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生物炭与二氧化钛纳米颗粒共同施用对促进土壤中锑修复的作用:金属吸收与植物响应

Co-application of biochar and titanium dioxide nanoparticles to promote remediation of antimony from soil by : metal uptake and plant response.

作者信息

Daryabeigi Zand Ali, Tabrizi Alireza Mikaeili, Heir Azar Vaezi

机构信息

School of Environment, College of Engineering, University of Tehran, No. 25, Azin St., 141556135 Tehran, Iran.

Department of Environmental Sciences, Gorgan University of Agricultural Sciences & Natural Resources, Shahid Beheshti St., 4913815739 Golestan, Iran.

出版信息

Heliyon. 2020 Aug 10;6(8):e04669. doi: 10.1016/j.heliyon.2020.e04669. eCollection 2020 Aug.

Abstract

Association of titanium dioxide nanoparticles (TiO NPs) and biochar (BC) to assist phytoremediation of Sb contaminated soil was investigated in this study. Seedlings of were exposed to different regimes of TiO NPs (0, 100, 250 and 500 mg kg) and BC (0, 2.5% and 5%), separately and in combination, to investigate the effects on plant growth, Sb absorption and accumulation and physiological response of the plant in Sb contaminated soil. Co-application of TiO NPs and BC had positive effects on plant establishment and growth in contaminated soil. Greater accumulation of Sb in the shoots compared to the roots of was observed in all treatments. Application of BC increased immobilization of Sb in the soil. Using TiO NPs significantly increased accumulation capacity of for Sb with the greatest accumulation capacity of 1624.1 μg per pot achieved in "250 mg kg TiO NPs+2.5% BC" treatment (P < 0.05). Association of TiO NPs and BC significantly increased chlorophyll (Chl ) and chlorophyll (Chl ) contents of compared to the TiO NPs-amended treatments. Results of this study presented a promising novel technique by combined application of TiO NPs and BC in phytoremediation of Sb contaminated soils. Co-application of TiO NPs and BC could reduce the required amounts of TiO NPs for successful phytoremediation of heavy metal polluted soils. Intelligent uses of plants in accompany with biochar and nanomaterials have great application prospects in dealing with soil remediation.

摘要

本研究考察了二氧化钛纳米颗粒(TiO NPs)与生物炭(BC)联合用于辅助修复锑污染土壤的效果。将[植物名称]幼苗分别暴露于不同剂量的TiO NPs(0、100、250和500 mg/kg)和BC(0、2.5%和5%)单独及联合处理下,以研究其对锑污染土壤中植物生长、锑吸收积累及植物生理响应的影响。TiO NPs与BC联合施用对污染土壤中植物的定植和生长具有积极作用。在所有处理中,均观察到[植物名称]地上部分的锑积累量高于根部。施用BC增加了土壤中锑的固定。使用TiO NPs显著提高了[植物名称]对锑的积累能力,在“250 mg/kg TiO NPs + 2.5% BC”处理中达到最大积累量1624.1 μg/盆(P < 0.05)。与仅施用TiO NPs的处理相比,TiO NPs与BC联合施用显著提高了[植物名称]叶绿素a(Chl a)和叶绿素b(Chl b)的含量。本研究结果表明,TiO NPs与BC联合应用于锑污染土壤植物修复是一种有前景的新技术。TiO NPs与BC联合施用可减少重金属污染土壤植物修复成功所需的TiO NPs用量。植物与生物炭和纳米材料协同的智能利用在土壤修复方面具有广阔的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/810b/7419332/7dc33290b6da/gr1.jpg

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