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Physicochemical and Biological Characteristics of Enhanced Anaerobic Microbial Granulation by Synthetic and Natural Cationic Polymers

机译:合成自然阳离子聚合物增强厌氧微生物造粒的物理化学和生物学特性

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High and medium molecular weight of synthetic cationic polymers (3150 and 8265) and natural cationic polymer (chitosan) were selected to study the effect of cationic polymers on microbial granulation in anaerobic digestion. The optimal dose of each type of cationic polymer for the initial microbial agglomeration was determined in laboratory-scale jar test. The suitable dose of 3150, 8265 and chitosan was 2.0, 2.0 and 13.0 mg/g VSS, respectively. The bench reactors were operated for a period of 120 days at organic loading rate (OLR) of 0.5-2.0 kg COD/m~3.d. As the results, these cationic polymers enhanced anaerobic granulation in term of granule properties which consists of physical, chemical and biological properties. Size distribution of all reactors increased specially addition of polymer 3150 which provided the granule percentage from 2.74% to 16.40%. Chitosan contributed on increased of extracellular polymeric substances (EPS) production from 20.2 to 50.0 mg/g VSS, and also specific methanogenic activity (SMA) reached to 0.18 g COD/g VSS.d. The experimental results showed that addition polymer 3150 and chitosan gave well productive in term of granule properties. Granule scanning electron microscope (SEM) and fluorescent in situ hybridization (FISH) with confocal laser scanning microscope (CLSM) photographs indicated the accomplishment of granulation by progressively increasing the OLR.
机译:选择高阳离子聚合物(3150和8265)和天然阳离子聚合物(壳聚糖)的高中分子量,研究阳离子聚合物对厌氧消化中微生物造粒的影响。在实验室标度罐试验中测定了用于初始微生物附聚的每种类型的阳离子聚合物的最佳剂量。合适的3150,8265和壳聚糖的剂量分别为2.0,2.0和13.0mg / g VSS。在0.5-2.0kg COD / M〜3.D的有机加载速率(OLR)下操作台式反应器为120天。作为结果,这些阳离子聚合物的颗粒性能增强了厌氧颗粒,其包括物理,化学和生物学性质。所有反应器的尺寸分布增加了聚合物3150的特别加入,其提供颗粒率从2.74%到16.40%。壳聚糖促进了20.2-50.0mg / g VSS的细胞外聚合物物质(EPS)的增加,并且还达到0.18g COD / G VSS.D的特定甲烷活性(SMA)。实验结果表明,在颗粒性能的术语中,添加聚合物3150和壳聚糖在颗粒性能良好生产。颗粒扫描电子显微镜(SEM)和荧光原位杂交(鱼类)与共聚焦激光扫描显微镜(CLSM)照片显示通过逐步增加OLR来实现造粒。

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