首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >The potential of Paulownia fortunei seedlings for the phytoremediation of manganese slag amended with spent mushroom compost
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The potential of Paulownia fortunei seedlings for the phytoremediation of manganese slag amended with spent mushroom compost

机译:在蘑菇堆肥的植物渣植物修复植物修复的潜力

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摘要

The use of phytoremediation was an efficient strategy for the restoration of mine slag and the addition of modifier was favorable for improving the phytoremediation efficiency. Herein, spent mushroom compost (SMC) was added in manganese (Mn) slag to reveal the phytoremediation potential of Paulownia fortunei seedlings. The transportation, subcellular distribution and chemical forms of Mn in P. fortunei, the diurnal variation of photosynthesis and antioxidant enzyme activities in P. fortunei leaves were measured to reveal the effect of SMC (mass ratios of 10%, M+) on the phytoremediation of Mn slag. Results showed that the addition of SMC increased the accumulation content of Mn by 408.54% due to the increased biomass of P. fortunei seedlings. After SMC amendment, the maximum net photosynthetic rate (Pn) increased and the superoxide dismutase (SOD) activities decreased significantly (p < 0.05), which was beneficial to the tolerance of leaves to Mn stress. SMC amendment maintained the cell structural integrity of P. fortunei seedlings observed by transmission electron microscope (TEM). Additionally, SMC amendment decreased the damage level of Mn to the cell of P. fortunei seedlings by using function groups (-CH3 and -COOH) to bond Mn in the cell walls and vacuoles. SMC amendment reduced the Mn toxicity to P. fortunei seedlings and improved the phytoremediation capacity.
机译:使用植物修复是恢复矿渣的有效策略,添加改性剂的加入是有利于改善植物修复效率的。在此,在锰(Mn)渣中加入了蘑菇堆肥(SMC),以揭示Paulownia Fortunei幼苗的植物修复潜力。 P. Fortunei中Mn的运输,亚细胞分布和化学形式,测量了P. Fortunei叶片的光合作用和抗氧化酶活性的昼夜变化,揭示了SMC(质量比,M +)对植物修复的影响渣。结果表明,由于P. Fortunei幼苗的生物量增加,SMC的增加将Mn的累积含量增加了408.54%。在SMC修正案之后,增加净光合速率(PN)和超氧化物歧化酶(SOD)活性显着降低(P <0.05),这有利于叶片对Mn应激的耐受性。 SMC修正案维持了通过透射电子显微镜(TEM)观察到的P. Fortunei幼苗的细胞结构完整性。另外,SMC修正通过使用用函数基团(-CH3和-COOH)在细胞壁和真空中键合Mn,使MN的损伤水平降低到P. Fortunei幼苗的细胞。 SMC修正案将Mn毒性降低到Fortunei幼苗并改善植物化能力。

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