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Effects of modified carbon black nanoparticles on plant-microbe remediation of petroleum and heavy metal co-contaminated soils

机译:改性炭黑纳米粒子对石油和重金属共污染植物微生物修复的影响

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摘要

Little is known about the effect of modified carbon black nanoparticles (MNCB) on the availability of heavy metals and petroleum degradation in petroleum and heavy metals co-contaminated soils. The overall objective of this study was to investigate the simultaneous effect of MNCB on heavy metal immobilization and petroleum biodegradation in co-contaminated soil in plant and plant-microbe combined remediation. The results showed that the petroleum degradation increased by 50% in petroleum-Cd co-contaminated soil and 65% in petroleum-Ni co-contaminated soil in plant-microbe combined remediation, comparing with the plant remediation and the application of MNCB did not show significant improvement on petroleum degradation in both plant and plant-microbe combined remediation. MNCB could significantly reduce the availability of heavy metals in soil and the uptakes of Cd and Ni by Suaeda salsa by roughly 18 and 10% and improve the growth of plant by alleviating the growth inhibition caused by heavy metals. The application of Bacillus subtilis and Sphingobacterium multivorum (heavy metal tolerant bacteria) inhibited the biomass of Suaeda salsa by enhancing the petroleum degradation. It could be concluded that MNCB played a major role in immobilizing the heavy metals and bacteria dominated the petroleum degradation in petroleum-metal co-contaminated soil.
机译:关于改性炭黑纳米颗粒(MNCB)对石油和重金属共污染土壤重金属和石油降解的可用性的影响很少。本研究的总体目的是探讨MNCB对植物和植物微生物组合修复共污染土壤重金属固定和石油生物降解的同时发生。结果表明,石油降解在石油 - CD共污染土壤中增加了50%,植物微生物组合修复中的石油 - 镍尼共污染土壤65%,与植物修复相比,MNCB的应用未显示植物和植物微生物组合修复的石油降解显着改善。 MNCB可以显着降低土壤中重金属的可用性和Suaeda Salsa在CD和Ni的上升,约18%和10%,并通过减轻重金属引起的生长抑制来改善植物的生长。枯草芽孢杆菌和鞘孢菌素(重金属耐受性细菌)的应用通过增强石油降解来抑制Suaeda Salsa的生物质。可以得出结论,MNCB在固定重金属和细菌在石油金属共污染土壤中占据了石油降解的主要作用。

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