TREATMENT OF WASTEWATER FROM INDUSTRIAL ENTERPRISES FROM COPPER CATIONS
Abstract and keywords
Abstract (English):
The composition of wastewater from galvanic production and the technological scheme of their purification have been studied. The technological characteristics of dried plant waste and ash obtained after their combustion in a boiler with energy production are determined. The characteristics of the boiler during the combustion of plant waste are calculated. A technology for the production of granular sorbent from the ash of plant waste has been developed. The cleaning system has been supplemented by adding a post-treatment unit with the resulting sorption material. The filter has been calculated. The results of the study make it possible to obtain a new material for sorption purification from copper cations, up to the level of maximum permissible concentration of harmful substances discharged into fisheries reservoirs. After examining the mechanism of adsorption, it was found that physical adsorption occurs. To determine the nature of adsorption, the Gibbs energy was calculated, the rate constants of the adsorption equilibrium were calculated, and the activation energy of the process was calculated.

Keywords:
consumer waste, galvanic production, adsorption material, organic waste
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References

1. Nikolaeva L.A., Adzhigitova A.A., Borisova S.D. Ochistka stochnyh vod promyshlennyh predpriyatij ot ionov tyazhelyh metallov zoloj othodov potrebleniya // Vestnik Nauchnogo centra VostNII po promyshlennoj i ekologicheskoj bezopasnosti. 2022. № 1. S. 102–109.

2. ITS 8–2022. Informacionno-tekhnicheskij spravochnik po nailuchshim dostupnym tekhnologiyam. Ochistka stochnyh vod pri proizvodstve produkcii (tovarov), vypolnenii rabot i okazanii uslug na krupnyh predpriyatiyah. M.: Byuro NDT, 2022. 93 s.

3. Mitrakova T.N. Primenenie materialov estestvennogo proiskhozhdeniya dlya sorbcionnoj ochistki stochnyh vod ot ionov medi (II): dis. ... kand. tekhn. nauk. M.: Ros. gos. un-t nefti i gaza im. I.M. Gubkina, 2017. 126 s.

4. Brown P.A., Gill S.A., Allen S.J. Metal removal from wastewater using peat // Water Research. 2000. Vol. 34. № 16. P. 3907–3916.

5. Carbon materials from waste short hemp fibers as a sorbent for heavy metal ions – Mathematical modeling of sorbent structure and ions transport / M. Vukcevic [et al.] // Chemical Engineering Journal. 2014. Vol. 235. № 1. P. 284–292.

6. Lignocellulose-based materials and their application in the removal of dyes from water: A review / K. Roa [et al.] // Sustain. Mater. Technol. 2021. № 29. R. 3–20.

7. Filatova E.G. Obzor tekhnologij ochistki stochnyh vod ot ionov tyazhelyh metallov, osnovannyh na fiziko-himicheskih processah // Izvestiya vuzov. Prikladnaya himiya i biotekhnologiya. 2015. № 2 (13). S. 97–109.

8. Nikolaeva L.A., Adzhigitova A.A. Ochistka stochnyh vod promyshlennyh predpriyatij ot ionov medi zoloj othodov potrebleniya // Voprosy sovremennoj nauki i praktiki. 2021. № 1 (79). S. 60–68.

9. Nikolaeva L.A., Adzhigitova A.A. Ochistka stochnyh vod promyshlennyh predpriyatij ot ionov medi zoloj othodov potrebleniya // Ekologiya i promyshlennost' Rossii. 2022. № 2. T. 26. S. 4–8.

10. Yuanyuan L., Ning Ch., Yu-You L., Jianyong L. Anaerobic co-digestion of food waste with municipal solid waste leachate: A review and prospective application with more benefits // Resources, Conservation and Recycling. 2021. № 174. R. 54–62.

11. Vliyanie iniciiruyushchej dobavki CuSO4 na izmenenie harakteristik processov okisleniya i piroliza buryh uglej / K.B. Larionov [i dr.] // Himiya tverdogo topliva. 2019. № 2. S. 63–70.

12. Effect of an Initiating Additive of CuSO4 on Changes in the Characteristics of Brown Coal Oxidation and Pyrolysis / K.B. Larionov [et al.] // Solid Fuel Chemistry. 2019. Vol. 53. № 2. P. 120–127.

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