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Addition of a foaming agent to improve N-2 gas permeability of PVA/alginate carriers for deammonification process

机译:添加消泡剂以提高PVA /藻酸盐载体的N-2气体渗透性,以进行脱氨处理

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摘要

Long term use of anammox carriers immobilized in PVA/alginate has always faced problem due to expansion and bursting due to dense surface. The physical and morphological characteristics were investigated by adding foaming agent to 0, 0.15, 0.3, 0.6 and 1.2 w/v% to increase the gas permeability. Maximum real and bulk density, minimum specific surface area and swelling ratio were found at 0.3 w/v% foaming agent. The gas permeability increased continuously up to 1.2 w/v% foaming agent, as found in the break point test. The 0.3 w/v% foaming agent gave optimum bacteria retention capacity of 98.9%. With 0 w/v% foaming agent, non-porous outer layer was burst due to pressure of produced nitrogen gas as confirmed by morphology test. Addition of foaming agent caused porous structure and the anammox bacteria grew deep inside the carrier. Therefore, the optimum foaming agent content of 0.3% can greatly enhance process stability in the deammonification system. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:由于致密的表面膨胀和破裂,长期使用固定在PVA /藻酸盐中的厌氧氨氧化载体一直面临着问题。通过向0、0.15、0.3、0.6和1.2 w / v%中添加发泡剂以提高气体渗透性来研究物理和形态特征。在0.3w / v%的发泡剂下发现最大的实密度和堆积密度,最小的比表面积和溶胀率。如断裂点测试中所示,气体渗透率连续增加,直至达到1.2 w / v%的发泡剂。 0.3 w / v%的发泡剂具有98.9%的最佳细菌保留能力。如形态测试所证实,在使用0w / v%的发泡剂的情况下,无孔的外层由于产生的氮气的压力而破裂。加入发泡剂会导致多孔结构,并且厌氧细菌会在载体内部深入生长。因此,最佳发泡剂含量为0.3%可以大大提高脱氨系统中的工艺稳定性。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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