy balance of a large wastewater treatment plant

机译:化学辅助初沉作为改善大型废水处理厂能量平衡的工具

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Chemicals addition at the mechanical part of wastewater treatment plant can improve overall treatment efficiency and help in solving some plant’s operational problems. Application of such process in the primary clarifiers, named as Chemically Assisted Primary Sedimentation, can also be a huge step towards energy balance improvement for the whole plant. Use of relatively cheap coagulants, such as ferric or alum salts can be an easy way to increase treatment efficiency significantly, as coagulation and flocculation intensifies followed by chemical precipitation. Additional removal of soluble pollutants and suspended solids increases their load in the primary sludge, avoiding their potential removal in the biological part of the plant. Additional organic matter in the primary sludge allows to produce more gas in the anaerobic digestion process and thus increase energy production by the CHP units. Efficiency of different coagulation agents (PIX 109 and PAX XL3) supported by polymer addition was investigated using real municipal wastewater collected from a large Polish wastewater treatment plant (over 500 000 p.e.) in a series of lab-scale tests. Proper selection of coagulant and potential polymer dosage has a serious impact on the overall costs of this additional treatment and energy balance. Based on obtained results, economic analysis was performed for the same plant to evaluate potential gains and losses of implementing such practice.
机译:在废水处理厂的机械部分添加化学药品可以提高整体处理效率,并有助于解决某些工厂的运营问题。在初级澄清池中采用这种工艺,即化学辅助初级沉淀,也可以是整个工厂改善能量平衡的重要一步。使用相对便宜的凝结剂(例如铁盐或明矾盐)可能是显着提高处理效率的简便方法,因为凝结和絮凝作用加剧,随后发生化学沉淀。额外去除可溶性污染物和悬浮固体会增加其在初级污泥中的负荷,从而避免了其在植物生物部分中的潜在去除。初级污泥中的其他有机物允许在厌氧消化过程中产生更多的气体,从而增加了CHP装置的能源生产。在一系列实验室规模的测试中,使用从大型波兰废水处理厂(500,000 p.e.)收集的真实市政废水,研究了由聚合物添加支持的不同混凝剂(PIX 109和PAX XL3)的效率。正确选择凝结剂和潜在的聚合物剂量会严重影响这种额外处理的总成本和能量平衡。根据获得的结果,对同一工厂进行了经济分析,以评估实施这种做法的潜在收益和损失。

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