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Comparison of Mechanical Pretreatment Methods for the Enhancement of Anaerobic Digestion of Pulp and Paper Waste Activated Sludge

机译:机械预处理方法增强纸浆和造纸废料活性污泥厌氧消化的比较

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摘要

The conventional anaerobic digestion process, requiring long solids retention times (SRTs) to digest solids, is currently viewed as impractical for the pulp and paper industry because of high capital costs associated with the construction of new digesters. Recent developments in sludge solubilization technology could be promising in reducing digester size, which also allows for the potential use of decommissioned tanks, both of which can reduce the capital cost. Three pretreatment technologies for use with anaerobic digestion were tested on laboratory-scale to investigate their feasibility. The SRTs in all three digesters systematically decreased from 20 to 3 days. The reference digester was fed waste activated sludge (WAS) to serve as the control at the same SRTs. The other digesters were fed WAS that had been preconditioned using mechanical shearing, sonication, or high-pressure homogenization technology. Anaerobic digestion with high-pressure homogenization produced as much methane at 3-day mean SRT as that from the reference digester operated at 20-day SRT. Therefore, a new digester can theoretically be 85% smaller than a conventional digester. An added benefit of WAS to methane conversion is the recovery of nutrients nitrogen and phosphorus.
机译:传统的厌氧消化工艺需要较长的固体保留时间(SRT)来消化固体,由于与建造新的蒸煮器相关的高资本成本,目前被认为对制浆造纸业不切实际。污泥增溶技术的最新发展在减小消化池的尺寸方面可能是有希望的,这也使得有可能使用退役的储罐,这两者都可以降低投资成本。在实验室规模上测试了三种用于厌氧消化的预处理技术,以研究其可行性。所有三个蒸煮器中的SRT均从20天减少到3天。给参考消化池喂入废活性污泥(WAS),以作为相同SRT的对照。向其他蒸煮器喂食已使用机械剪切,超声处理或高压均质化技术进行了预处理的WAS。高压均质的厌氧消化在3天的平均SRT上产生的甲烷与在20天的SRT下运行的参考消化池产生的甲烷一样多。因此,新的蒸煮器理论上可以比传统的蒸煮器小85%。 WAS对甲烷转化的另一个好处是可回收养分中的氮和磷。

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