Application of heteroauxin in strengthening phytoremediation of polycyclic aromatic hydrocarbon contaminated soil

A technology of indole acetic acid and polycyclic aromatic hydrocarbons, which is applied in the field of contaminated soil remediation, can solve the problem of low efficiency of phytoremediation technology, and achieves the effects of low cost, simple technical process and good remediation effect.

Active Publication Date: 2013-05-15
NANJING AGRICULTURAL UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] The purpose of the present invention is to provide indole acetic acid-enhanced phytoremediation technology for po

Method used

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  • Application of heteroauxin in strengthening phytoremediation of polycyclic aromatic hydrocarbon contaminated soil
  • Application of heteroauxin in strengthening phytoremediation of polycyclic aromatic hydrocarbon contaminated soil
  • Application of heteroauxin in strengthening phytoremediation of polycyclic aromatic hydrocarbon contaminated soil

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0022] Embodiment 1 (hydroponic experiment):

[0023] Dissolve a certain amount of fluoranthene pollutants directly in the aqueous solution to prepare a fluoranthene aqueous solution with a final concentration of 0.265mg / L (25°C), and keep it in a dark place for later use. 10% H for ryegrass (Lolium multiflorumlam) seeds 2 o 2 Soak for half an hour, and when the ryegrass grows to about 10 cm, it is fixed in the fluoranthene aqueous solution. A total of four treatments were set up, namely Flu treatment (without adding IAA and not planting ryegrass), Flu+IAA treatment (only adding IAA without planting ryegrass), Flu+P treatment (only planting ryegrass without adding IAA) and Flu +P+IAA treatment (both planting ryegrass solution and adding IAA). After 8 days, water samples and ryegrass were collected for measurement and analysis to evaluate the restoration effect.

[0024] After 8 days, the reduction rate of total fluoranthene in each treatment medium was as follows: figure ...

example 2

[0025] Example 2 (soil cultivation experiment):

[0026] Dissolve fluoranthene in acetone solvent and mix evenly into 1000g of soil to make the concentration of fluoranthene reach 200mg / kg. Three treatments were set up, namely: CK treatment, P treatment of planting ryegrass and P+10 treatment of planting ryegrass and adding 2.4mg / kg IAA. Select uniform and plump ryegrass seeds, soak them in distilled water for 12 hours, select seeds with consistent dew and whiteness, sow them in P treatment and P+10 treatment pots and cultivate them, adjust the soil water content to 60% of the maximum water holding capacity, and cultivate them in the greenhouse three months. During this period, IAA was configured as 100 mg / L methanol (methanol content ≤ 1‰) aqueous solution and evenly sprayed on the soil surface treated with P+10. For treatment, add an equal amount of distilled water methanol solution (methanol content ≤ 1‰). After 90 days, the removal rates of fluoranthene in soil treated ...

example 3

[0027] Example 3 (soil cultivation experiment):

[0028] Add the acetone solution of phenanthrene to 100g of soil, let it stand overnight in a dark place with ventilation, and then mix it with 400g of non-polluting soil to make the final concentration of phenanthrene reach 100mg / kg (25°C). Three treatments were set up, namely: CK treatment, P treatment of planting ryegrass and P+10 treatment of planting ryegrass and adding 10mg / kg IAA. Select uniform and plump ryegrass seeds, soak them in distilled water for 12 hours, select uniform and white seeds and sow them in P and P+10 treatments, adjust the water content to 60% of the maximum water holding capacity of the soil, and cultivate them in an incubator for one month. During this period, IAA was configured as 0.075mg / L methanol (methanol content ≤ 1‰) aqueous solution and evenly sprayed on the surface of P+10 treated soil. In order to avoid natural degradation of IAA, the method of adding three times was adopted, CK treatment a...

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Abstract

The invention relates to the technical field of contaminated soil remediation, and discloses application of heteroauxin in strengthening phytoremediation of polycyclic aromatic hydrocarbon contaminated soil. The grass family is planted in soil contaminated by polycyclic aromatic hydrocarbon, and carbinol aqueous solution of heteroauxin is sprayed on the surface of the soil in the process of plant growth. After growing for 80-90 days, plant bodies are harvested, dried at low temperature and processed in a centralized mode. The application of the heteroauxin in strengthening phytoremediation of the polycyclic aromatic hydrocarbon contaminated soil has the advantages of simple processes, low cost and in-situ remediation, does not cause influence or damage on the surroundings, and is good in remediation effect of organic contaminated soil of polycyclic aromatic hydrocarbon and the like and applicable to remediation of the organic contaminated soil.

Description

technical field [0001] The invention belongs to the technical field of contaminated soil remediation, and relates to the application of indole acetic acid in remediating polycyclic aromatic hydrocarbon contaminated soil. Background technique [0002] Polycyclic aromatic hydrocarbons (PAHs) are a class of condensed ring compounds containing two or more benzene rings arranged in linear, angular or clustered shapes, with high melting and boiling points, strong hydrophobicity, low vapor pressure, Octanol-water partition coefficient is high. Its sources mainly include natural existence, incomplete combustion of fossil fuels, organic synthetic materials and refinery production. [0003] PAHs have been proved to have "three causes" effects of carcinogenicity, teratogenicity and mutagenicity, which pose a considerable threat to the safety of agricultural products and human health. Therefore, the problem of PAHs pollution has attracted widespread attention from all countries. In th...

Claims

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Application Information

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IPC IPC(8): A01B79/00A01B79/02A01G7/06
Inventor 徐莉李伟明胡锋李辉信刘满强焦加国陈小云马丽丽张振
Owner NANJING AGRICULTURAL UNIVERSITY
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