利用水葫芦处理萨西兰干纺织工业废水的植物修复工艺研究

Megayulia Nooryaneti, C. Irawan, A. Tuhuloula
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引用次数: 0

摘要

纺织业,包括萨西兰甘纺织业,每年都在增长,产生大量的液体废物。一般情况下,这些废水未经处理就排放到环境中,成为环境污染源。因此,减少这些污染物是至关重要的。各种方法,不仅是物理和化学方法,还有生物方法,都可以用来修复废水。植物修复为废水修复提供了一种经济、环保和美观的解决方案。本研究旨在利用风信子植物作为植物修复剂,并确定其在减少Sasirangan纺织工业液体废物中的总悬浮固体和颜色方面的效果。这项研究从制备风信子植物开始。接下来,利用FTIR和SEM对水葫芦根系进行了表征。最后,对水葫芦进行了驯化,并进行了为期15天的植物修复。基于对水葫芦根的FTIR表征结果,表明水葫芦根含有官能团O-H应变、C-H振动、C=O应变、C-H-变形和C-O拉伸。扫描电镜观察表明,风信子的根系极为疏松,具有气孔。然而,它的空腔是纤维素中的孔隙。总悬浮固体在植物修复9天时显著下降,为54mg/L(去除率为71.12%)。在植物修复的9天内,最佳的颜色减少是81.5PtCo(92.26%的去除率)。通过对总悬浮固体和颜色的分析,这些官能团和孔隙的存在得到了加强,表明风信子可以降低Sasirangan纺织废水中总悬浮固体的水平和颜色。
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Phytoremediation Processes of Sasirangan Textile Industrial Wastewater Treatment using Water Hyacinth
The growth of the textile industry, including the Sasirangan textile industry, is increasing yearly, producing large amounts of liquid waste. Generally, this wastewater is discharged into the environment without treatment, becoming a source of environmental pollution. Therefore, it is crucial to reduce these pollutants. Various methods, not only physical and chemical but also biological methods, are available to remediate wastewater. Phytoremediation has provided an economical, environmentally friendly, and aesthetic solution to remediate wastewater. This study aimed to utilize the Water Hyacinth plant as a phytoremediator and determine its effect in reducing Total Suspended Solid and colors in the liquid waste of the Sasirangan textile industry. This research begins by preparing Water Hyacinth plants. Next, the characterization of Water Hyacinth roots using FTIR and SEM. Finaly, the acclimatization of water Hyacinth, followed by a phytoremediation process for 15 days. Based on the results of the characterization of Water Hyacinth roots with FTIR, it shows that Water Hyacinth roots contain functional groups O-H strain, C-H vibrations, C=O strain, C-H deformation, and C-O stretching. Observations with SEM showed that the roots of Water Hyacinth were extremely unstructured and had pores. However, it has cavities which are pores in cellulose. The significant decrease in Total Suspended Solid was at 9 days of phytoremediation, which was 54 mg/L (71.12% removal). The optimum color reduction within 9 days of phytoremediation was 81.5 PtCo (92.26% removal). The presence of these functional groups and pores, strengthened by the analysis of Total Suspended Solid and colors, showed that Water Hyacinth could reduce levels of Total Suspended Solids and colors in the Sasirangan textile wastewater.
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CiteScore
0.80
自引率
0.00%
发文量
15
审稿时长
24 weeks
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