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Mediational influence of spent mushroom compost on phytoremediation of black-oil hydrocarbon polluted soil and response of Megathyrsus maximus Jacq

机译:用过的蘑菇堆肥对黑油碳氢化合物污染土壤的植物修复和最大麦加(Megathyrsus maximus Jacq)响应的中介影响

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摘要

Ability of a plant to develop different adaptive strategies can also determine its capability for effective soil remediation. In this study, influence of spent mushroom compost (SMC) was tested on the phytoremediation of black oil hydrocarbon polluted soil and the response of Megathyrsus maximus (guinea grass). Studies were carried out in microcosm conditions by mixing different concentration of SMC viz., 10, 20, 30 and 40% in a 5 kg of contaminated soil along with control. Seeds of M. maximus was sown in tray for two weeks and allowed to grow for height of 10 cm and transplanted in to the different experimental pots. Soil nutrient, heavy metal and PAH contents were analyzed before and after the experiment Ecophysiological and anatomical responses due to the contaminants in the soil by M. Maximus were analyzed after 120 days. Phytomass efficiency, potential photosynthesis (Amax) and contents of chlorophylls (a and b) as well as the total chlorophyll along with anatomical evaluations were recorded. Plant alone (control) reduced the soil heavy metal and PAH contents but further improvements were observed in SMC treatments, similar results were also observed as regards to the plant's phytoremediation efficiency (PE), phytomass and potential photosynthetic rates (m mol O_2 M~(-2)S~(-1)). The plant's root and shoot anatomical responses were enhanced in treatments compared to control, study infers that the treatment enhances the biostimulation and development of adaptive characteristics for M. maximus survival in contaminated soils and promotes its co-degradation of hydrocarbon. SMC supports remediation and as well enhances the anatomical evaluations, we therefore recommend the use of SMC on response of Megathyrsus maximus Jacq for remediation of petrochemical based phytoremediation.
机译:植物制定不同适应策略的能力也可以决定其有效土壤修复的能力。在这项研究中,测试了用过的蘑菇堆肥(SMC)对黑油烃污染土壤的植物修复和极大的Megathyrsus maximus(豚鼠草)的反应的影响。在微观条件下,通过将5%,10%,20%,30%和40%的不同浓度的SMC与5kg受污染的土壤混合,并与对照进行混合,进行了研究。在托盘中播种最大分枝杆菌的种子两周,使其生长至10厘米高,然后移植到不同的实验盆中。实验前后对土壤养分,重金属和PAH含量进行了分析。M。Maximus对120天后土壤中污染物的生态生理和解剖响应进行了分析。记录了植物的功效,潜在的光合作用(Amax)和叶绿素(a和b)的含量以及总叶绿素的含量,并进行了解剖学评估。单独的植物(对照)减少了土壤中的重金属和PAH含量,但在SMC处理中观察到了进一步的改善,在植物的植物修复效率(PE),植物的茎秆和潜在的光合作用速率(m mol O_2 M〜( -2)S〜(-1))。与对照相比,在处理中植物的根和茎解剖响应得到了增强,研究推断该处理增强了对受污染土壤中最大分枝杆菌存活的生物刺激和适应性的发展,并促进了其碳氢化合物的共降解。 SMC支持修复并增强了解剖学评估,因此我们建议使用SMC对巨型巨嘴猴(Megathyrsus maximus Jacq)的响应进行修复,以修复基于石化的植物修复。

著录项

  • 来源
    《Journal of Environmental Management》 |2017年第15期|253-262|共10页
  • 作者单位

    Food and Environmental Mycology/Biotechnology Unit, Department of Botany, University of Ibadan, Ibadan, Nigeria,Department of Environmental Sciences, COMSATS Institute of Information Technology, 22060, Abbottabad, Pakistan;

    Food and Environmental Mycology/Biotechnology Unit, Department of Botany, University of Ibadan, Ibadan, Nigeria;

    Plant Anatomy/Biosystematics Unit, Department of Botany, University of Ibadan, Ibadan, Nigeria;

    Department of Environmental Sciences, COMSATS Institute of Information Technology, 22060, Abbottabad, Pakistan;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    SMC; Megathyrsus maximus; Responses; Phytoremediation efficiency; Biological efficiency;

    机译:SMC;巨thy回应;植物修复效率;生物效率;

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