在处理酸性矿井排水时将生物炭与沉积物相结合,以提高硫酸盐和重金属铅的还原效果

Q3 Social Sciences
Fahruddin Fahruddin, Y. F. Syahri, St. Fauziah, Muhammad Farid Samawi, Eva Johannes, E. Tambaru, Mustika Tuwo, As’adi Abdullah
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引用次数: 0

摘要

日益增多的采矿活动导致了酸性矿井排水(AMD)污染问题。将生物炭处理作为吸附剂与湿地沉积物处理作为硫酸盐还原菌来源相结合的方法可有效解决 AMD 问题。本研究旨在确定生物炭与湿地沉积物处理相结合降低酸性矿井排水废水中硫酸盐和重金属含量的能力。这项研究是在实验室规模的酸性矿山排水废水处理反应器中进行的,生物炭与湿地沉积物的混合处理方法如下。观察指标包括硫酸盐含量、pH 值和重金属含量。此外,还对生物炭进行了扫描电子显微镜(SEM)分析。扫描电子显微镜观察结果显示,生物炭表面存在细小、密集且形状不规则的孔隙。第 30 天的结果显示,与湿地沉积物混合的生物炭能够将硫酸盐浓度降低 74.19%,将铅降低 73.79%,而处理沉积物仅将硫酸盐浓度降低 64.81%,将铅降低 53.85%,处理生物炭仅将硫酸盐浓度降低 46.90%,将铅降低 58.67%,对照组的硫酸盐浓度为 1.79%,将铅降低 1.87%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combining biochar with sediment in the treatment for the effectiveness of sulfate and heavy metal Pb reduction of acid mine drainage
The increasing mining activities have led to the problem of acid mine drainage (AMD) pollution. A method that combines biochar treatment as an adsorbent with wetland sediment treatment as a source of sulfate-reducing bacteria is used to address AMD effectively. This research aimed to determine the ability of biochar in combination with wetland sediment treatment to reduce sulfate and heavy metal content in acid mine drainage wastewater. This research was conducted on a laboratory scale in an AMD wastewater treatment reactor with the following treatments of biochar mixed with wetland sediment. Observations included sulfate content, pH, and heavy metal content. Scanning electron microscope (SEM) analysis was also performed on the biochar. SEM observations revealed the presence of small, dense, and irregularly shaped pores on the surface of the biochar. The results on day 30 showed that biochar mixed with wetland sediment was able to reduce sulfate concentration by 74.19% and reduced Pb by 73.79%, compared with treatment sediment only to 64.81% sulfate concentration and reduced Pb by 53.85%, treatment biochar only had reduced sulfate of 46.90% and reduced Pb by 58.67% and control 1.79% sulfate concentration and reduced Pb by 1.87%.
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来源期刊
Journal of Degraded and Mining Lands Management
Journal of Degraded and Mining Lands Management Environmental Science-Nature and Landscape Conservation
CiteScore
1.50
自引率
0.00%
发文量
81
审稿时长
4 weeks
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