Study on The Potential Contamination of Heavy Metals: Analysis of Cr and Pb Contents From Power Plants in Indonesia Using the Batch Leaching Method

Farrah Fadhillah Hanum, Siti Salamah, Ahmad Rifai Sanuhung, Budi Setya Wardhana
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Abstract

Coal ash, stemming from the combustion process in power plants, emerges as a potential pollution source due to its metal content. Recognized for housing various metals with environmental contamination potential, this study meticulously delves into the metal analysis of chromium (Cr) and lead (Pb) within four distinct samples of fly ash (FA) and bottom ash (BA) sourced from diverse coal-fired power plants across Indonesia. Employing the batch leaching method, the coal ash samples (FABA) underwent a 6-hour immersion in deionized water, replicating environmental scenarios akin to rainwater interaction with coal ash at disposal sites. XRF analysis scrutinized the chemical composition of each sample, while the leaching filtrate underwent analysis via pH meter and AAS to ascertain pH values and the concentrations of Pb and Cr. Results unveiled a substantial pH variation in the leachate, fluctuating from the initial deionized water pH of 7.00 to a range between 6.86 and 9.18. Notably, subsequent leaching indicated undetectable concentrations of Pb in all samples, with most exhibiting low Cr concentrations post-leaching, except for FA-2, FA-4, and BA-4, which displayed modest Cr concentrations. The scarcity or low concentrations of Pb and Cr post-leaching suggest an efficacious process inhibiting heavy metal release. This study offers profound insights into the chemical intricacies of coal ash, underlining its potential environmental ramifications. The absence of detectable heavy metal concentrations post-leaching underscores a minimal risk of environmental pollution, underscoring the imperative to comprehend the chemical reactions intrinsic to the leaching process for optimal waste management strategies.
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重金属潜在污染研究:使用批次浸出法分析印度尼西亚发电厂的铬和铅含量
发电厂燃烧过程中产生的煤灰因其金属含量而成为潜在的污染源。本研究对来自印度尼西亚不同燃煤发电厂的四种不同的飞灰(FA)和底灰(BA)样本中的铬(Cr)和铅(Pb)进行了细致的金属分析。采用分批浸出法,将煤灰样品(FABA)在去离子水中浸泡 6 小时,复制了类似于雨水与处置场地煤灰相互作用的环境情景。XRF 分析仔细检查了每个样品的化学成分,而浸出滤液则通过 pH 计和 AAS 进行分析,以确定 pH 值以及铅和铬的浓度。结果显示,沥滤液的 pH 值变化很大,从最初去离子水的 7.00 到 6.86 到 9.18 之间。值得注意的是,随后的沥滤结果表明,所有样本中的铅浓度都检测不到,除 FA-2、FA-4 和 BA-4 的铬浓度较低外,大多数样本在沥滤后都显示出较低的铬浓度。浸出后铅和铬的稀少或低浓度表明,重金属的释放受到了有效的抑制。这项研究深刻揭示了煤灰化学的复杂性,强调了其潜在的环境影响。浸出后未检测到重金属浓度,这表明环境污染的风险极低,同时也强调了了解浸出过程中固有的化学反应以优化废物管理策略的必要性。
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