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将用于植物修复的受污染植物用于厌氧消化。

Using contaminated plants involved in phytoremediation for anaerobic digestion.

作者信息

Cao Zewei, Wang Shengxiao, Wang Ting, Chang Zhizhou, Shen Zhenguo, Chen Yahua

机构信息

a College of Life Sciences , Nanjing Agricultural University , Nanjing , China.

出版信息

Int J Phytoremediation. 2015;17(1-6):201-7. doi: 10.1080/15226514.2013.876967.

Abstract

This study investigated the anaerobic digestion capability of five plants and the effects of copper (Cu) and S,S'-ethylenediaminedisuccinic acid (EDDS, a chelator widely used in chelant-assisted phytoremediation) on biogas production to determine a feasible disposal method for plants used in remediation. The results showed that in addition to Phytolacca americana L., plants such as Zea mays L., Brassica napus L., Elsholtzia splendens Nakai ex F. Maekawa, and Oenothera biennis L. performed well in biogas production. Among these, O. biennis required the shortest period to finish anaerobic digestion. Compared to normal plants with low Cu content, the plants used in remediation with increased Cu levels (100 mg kg(-1)) not only promoted anaerobic digestion and required a shorter anaerobic digestion time, but also increased the methane content in biogas. When the Cu content in plants increased to 500, 1000, and 5000 mg kg(-1), the cumulative biogas production decreased by 12.3%, 14.6%, and 41.2%, respectively. Studies also found that EDDS conspicuously restrained biogas production from anaerobic digestion. The results suggest that anaerobic digestion has great potential for the disposal of contaminated plants and may provide a solution for the resource utilization of plants used in remediation.

摘要

本研究调查了五种植物的厌氧消化能力以及铜(Cu)和S,S'-乙二胺二琥珀酸(EDDS,一种在螯合剂辅助植物修复中广泛使用的螯合剂)对沼气生产的影响,以确定修复中使用的植物的可行处置方法。结果表明,除了美洲商陆外,玉米、甘蓝型油菜、海州香薷和月见草等植物在沼气生产方面表现良好。其中,月见草完成厌氧消化所需时间最短。与铜含量低的正常植物相比,铜含量增加(100 mg kg(-1))的修复用植物不仅促进了厌氧消化,所需厌氧消化时间更短,而且还提高了沼气中的甲烷含量。当植物中的铜含量增加到500、1000和5000 mg kg(-1)时,累计沼气产量分别下降了12.3%、14.6%和41.2%。研究还发现,EDDS显著抑制了厌氧消化产生的沼气。结果表明,厌氧消化在处理受污染植物方面具有巨大潜力,并可能为修复中使用的植物的资源利用提供解决方案。

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