Industrial wastewater treatment using venture injector type Micro-bubble aeration as a reduction of dissolved Iron (Fe2+) levels

Dimas Amirul Mukminin Nur Efendi, Adityas Agung Ramandani, Děvy Cendekia, Windia Hanifah
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Abstract

Water quality problems that are often encountered, especially by-product wastewater resulting from industrial processes that do not meet the requirements for wastewater quality standards. Iron levels in wastewater can cause the water to turn brownish yellow and produce an unpleasant odor, which of course has a big impact on the environment. Therefore, it is necessary to implement a treatment process to reduce the iron level in the water, ensuring that the water is safe when discharged into the environment. The purpose of this research is to analyze the initial parameters of temperature, pH, TDS, TSS, dissolved oxygen (DO) and dissolved iron (Fe2+) in industrial waste water and then wanted to know whether the venture injector type micro bubble aeration process was able to increase the value of dissolved oxygen (DO) and decrease the dissolved iron content (Fe2+) in wastewater and to know the micro bubble type aeration process Venture injectors are the best to use. The research was conducted with an experimental design using a completely randomized design (RAL) with two factors: air flow (2 LPM, 4 LPM, and 6 LPM) and aeration time (0 minutes, 15 minutes, 30 minutes, 45 minutes, and 60 minutes), each with two repetitions. In the results of the initial parameter analysis, the pH value was 8.02 (alkaline), the temperature value was 28°C, the TDS value was 1548.3 mg/L, the TSS value was 291 mg/L, the DO value was 0.1 mg/L and dissolved iron (Fe2+) of 7.453 mg/L. After conducting research, it was found that the venture injector type micro bubble aeration process was able to increase the value of dissolved oxygen (DO) and reduce dissolved iron (Fe2+) in industrial waste water, the best increase in dissolved oxygen (DO) at 6 LPM air flow for 60 minutes was able to increase oxygen dissolved (DO) to 2.40 mg/L. The most efficient and effective reduction in the value of dissolved iron (Fe2+) at 6 LPM air flow with a time of 15 minutes was able to reduce the value of dissolved iron by 84.42%.
利用风险喷射器式微气泡曝气技术降低溶解铁(Fe2+)含量的工业废水处理方法
水质问题是经常遇到的问题,尤其是工业生产过程中产生的副产品废水不符合废水水质标准的要求。废水中的铁含量会导致水变成棕黄色,并产生难闻的气味,这当然会对环境造成很大影响。因此,有必要采用一种处理工艺来降低水中的铁含量,确保排放到环境中的水是安全的。本研究的目的是分析工业废水中的温度、pH 值、TDS、TSS、溶解氧(DO)和溶解铁(Fe2+)等初始参数,进而了解风险喷射器式微气泡曝气工艺是否能够提高废水中的溶解氧(DO)值和降低溶解铁含量(Fe2+),并了解风险喷射器式微气泡曝气工艺的最佳使用方法。研究采用完全随机设计(RAL)进行实验设计,有两个因素:气流(2 LPM、4 LPM 和 6 LPM)和曝气时间(0 分钟、15 分钟、30 分钟、45 分钟和 60 分钟),每个因素重复两次。初始参数分析结果显示,pH 值为 8.02(碱性),温度值为 28°C,TDS 值为 1548.3 mg/L,TSS 值为 291 mg/L,DO 值为 0.1 mg/L,溶解铁(Fe2+)为 7.453 mg/L。经过研究发现,风险喷射器式微气泡曝气工艺能够增加工业废水中的溶解氧(DO)值并减少溶解铁(Fe2+),在 6 LPM 的气流下,60 分钟的溶解氧(DO)增加效果最好,能够将溶解氧(DO)增加到 2.40 mg/L。在 6 LPM 的气流中,溶解铁(Fe2+)值的降低效率最高,时间为 15 分钟,溶解铁值降低了 84.42%。
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