Singh Divya, Kumar Arun
Department of Civil Engineering, Indian Institute of Technology Delhi, New Delhi, India.
Bull Environ Contam Toxicol. 2016 Oct;97(4):548-53. doi: 10.1007/s00128-016-1872-x. Epub 2016 Jul 1.
Wastewater reuse is an important adaptation option for mitigating water stress in rapidly growing urban centers. Reuse potential of nanoparticles (NPs) contaminated wastewater for irrigation of Spinacia oleracea grown in soil media were assessed in this study. Irrigation of plant were done with water containing CuO and ZnO NPs as single compound and in binary mixture (10, 100, 1000 mg/L) till 11 weeks. At 1000 mg/L, reduction in root length: 16 %, 12 % and 18 %, shoot length: 22 %, 16 % and 27 %, total weight 37 %, 27 % and 45 %, chlorophyll: 18 %, 7 % and 29 % and carotenoids: 46 %, 33 % and 54 % were found for CuO NPs, ZnO NPs and binary mixture of NPs respectively. Uptake values were found to be 5.65 ± 0.8 Zn(2+) and 3.48 ± 0.75 Cu(2+) mg/g for the case of ZnO and CuO NPs respectively (at 1000 mg/L). For mixture of NPs, uptake of 3.18 ± 1.05 mg/g of Cu(2+) and 3.18 ± 1.05 mg/g of Zn(2+) ions were found. The results shows that water containing low concentration of NPs (10 mg/L) can be used for irrigating spinach grown in soil media as no significant toxic effect on growth and uptake of metal ion were found as compared to control. The results of this study evaluated the suitability of reusing water contaminated with NPs in agriculture. Further studies are however required to understand the toxic mode of action of mixture of NPs on growth and uptake mechanisms.
废水回用是缓解快速发展的城市中心地区用水压力的一项重要适应措施。本研究评估了受纳米颗粒(NPs)污染的废水用于灌溉土壤介质中生长的菠菜的回用潜力。用含有氧化铜和氧化锌纳米颗粒的单一化合物以及二元混合物(10、100、1000毫克/升)对植物进行灌溉,持续11周。在1000毫克/升时,氧化铜纳米颗粒、氧化锌纳米颗粒和纳米颗粒二元混合物的根长分别减少16%、12%和18%,茎长分别减少22%、16%和27%,总重量分别减少37%、27%和45%,叶绿素分别减少18%、7%和29%,类胡萝卜素分别减少46%、33%和54%。在1000毫克/升的情况下,氧化锌和氧化铜纳米颗粒的吸收值分别为5.65±0.8锌离子毫克/克和3.48±0.75铜离子毫克/克。对于纳米颗粒混合物,发现铜离子吸收量为3.18±1.05毫克/克,锌离子吸收量为3.18±1.05毫克/克。结果表明,含有低浓度纳米颗粒(10毫克/升)的水可用于灌溉土壤介质中生长的菠菜,因为与对照相比,未发现对生长和金属离子吸收有显著毒性作用。本研究结果评估了农业中回用受纳米颗粒污染的水的适用性。然而,还需要进一步研究以了解纳米颗粒混合物对生长和吸收机制的毒性作用模式。