首页> 外文会议>NATO Advanced Research Workshop on Use of Humates to Remediate Polluted Environments: From Theory to Practice; 20020923-29; Zvenigorod(RU) >IMPACT OF HUMIC SUBSTANCES ON PLANTS IN POLLUTED ENVIRONMENTS: IMPLICATIONS FOR PHYTOREMEDIATION TECHNOLOGIES
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IMPACT OF HUMIC SUBSTANCES ON PLANTS IN POLLUTED ENVIRONMENTS: IMPLICATIONS FOR PHYTOREMEDIATION TECHNOLOGIES

机译:腐殖质对植物在污染环境中的影响:对植物修复技术的影响

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There is a great variety of soil types in Ukraine. Recently, some industrial regions of the country have encountered the problem of soil degradation due to technogenic pollution. Technogenic soil contamination with heavy metals has been found in the mining and metallurgical regions in the southeast part of Ukraine. Within Ukraine, 79% of all atmospheric emissions occur in the Donetsk-Pridneprovsky region. In the Dnepropetrovsk region, the concentration of mining and metallurgical production exceeds average indexes 7 to 10 times. The zone of radioactive anomaly caused by the Chernobyl disaster is characterized by complex pollution of the environment. The objective of our work was to elaborate methods of soil detoxification with humates and to reduce the risk of plant contamination with heavy metals, radionuclides, and herbicides. Studies aimed to decrease the negative impact from industrial pollution of soils by heavy metals and radionuclides were conducted in the areas of industrial air and soil pollution in various areas of Ukraine. At the same time the risk of increased total toxicity from the combination of heavy metals and some herbicides presented in the local soils was also taken into account. In the laboratory experiment a humic preparation "huminate" promoted benzoxazinones formation in the barley. Benzoxazinones formation further led to a 20% decrease of atrazine content in the seedlings. Introduction of humate preparation into the soil reduced also atrazine concentration to the trace concentrations. The protective action of peat, coal-derived humates and biohumus in relation to toxicity of heavy metals to plants was also studied. A combination of two kinds of trials (introduction in soil and treatment of seeds before planting) for humic substance application led, as a rule, to increase of the barley productivity. The introduction of the vermicompost product (biohumus) into the soil reduced the negative heavy metals impact and the atrazine after-effect on barley growth. In particular, the introduction of biohumus and preliminarily processed poultry dung into the soil increased the barley yield by 12-27%.
机译:乌克兰土壤种类繁多。最近,该国的一些工业区遇到了由于技术污染造成的土壤退化问题。在乌克兰东南部的采矿和冶金地区发现了重金属引起的技术性土壤污染。在乌克兰内部,所有大气排放的79%发生在顿涅茨克-普列涅普罗夫斯基地区。在第聂伯罗彼得罗夫斯克地区,采矿和冶金生产的集中度超过平均指标的7到10倍。切尔诺贝利灾难造成的放射性异常区的特征是对环境的复杂污染。我们工作的目的是精心设计使用腐殖酸盐为土壤排毒的方法,并减少植物被重金属,放射性核素和除草剂污染的风险。旨在减少乌克兰各地区工业空气和土壤污染领域的研究旨在减少重金属和放射性核素对土壤工业污染的不利影响。同时,还考虑了在当地土壤中存在的重金属和某些除草剂的组合会增加总毒性的风险。在实验室实验中,腐殖制剂“腐殖酸盐”促进了大麦中苯并恶嗪酮的形成。苯并恶嗪酮的形成进一步导致幼苗中at去津含量降低20%。将腐殖酸盐制剂引入土壤也将阿特拉津的浓度降低至痕量浓度。还研究了泥炭,煤腐殖质和生物腐殖质对重金属对植物毒性的保护作用。通常,将两种腐殖质试验(引入土壤和播种前的种子处理)结合起来,可以提高大麦的生产率。将mi杂产品(生物腐殖质)引入土壤可减少对重金属的负面影响以及the去津对大麦生长的后效应。特别地,将生物腐殖质和预先加工的家禽粪便引入土壤可使大麦产量提高了12-27%。

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