

A Study of the Adsorption of Ni2+ Ions by Modified Peanut Processing Wastes
https://doi.org/10.18412/1816-0395-2020-3-39-43
Abstract
The sorption purification of model solutions from Ni2+ ions was studied using, as sorption materials, ground peanut peel of the original and heat-treated at a temperature of 250 °C and 350 °C. Isotherms of adsorption of Ni2+ ions by sorption materials were constructed in the range of initial concentrations up to 1000 mg/dm3 of the initial and thermally modified peanut peel. Isotherms are processed in the framework of the Langmuir, Freundlich and BET models. The kinetics of adsorption of Ni2+ ions by the initial and heat-treated peanut peel was studied. It was experimentally determined that the maximum sorption capacity of the initial peanut peel at an initial concentration of Ni2+ 1000 mg/dm3 ions is 0.6 mmol/g, and for annealed at 250 and 350 ° C – 0.66 and 0.78 mmol/g, respectively.
About the Authors
S.V. SverguzovaRussian Federation
Dr. Sci (Eng.), Head of Department
I.G. Shaikhiev
Russian Federation
Dr. Sci. (Eng.), Head of Department
L. Hunadi
Russian Federation
Post-graduate Student
I.V. Bomba
Russian Federation
Graduate Student
References
1. Sapronova Zh.A., Sverguzova S., Sulim K., Svyatchenko A., Chebotaeva E. Sewage treatment in megacities by modified chestnut treewaste. IOP Conf. Series. Materials Science and Engineering. 2018. 365. 022058. 7 p.
2. Acharya J., Kumar U., Raf P.M. Removal of Heavy Metal Ions from Wastewater by Chemically Modified Agricultural Waste Material as Potential Adsorbent-A Review. International Journal of Current Engineering and Technology. 2018. Vol. 8. Iss. 3. P. 526—530.
3. Malik D.S., Jain C.K., Yadav A.K. Removal of heavy metals from emerging cellulosic low-cost adsorbents: a review. Applied Water Science. 2017. Vol. 7. Iss. 5. P. 2113—2136.
4. Галимова Р.З., Шайхиев И.Г. Получение и исследование сорбционных свойств модифицированных целлюлозосодержащих сорбционных материалов по отношению к фенолу. Вода: химия и экология. 2017. № 2. C. 60—66.
5. Яманасарова Э.Т., Громык Н.В., Абдуллин М.И., Куковинец О.С., Зворыгина О.Б. Исследование сорбционных свойств материалов на основе растительного сырья по отношению к органическим и неорганическим примесям. Вестник Башкирского университета. 2016. Т. 21. № 2. С. 314—318.
6. Свергузова С.В., Степанова С.В., Шайхиев И.Г. Очистка модельных стоков, содержащих ионы тяжелых металлов, шелухой пшеницы. Вестник БГТУ им. В.Г. Шухова. 2014. №6. С. 183—186.
7. Степанова С.В., Шайхиев И.Г. Отходы переработки зерновых культур в качестве сорбционных материалов ионов никеля. Вестник Казанского технологического университета. 2014. № 1. C. 181—183.
8. Oliveira F.D. Copper, nickel and zinc removal by peanut hulls: batch and column studies in mono, tri-component systems and with real effluent. Global NEST Journal. 2010. Vol. 12. № 2. P. 206—214.
9. Perea-Moreno M.-A., Manzano-Agugliaro F., Hernandez-Escobedo Q., Perea-Moreno A.-J. Peanut Shell for Energy: Properties and Its Potential to Respect the Environment. Sustain - ability. 2018. № 10. 15 р. http://doi.org/1C.3390/su10093254.
10. Syria: Peanuts, production quantity (tons) [Электронный ресурс]. URL: http://www.factfish.com/statistic-country/syria/peanuts%2C%20production%20quantity (дата обращения 06.08.2019).
11. Bharthare P., Shrivastava P., Singh P., Ttiwari A. Peanut shell as renewable energy source and their utility in production of ethanol. International Journal of Advance Research. 2014. Vol. 2. Iss. 4. 12 р.
12. Yang Z., Wang Y.G., Jing Y.J., Wei Q.W., Leng F.F., Ma H., Wang Y.L., Chen J.X. Preparation and modification of peanut shells and their application for heavy metals adsorption. Bulgarian Chemical Communications. 2016. Vol. 48. № 3. P. 535—542.
13. Boumchita S., Lahrichi A., Benjelloun Y., Lairini S., Nenov V., Zerrouq F. Application of Peanut shell as a low-cost adsorbent for the removal of anionic dye from aqueous solutions. JMES. 2017. Vol. 8. Iss. 7. P. 2353—2364.
14. Najwa Saber Majeed, Shaimaa Abood Alwan. Study the Performance of Low Cost Material (Peanut Hulls) for Dye Adsorption Using Inverse Fluidized Bed. Iraqi Journal of Chemical and Petroleum Engineering. 2014. Vol. 15. № 2. P. 15—25.
15. . ГОСТ 4011-72 ГОСТ 12536-2014 Грунты. Методы лабораторного определения гранулометрического (зернового) и микроагрегатного состава. Методы испытаний. Введ. 2015-07-01. М., Стандартинформ, 2015. 20 с.
Review
For citations:
Sverguzova S., Shaikhiev I., Hunadi L., Bomba I. A Study of the Adsorption of Ni2+ Ions by Modified Peanut Processing Wastes. Ecology and Industry of Russia. 2020;24(3):39-43. (In Russ.) https://doi.org/10.18412/1816-0395-2020-3-39-43