铜(Cu)和铬(Cr)对绿豆生长的毒性试验豆芽

S. Astuti, A. P. Nugroho
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摘要

快速发展的工业在环境污染中起着很大的作用,其中之一是重金属废物的产生。大量存在时有毒的重金属的一个例子是铜(Cu)和铬(Cr)。本实验的目的是测试两种重金属Cu和Cr对辐射维纳(Vigna radiata L.)植物种子生长的毒性,找出对辐射维纳(Vigna radiata L.)生长抑制百分比最高的金属类型,并找出两种重金属之间的关系。确定毒性水平的方法和两种金属之间的关系可以通过毒性试验了解,毒性试验包括对辐射弧菌种子的初步试验、实际试验和混合试验,数据分析采用线性回归方法,并以表格和图表的形式提供数据。初步试验确定将Cu和Cr金属毒素添加到辐射草种子中进行实际试验的理想毒性浓度范围,对实际试验的研究结果表明,Cu金属的IC50为127.4 ppm, Cr金属的IC50为615.23 ppm,其中Cu金属的负面影响比Cr更为显著。结果表明,Cu金属IC50为247.5 ppm, Cr金属IC50为579.85 ppm, Cu:Cr浓度为90:10时抑菌效果最好。基于可加性指标的Cu和Cr的毒性关系为可加性(S = 0)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Toxicity Test of Copper (Cu) and Chromium (Cr) on the Growth of Mung Bean (Vigna radiata L.) Sprouts
Industries that are growing rapidly contribute a big role in environmental pollution, one of which is the production of heavy metal waste. One example of heavy metals that are toxic when present in large quantities is Copper (Cu) and Chromium (Cr). The purpose of this experiment is to test the toxicity of the two types of heavy metals Cu and Cr against the seed growth of the Vigna radiata L. plant, find out the type of metal that gives the highest percentage of inhibition to the growth of V. radiata L., and find out the relationship between the two types of heavy metals. The method to determine the level of toxicity and the relationship between the two metals can be known by toxicity tests which include preliminary tests, actual tests and mixed tests on the seeds of V. radiata L. while data analysis is carried out by linear regression and the data is presented in the form of tables and graphs. Preliminary test to determine the ideal range of toxicity concentrations to be continued with the actual test with the addition of Cu and Cr metal toxins to the seeds of V. radiata L. The results of the study on the actual test showed that the IC50 of Cu metal was 127.4 ppm while the IC50 of Cr metal was 615.23 ppm with Cu metal having a more significant negative impact than Cr. In the mixed test, it showed that Cu metal IC50 was 247.5 ppm while Cr metal IC50 was 579.85 ppm with the highest inhibition value at Cu:Cr concentration of 90:10. The toxicant relationship of Cu and Cr based on the additive index is the additive (value S = 0).
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