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Exploring low-cost practical antifoaming strategies in the ammonia stripping process of anaerobic digested slurry

机译:厌氧消化浆料氨汽提过程中探索低成本实用消泡策略

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As excessive foam formation is undesirable from an operational perspective in the ammonia stripping process of anaerobic digested slurry, the effect of alkaline agents on foam production was first evaluated by comparing two pH adjusters (NaOH and CaO). Results show that increased pH via CaO addition can significantly aggravate foam production and restrain defoaming ability during the stripping of anaerobic digestion effluent. The addition of 0.75% normal silicone oil (NSO) or 0.01% polyether-modified silicone oil (PMSO) as antifoam reduced foam capacity by 56.2 +/- 2.5% and 75.2 +/- 2.7%, respectively, but only works in a slurry with pH adjusted by NaOH, not by CaO. Moreover, the addition of these antifoams led to 4.31% (0.75% NSO) and 5.38% (0.01% PMSO) NH4+-N removal efficiency abatement during the stripping process. Finally, a new high-temperature, neutral (without pH adjustment) stripping strategy is proposed in this study, because it can effectively mitigate the formation of foam and maintain equalized ammonia removal. The effluent discharged via this stripping concept can be handled easily and does not cause heavy negative impacts from the residual alkaline content. Furthermore, the ammonia loss in the preparation phase before stripping was only 1/3 that in the traditionally high-pH stripping, indicating the potential of this new mitigation strategy in the frame of an environmentally friendly development.
机译:由于厌氧消化浆料的氨汽提工艺中的操作角度来说是过量的泡沫形成,首先通过比较两种pH调节剂(NaOH和CaO)来评价碱性试剂对泡沫产生的影响。结果表明,通过CAO添加的pH值增加可以显着加剧泡沫产生并在剥离厌氧消化流出物期间抑制消泡能力。加入0.75%正常的硅油(NSO)或0.01%聚醚改性的硅油(PMSO),分别减少泡沫容量56.2 +/- 2.5%和75.2 +/- 2.7%,但仅在浆料中工作用naoh调整pH,而不是Cao。此外,在汽提工艺期间,添加这些消泡剂导致4.31%(0.75%NSO)和5.38%(0.01%PMSO)NH 4 + -N去除效率。最后,在本研究中提出了一种新的高温,中性(不含pH调节)剥离策略,因为它可以有效地减轻泡沫的形成并保持均等的氨去除。通过该剥离概念排出的流出物可以容易地处理,不会引起来自残留碱性含量的重负影响。此外,在剥离前的制备阶段的氨损失仅为1/3,在传统的高pH汽提中,表明在环保发展框架中的这种新缓解策略的潜力。

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