剩余污泥分解对总有机碳值变化的影响

Q4 Environmental Science
I. Zawieja
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引用次数: 1

摘要

剩余污泥中有机物向溶解态转化的效率被认为是限制厌氧稳定过程的重要因素。发生在污泥分解、裂解过程中的直接影响是总有机碳(TOC)值的增加,与挥发性脂肪酸(VFAs)浓度的增加相关。总有机碳含量反映了总有机碳溶解态(DOC)和悬浮态(SOC)的上清液。同时由于生化过程的发生,污泥中所含有机物的分解程度增加,COD / TOC比值值降低。研究的目的是确定剩余污泥分解过程对总有机碳值变化的影响。采用选定的酸性HCl、碱性KOH和氧化剂H2O2对剩余污泥进行化学分解处理。在室温下进行改性6和24 h。在污泥分解过程中,可以注意到总有机碳值、分解程度以及挥发性脂肪酸浓度的增加,这证实了制备的污泥对生物降解的敏感性。氢氧化钾在12.0 g/dm的剂量下化学分解,制备时间为24 h,得到的TOC最高值为2150 mg C/dm。在给定的制备条件下,VFAs的浓度为523 mg CH3COOH/dm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The impact of excess sludge disintegration on the changes of total organic carbon value
The efficiency of conversion of organic substances contained in the excess sludge to the dissolved form is considered as an important factor limiting the process of anaerobic stabilization. Direct effect, occurring in the disintegrated sludge, lysis process is to increase the value of the total organic carbon (TOC), correlates with the increase of the concentration of volatile fatty acids (VFAs). The total organic carbon content is indicative of the supernatant liquid of total organic carbon in dissolved form (DOC) and suspended (SOC). Together with occurring, as a result of biochemical processes, increase the degree of decomposition of organic substances contained in the sludge decreases the value of the ratio of COD to TOC. The aim of the study was to determine the impact of the process of excess sludge disintegration on the changes of the total organic carbon values. The process of chemical disintegration of excess sludge was treated using the selected acidic ie HCl, alkaline ie KOH and oxidizing reagents ie H2O2. The modification was carried out at ambient temperature for 6 and 24 h. During sludge disintegration it was noticed the increase of total organic carbon values, disintegration degree as well as the concentration of volatile fatty acids that confirmed the susceptibility of prepared sludge to biodegradation. The highest TOC value of 2150 mg C/dm obtained in case of chemical disintegration of potassium hydroxide at a dose of 12.0 g/dm and preparation time 24 h. For given conditions of preparing a concentration of VFAs was 523 mg CH3COOH/dm .
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