首页> 外文期刊>American-Eurasian Journal of Agricultural and Environmental Sciences >Effect of biochar application on soil properties and nutrient uptake of lettuces (Lactuca sativa) grown in chromium polluted soils.
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Effect of biochar application on soil properties and nutrient uptake of lettuces (Lactuca sativa) grown in chromium polluted soils.

机译:生物炭施用对铬污染土壤中生长的莴苣(莴苣)的土壤特性和养分吸收的影响。

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摘要

The leather industry sector is one of the leading industries playing a significant role in the generation of foreign currency in Ethiopia. However, the environmental management for this industry is generally ignored. As a result, chromium (Cr) accumulates in vegetable tissues at toxic concentrations. The present pot experiment was therefore conducted to investigate the effect of biochar application on the selected properties of chromium polluted soils and uptake of lettuces grown in polluted soils. Biochar produced from maize stalk was applied at the rates of 0, 5 and 10 t/ha on soils artificially polluted with Cr at the levels of 0, 10 and 20 ppm. The study showed a significant (P<0.01) increase in pH, electrical conductivity, organic carbon, total nitrogen, available phosphorous, cation exchange capacity and exchangeable bases due to application of biochar. Moreover, uptake of nitrogen, phosphorous and potassium were significantly (P<0.01) increased by addition of biochar. A significant (P<0.01) reduction in the uptake of Cr due to application of biochar was also observed in heavily Cr polluted soils (20 ppm). Therefore, application biochar is very imperative to increase soil fertility, enhance nutrient uptake, ameliorate Cr polluted soils and reduce the amount of carbon produced due to biomass burning.
机译:皮革工业是埃塞俄比亚在产生外汇中发挥重要作用的主要工业之一。但是,该行业的环境管理通常被忽略。结果,铬(Cr)以有毒浓度积累在蔬菜组织中。因此,进行了本盆试验,以研究生物炭施用对铬污染土壤的选定特性和在污染土壤中生长的生菜的吸收的影响。将玉米秸秆产生的生物炭以0、5和10 t / ha的比例施用到人工污染的Cr含量为0、10和20 ppm的土壤上。研究表明由于生物炭的应用,pH,电导率,有机碳,总氮,有效磷,阳离子交换容量和可交换碱显着(P <0.01)增加。此外,添加生物碳显着增加了氮,磷和钾的吸收(P <0.01)。在重铬污染的土壤(20 ppm)中,由于施用生物炭,还导致铬的吸收显着降低(P <0.01)。因此,施用生物炭对于提高土壤肥力,增加养分吸收,改善Cr污染的土壤并减少由于生物质燃烧而产生的碳量非常必要。

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