The Analysis of pH Performance for Equalization Detention Time Design Case Study : WWTP2 PT. Jababeka Infrastruktur

R. Apriliani
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Abstract

Abstract. PT. Jababeka Infrastruktur is a subsidiary company of PT. Jababeka Tbk., as estate manager. One of the PT. Jababeka Infrastruktur duty is manage Wastewater Treatment Plant 2 (WWTP2). The most of incoming wastewater in WWTP2 PT. Jababeka Infrastruktur is came from food industries, whereas has potential degradable to fatty acid and caused the pH tend to be low and fluctuates. pH is one of the important parameters, especially in biological wastewater treatment system as applied in WWTP2. pH value can affect the microorganism performance in decompose the pollutant compound in wastewater. pH control action is needed to make the treatment run better. Objectives: To know the primary settling tank (PST) with   ̴3 hours detention time performance in equalizing wastewater pH. To develop the new equalization tank, it was provide an analysis the pH inlet performance by measuring pH of wastewater. Method and results: Statistical analysis of secondary data by comparing standard deviation value of wastewater before and after accommodated in PST also paired sample t-Test to see the performance of PST in equalizing of pH. Besides that, taken and measuring inlet wastewater pH in every one hour also adding to the previous wastewater inlet sample to determine the optimum wastewater detention time in terms of pH. Conclusion: PST was significant unit process that can be equalize the pH value. The observation of pH characteristic pattern by time showed that the optimum equalization time was 1-2 hours. This result can be as reference to more utilize of the existing PST.
均衡化滞留时间设计的pH性能分析——以WWTP2 PT. Jababeka基础设施
摘要PT. Jababeka infrastructure是PT. Jababeka Tbk的子公司。,担任物业经理。Jababeka基础设施的职责之一是管理污水处理厂2 (WWTP2)。Jababeka基础设施污水处理厂(WWTP2 PT. Jababeka infrastrutur)的大部分进水废水来自食品工业,但有可能降解为脂肪酸,导致pH值趋于低和波动。pH值是污水处理的重要参数之一,特别是在污水处理系统中。pH值会影响微生物对废水中污染物化合物的分解性能。为了使处理效果更好,需要采取pH控制措施。目的:了解停留时间为3h的初级沉淀池(PST)平衡废水pH值的性能,并通过测量废水pH值来分析其pH入口性能,为研制新型平衡池提供依据。方法与结果:对二次数据进行统计分析,比较PST处理前后废水的标准差值,并进行配对样本t检验,观察PST均衡pH的效果。此外,每隔一小时取取并测量进水口废水pH值,并加入之前的进水口样品,确定废水在pH值方面的最佳滞留时间。结论:PST是可以均衡pH值的显著单元过程。pH值随时间变化的特征规律观察表明,最佳均衡时间为1 ~ 2 h。研究结果可为进一步利用现有PST提供参考。
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