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Rhizofiltration of lead using an aromatic medicinal plant Plectranthus amboinicus cultured in a hydroponic nutrient film technique (NFT) system

机译:使用在水培营养膜技术(NFT)系统中培养的芳香药用植物侧柏(Plectranthus amboinicus)对根进行根际过滤

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摘要

Heavy metal contamination of water bodies and groundwater is a major concern of the modern world. Rhizofiltration-the use of plant root system to remove/ extract pollutants from wastewater-has proven advantages over conventional methods of treatment. However, commercialization of this in situ remediation technology requires a better understanding of plant-metal interactions especially on the ability of different plant species to accumulate metals at different parts of the plant system which is critical for the successful remediation of contaminated medium. Many aquatic and terrestrial plants have been reported to accumulate heavy metals when grown hydroponically. Therefore, a batch experiment with different concentrations of lead and a nutrient film technique (NFT) experiment with recycling of wastewater were employed in this study in order to investigate the rhizofiltration of lead-containing wastewater using Plectranthus amboinicus, an aromatic medicinal plant. Results show that P. amboinicus is tolerant to a wide range of lead concentrations and nutrient deficiency. The plant accumulates considerable amount of lead, particularly in the roots, and translocation to the stem and leaf was limited, indicating that the use of leaves/above-ground parts of the plant for medicinal purposes is not hindered by its ability to remove lead from the soil or water. The study also suggests that the plant can be considered for the clean-up of lead-contaminated wastewater in combination with safe biomass disposal alternatives.
机译:水体和地下水的重金属污染是现代世界的主要关注点。根际过滤(使用植物根系从废水中去除/提取污染物)已证明优于常规处理方法。然而,这种原位修复技术的商业化需要更好地了解植物与金属之间的相互作用,尤其是不同植物物种在植物系统不同部位积累金属的能力,这对于成功修复受污染的培养基至关重要。据报道,许多水生和陆地植物在水培生长时都会积累重金属。因此,本研究采用了不同铅浓度的批处理实验和营养膜技术(NFT)实验,对废水进行了循环利用,以研究使用芳香药用植物香花竹(Plectranthus amboinicus)对含铅废水进行根际过滤。结果表明,杆状假单胞菌可耐受多种铅浓度和营养缺乏。该植物积累了大量的铅,尤其是在根部,并且向茎和叶的转运受到限制,这表明该植物的叶子/地上部分用于药用目的不受其从植物中去除铅的能力的限制。土壤或水。研究还表明,可以考虑将工厂与安全的生物质处理替代品相结合来净化含铅废水。

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