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首页> 外文期刊>International Biodeterioration & Biodegradation >Crosslinking of PVA/alginate carriers by glutaraldehyde with improved mechanical strength and enhanced inhibition of deammonification sludge
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Crosslinking of PVA/alginate carriers by glutaraldehyde with improved mechanical strength and enhanced inhibition of deammonification sludge

机译:戊二醛的PVA /海藻酸携带者的交联,具有改善的机械强度和增强抑制脱模污泥的抑制作用

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摘要

This study was carried out to improve the mechanical strength of polyvinyl alcohol (PVA)/alginate carriers for long-term stability of deammonification process. The post-treatment of PVA/alginate carriers with glutaraldehyde (Gl) under mild conditions was proposed for stronger crosslinking and the utilization for deammonification operation. FTIR spectra showed enhanced crosslinking with increasing Gl concentration (0.2, 0.5, 1.0, and 2.0%), acid catalyst concentration (0, 0.1 and 0.5%), and reaction duration. Among the physical parameters affected by Gl crosslinking, the mechanical strength, as tested by the endurance to internal pressure test, was markedly improved by the enhanced crosslinking. The optimal crosslinking conditions were selected for the deammonification test based on the physical parameters under the mildest possible conditions. The selected carriers were tested for inhibition of deammonification microorganisms under toxic crosslinking conditions. Deammonification activity (DA) showed no clear inhibition in Gl compared with the control. After mild variations due to changing environmental conditions for the deammonification bacteria, the total nitrogen (TN) removal efficiency of all Gl-crosslinked carriers was superior to that of the control after 20 days of operation. Therefore, the pre-treatment of PVA/alginate by Gl can improve the durability of the carrier and the stability of the deammonification process.
机译:本研究进行了提高聚乙烯醇(PVA)/藻酸盐载体的机械强度,用于脱尾铵化过程的长期稳定性。提出了在温和条件下用戊二醛(GL)的PVA /藻酸盐载体的后处理,以更强的交联和用于脱颌式操作的利用。 FTIR光谱显示出增强的交联,随着GL浓度的增加(0.2,0.5,1.0和2.0%),酸催化剂浓度(0,0.1和0.5%)和反应持续时间。在由GL交联的影响影响的物理参数中,通过增强的交联显着改善了通过耐久性测试的机械强度。基于最阳热可能的条件下的物理参数选择最佳交联条件。测试所选择的载体在有毒交联条件下抑制脱胺化微生物。与对照相比,Deammonificative活性(DA)在GL中显示出没有明显的抑制作用。在脱甘化细菌的环境条件变化导致的温和变化后,所有GL交联载体的总氮(TN)去除效率优于对照后20天后的对照。因此,GL的PVA /藻酸盐的预处理可以提高载体的耐久性和脱颌化过程的稳定性。

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