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Mechanical sludge disintegration for the production of carbon source for biological nutrient removal

机译:机械分解污泥以生产用于生物营养去除的碳源

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The primary driver for a successful biological nutrient removal is the availability of suitable carbon source, mainly in the form of volatile fatty acids (VFA). Several methods have been examined to increase the amount of VFAs in wastewater. This study investigates the mechanism of mechanical disintegration of thickened surplus activated sludge by a deflaker technology for the production of organic matter. This equipment was able to increase the soluble carbon in terms of VFA and soluble chemical oxygen demand (SCOD) with the maximum concentration to be around 850 and 6530 mgl~(-1), for VFA and SCOD, respectively. The particle size was reduced from 65.5 to 9.3 μm after 15 min of disintegration with the simultaneous release of proteins (1550 mg l~(-1)) and carbohydrates (307 mg l~(-1)) indicating floc disruption and breakage. High performance size exclusion chromatography investigated the disintegrated sludge and confirmed that the deflaker was able to destroy the flocs releasing polymeric substances that are typically found outside of cells. When long disintegration times were applied ( ≥ 10 min or ≥ 9000 kJ kg~(-1) TS of specific energy) smaller molecular size materials were released to the liquid phase, which are considered to be found inside the cells indicating cell lysis.
机译:成功去除生物营养的主要驱动因素是合适碳源的可用性,主要是挥发性脂肪酸(VFA)的形式。已经研究了几种增加废水中VFA含量的方法。这项研究研究了通过扩口技术生产有机物的过程中增稠的剩余活性污泥的机械分解机理。该设备能够以VFA和可溶性化学需氧量(SCOD)的形式增加可溶性碳,最大浓度分别为VFA和SCOD分别为850和6530 mgl〜(-1)。崩解15分钟后,粒径从65.5减小到9.3μm,同时释放蛋白质(1550 mg l〜(-1))和碳水化合物(307 mg l〜(-1)),表明絮凝物破裂和破裂。高性能尺寸排阻色谱法对分解的污泥进行了研究,并证实了脱膜剂能够破坏絮凝物,释放出通常在细胞外发现的聚合物质。当应用较长的崩解时间(≥10 min或≥9000 kJ kg〜(-1)TS的比能)时,较小分子大小的物质释放到液相中,这被认为是在细胞内部发现的,表明细胞裂解。

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