乌克兰能源作物使用的植物修复方面

M. Kulyk, M. Galytska, M. S. Samoylik, I. Zhornyk
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引用次数: 7

摘要

引用本文:Kulyk,M.I.、Galytska,M.A.、Samoylik,M.S.和Zhornyk,I.I.(2019)。乌克兰能源作物使用的植物修复方面。农学,2(1),65-73。doi:10.32819/2617-6106.2018.14020摘要。如今,清除受污染土壤中的重金属和农药残留对乌克兰来说是一个非常重要的问题。土壤污染被认为是冶金和化工企业运作的结果,也是农业部门不合理应用化学植物保护手段的结果。这种制剂的范围以及受污染土壤的面积每年都在增加。利用草本植物进行植物修复是最有效的去污方法之一。这份植物清单应该补充多年生能源作物,考虑到其根系的吸收能力。编写材料的基础是国内外科学家对某一调查主题的多种科学文献来源、相关技术的制定以及科学实用的建议。我们运用了一般的科学方法(辩证法、分析法和综合法)和特殊的科学方法对文献进行分析性评述。乌克兰最大面积的土壤被钴、钼和铜污染,其含量不仅超过了背景值,还超过了最大允许浓度(MPC)。定义了能源作物“土壤-植物”系统中重金属迁移的强度具有以下形式的Cd→Cu→Zn→Pb。多年生能源作物能够迅速形成地上植物群,并形成具有攻击性的根系,使其能够从土壤中积累重金属。它们可以成为植物修复的新的重要植物。同时,能源作物的分配是根据农业气候区划进行的,考虑到植物对生长条件的反应,并采用重金属土壤修复方案。已经确定能源作物(Switchgrass和Silvergrass)是超级蓄能器。它们积极吸收重金属,并将其部分积累在地下和地上部分。银草(Miscanthus giganteus)的产量高于柳枝稷(Panicum virgatum),尽管柳枝稷草的干物质含量较低,重金属在植物群落中的积累较高,但最大允许浓度低于规定标准。银草(Miscanthus giganteus)比柳枝稷(Panicum virgatum)产量更高,尽管柳枝稷的干物质含量更低,重金属在植物群落中的积累更高,最大允许浓度低于规定标准。植被终止后,这些植物的地上植被可以进行适当的加工,这是有色金属或用于能源目的的生物燃料生产的额外来源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phytoremediation aspects of energy crops use in Ukraine
Cite this article: Kulyk, M. I., Galytska, M. A., Samoylik, M. S., & Zhornyk, I. I. (2019). Phytoremediation aspects of energy crops use in Ukraine. Agrology, 2(1), 65‒73. doi: 10.32819/2617-6106.2018.14020 Abstract. Today clearing of contaminated soils from heavy metals, pesticide residues is very important problem for Ukraine. Soil pollution is considered to be the result of the functioning of metallurgical and chemical industrial enterprises, as well as the irrational application of chemical plant protection means in the agricultural sector. The range of such preparations as well as the areas of contaminated soils are increasing every year. Phytoremediation with the help of herbaceous plants is one of the most effective methods of decontamination. This list of plants should be supplemented by perennial energy crops, taking into account the absorbing powers of their root system. The basis for preparing the material was the multiple scientific literary sources of domestic and foreign scientists on an investigated theme, the workingout of relevant techniques and scientific and practical recommendations. We applied both general scientific methods (dialectics, analysis and synthesis) and special ones for conducting of analytical review of literature. The largest area of soil in Ukraine is contaminated with cobalt, molybdenum, and copper, whose content exceeds not only the background values but also the maximum permissible concentrations (MPC). It has been defined that the intensity of heavy metals transition in the system “soil-plant” of the energy crops has the following form Cd→Cu→Zn→Pb. Perennial energy crops are capable to create quickly an above ground phytomass and to form an aggressive root system that enables them to accumulate heavy metals from the soil. They can be new and important plants for phytoremediation. At the same time, the energy crops are allocated in accordance with agroclimatic zoning taking into account plant responses to the growing conditions and also applying the scheme of soil remediation from heavy metals. It has been established that energy crops (Switchgrass and Silvergrass) are Hyperaccumulators. They actively absorb heavy metals and partialy accumulate them in their underground and above ground parts. Silvergrass (Miscanthus giganteus) provides higher yield than switchgrass (Panicum virgatum), though switchgrass has less dry matter content, higher accumulation of heavy metals in plant phytomass but the maximum permissible concentration is lower than regulated standards. Silvergrass (Miscanthus giganteus) provides higher yield than switchgrass (Panicum virgatum), though switchgrass has less dry matter content, higher accumulation of heavy metals in plant phytomass and maximum permissible concentration is lower than regulated standards. On termination of the vegetation, the above-ground vegetative mass of these plants can undergo to proper processing that is an additional source of nonferrous metals or biofuel production for energy purposes.
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