生物炭、活性炭和微生物对降低镉和铅植物毒性的应用效果

Rahma A. Kotby, Hashem M. Mohamed, Hala H. Gomah, A. Usman
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摘要

本研究旨在从污水灌溉土壤中分离产酸菌(APB)。在发芽实验中,加入或不加入活性碳(AC)或生物炭(BC)的 0-1000 ppm 水平的镉和铅对玉米种子(Zea mays L.)发芽的影响,以及幼苗的鲜重和干重。此外,还进行了温室盆栽实验,研究 BC、AC 和芽孢杆菌(BA)对重金属污染土壤中玉米植株生长的影响。结果表明,细菌分离物 APB-1、APB-2、APB-3 和 APB-4 的增溶指数分别为 2.50、1.62、2.22 和 3.14。据观察,随着镉或铅剂量的增加,幼苗的生长参数下降,表明这些金属对种子发芽、幼苗长度、幼苗的新鲜物质和干物质有负面影响。镉对秧苗生长的毒性影响似乎大于铅。但在施用 AC 或 BC 时,有毒金属的毒性效应降低,从而改善了秧苗的生长。在温室盆栽实验中,施用 AC、BC 或 BA 能显著增加玉米的株高和干物质。可以得出结论,施用热解碳基材料或微生物接种可促进植物生长,这可能是由于改善了土壤质量和/或降低了重金属毒性。
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Application Effect of Biochar, Activated Carbon and Microorganisms on Reducing the Phytotoxicity of Cd and Pb
The objective of the current study was to isolate acid production bacteria (APB) from sewage wastewater-irrigated soil. The effect of Cd and Pb at levels of 0-1000 ppm with or without active carbon (AC) or biochar (BC) on the germination of corn seeds ( Zea mays L.), and seedlings fresh and dry weight were also examined in germination experiment. In addition, a greenhouse pot experiment was conducted to study the effects of BC, AC, and bacillus (BA) on plant growth of Zea mays in heavy metal contaminated soil. The results showed that the solubilization index for bacterial isolates of APB-1, APB-2, APB-3 and APB-4 was 2.50, 1.62, 2.22, and 3.14, respectively. It was observed that the growth parameters of seedlings decreased with increasing doses of Cd or Pb, showing negative effects of these metals on seeds germination, seedling length, and fresh and dry matter of seedlings. The toxicity effect of Cd appeared to be greater than Pb on the seedling’s growth. When applying AC or BC, however, the toxicity effect of toxic metals was reduced, which improved seedlings growth. In the greenhouse pot experiment, the application of AC, BC, or BA significantly increased the plant height and dry matter of maize shoots. It could be concluded that applying pyrolytic carbon-based materials or microbial inoculation enhanced plant growth and it may be due to improving soil quality and/or reducing heavy metals toxicity.
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