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Method and device for synchronously removing multiple heavy metal pollution in agricultural non-point source sewage

A heavy metal and non-point source technology, applied in water pollutants, chemical instruments and methods, biological water/sewage treatment, etc., can solve the problems of high cost of adsorbent production, unstable discharge law, difficult to remove components, etc., to achieve increased removal A variety of heavy metal efficiency, easy to popularize and apply on a large scale, and the treatment efficiency is not affected by the effect

Inactive Publication Date: 2016-08-24
INST OF SOIL SCI CHINESE ACAD OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] (2). Refractory to degradation
Heavy metals cannot be degraded, and can only maintain stability or reduce toxicity by changing their valence and compound type; however, under the action of microorganisms, they may also be converted into more toxic organic compounds, such as inorganic mercury in natural water bodies, which can be destroyed Microbes convert to more toxic methylmercury
[0005] (3).Easy enrichment
[0006] (4). Toxic for a long time
However, the adsorption method is mainly non-selective adsorption, so it is not selective for the removal of heavy metal pollutants, and cannot remove specific heavy metal ions for special wastewater.
Invention patents (CN201410420016, CN102600777A, CN102583619A, CN104289185A) all improve the preparation of heavy metal ion adsorbents, including nano-iron ball adsorbents and plant biomass composite adsorbents. The fatal disadvantage is that these adsorbent materials are easy to be blocked during long-term use, resulting in unstable removal efficiency of heavy metals and even secondary pollution
However, these reactors mainly rely on a single microbial community or a few dominant microbial communities, and it is difficult to efficiently remove a variety of heavy metals in agricultural non-point source sewage with complex components, unstable discharge patterns, and uncertain discharge intensity.
Due to the complexity of agricultural non-point source sewage, a reactor composed of a single or a few microorganisms may also cause "poisoning"
And due to the need to maintain the "purity" or dominance of a single or a few microbial communities, these bioreactors have high operating and manufacturing costs and require more post-investment
At the same time, these reactors will add some chemical reagents more or less during the implementation process, which will cause harm to the environment, or the growth of individual plants (such as Centella asiatica) is restricted by the region, and its application range is greatly limited. Not suitable for application in agricultural non-point source sewage

Method used

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  • Method and device for synchronously removing multiple heavy metal pollution in agricultural non-point source sewage
  • Method and device for synchronously removing multiple heavy metal pollution in agricultural non-point source sewage
  • Method and device for synchronously removing multiple heavy metal pollution in agricultural non-point source sewage

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Embodiment 1

[0051] The farmland facing the street in Xinzhuang Town, Changshu City, Jiangsu Province is a typical heavy metal pollution area, suffering from a variety of heavy metal pollution, including copper (Cu), cadmium (Cd) and other heavy metals. In order to reduce the pollution of this complex heavy metal, the pericong bioreactor of the present invention is used for restoration.

[0052]The water collected from the paddy field and the microbial aggregates were used for the enrichment and cultivation of the surrounding cluster organisms. After the purchased elastic filler is sterilized, it is placed in the extracted natural farmland water body, and the surrounding organisms are enriched and cultivated under the conditions of light intensity of 3600Lux and temperature of 28°C;

[0053] The surrounding organisms were inoculated into the reactor, and the inner diameter of the serpentine reactor was 2.0 mm. The non-point source sewage in the farmland entered the primary sedimentation ta...

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Abstract

The invention relates to a method and a device for synchronously removing various heavy metals in agricultural non-point source sewage. The method comprises the following steps: enriching and culturing periphyton: after a purchased elastic filling is disinfected, adding the elastic filling into a natural farmland water body, and enriching and culturing periphyton; (2) inoculating the periphyton to a periphyton bioreactor; (3) debugging and operating single-electrode periphyton bioreactors arranged in an anaerobic reaction tank and an aerobic reaction tank of a periphyton reaction device: carrying out reaction on water and the periphyton to convert, adsorb and absorb heavy metal substances, wherein the pressure of the aerobic reaction tank (an aerobic section) of the periphyton reaction device is negative pressure; and (4) purifying water quality by virtue of a multi-stage periphyton bioreactor: connecting the single-electrode periphyton bioreactors in series, so that the inflow load is increased, the standing time is shortened, and the efficiency for removing various heavy metals is improved. The method has the characteristics of being simple, feasible and capable of avoiding a poisoning phenomenon and particularly has the characteristic that various heavy metals in the agricultural non-point source sewage can be removed.

Description

technical field [0001] The invention belongs to the field of ecology and environmental protection, relates to the field of agricultural non-point source pollution, in particular to a method for synchronously removing various heavy metal pollution in agricultural non-point source sewage by using a pericong bioreactor. The present invention also relates to the equipment used in this method: Zhoucong bioreactor. Background technique [0002] Heavy metal pollution is one of the most harmful water pollution problems. Heavy metals enter water bodies through man-made pollution sources such as mining, metal smelting, metal processing and chemical production wastewater, burning of fossil fuels, application of pesticides and fertilizers, and domestic garbage, as well as natural sources such as geological erosion and weathering. If these heavy metal wastewater is discharged into the natural environment without effective treatment, it is easy to accumulate in organisms and have an ampl...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C02F3/32C02F3/34C02F3/30C02F101/20
Inventor 杨嘉利吴永红王逢武
Owner INST OF SOIL SCI CHINESE ACAD OF SCI
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