Study of the Kinetics and Thermodynamics of Adsorption of Hexavalent Chromium on the Luffa Cylindrica Cords

سال انتشار: 1399
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 49

فایل این مقاله در 15 صفحه با فرمت PDF قابل دریافت می باشد

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این مقاله:

شناسه ملی سند علمی:

JR_IJCCE-39-4_013

تاریخ نمایه سازی: 17 خرداد 1404

چکیده مقاله:

In the present work, the objective is to determine the potential use of natural materials, Luffa cylindrica cords for the removal of Chrome (VI) through the adsorption batch process under different experimental conditions. The determination of the concentrations of Chrome (VI) has been performed using a UV - visible spectrophotometer. Adsorption studies were carried out under various parameters such as contact time, pH, initial concentration, and temperature. The results obtained show that Luffa cylindrica cords/Chrome (VI) have an adsorption capacity of ۲۹.۹۸ mg/g. The adsorption process was rapid and reached equilibrium in ۶۰ min of contact at ۳۴۳K and pH ۷.۷. The different adsorption models Langmuir, Freundlich, Temkin, and Elovich were used for the mathematical description of the adsorption equilibrium, and it was found that the very well - equipped experimental data for the Langmuir model (R۲=۰.۹۷۰۰), the pseudo-first-order and pseudo-second-order kinetic models were applied to the experimental data. The experimental data fitted very well the pseudo-second-order kinetic model (R۲= ۰.۹۸۲) and also followed the model of intraparticle diffusion (Kdif vary from ۰.۶۸۷ to ۴.۰۴۰ mg/(g min۱/۲) for concentrations between ۲۵ and ۱۵۰ mg/L), whereas diffusion is not the only rate - control step. The thermodynamic parameters study shows that the negative value of ΔH° (-۱۱.۴۹ kJ/mol) indicated that the adsorption of Chrome (VI) on Luffa Cylindrica cords was exothermic, the reaction was accompanied by a decrease in entropy (- ۰.۰۳۳ kJ/K. mol). The Gibbs free energy increased from -۰.۱۷۱ to -۱.۷۲۲ kJ/mol, respectively for Chrome (VI) when the temperature was increased from ۲۹۶ to ۳۴۳ K. The studied system shows that the adsorption process is spontaneous. The physical properties of the biosorbent were determined by FT-IR analysis and X-RD.

نویسندگان

Ykhlef Laidani

Laboratory Chemical Plant - Water - Energy, Department chemistry, Chlef University, P.O. Box ۱۵۱, Hay Essalem, ۰۲۰۰۰, Chlef, ALGERIA

Ghania Henini

Laboratory Environment-Water, Chlef University, P.O. Box ۱۵۱, Hay Essalem, ۰۲۰۰۰ Chlef, ALGERIA

Salah Hanini

LBMPT, Medea University, ALGERIA

Aida Fekaouni

Laboratory Chemical Plant - Water - Energy, Department chemistry, Chlef University, P.O. Box ۱۵۱, Hay Essalem, ۰۲۰۰۰, Chlef, ALGERIA

مراجع و منابع این مقاله:

لیست زیر مراجع و منابع استفاده شده در این مقاله را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود مقاله لینک شده اند :
  • Arulkumar M., Thirumalai K., Sathishkumar P., Thayumanavan P., Rapid Removal ...
  • Wan Ngah W.S., Hanafiah, M.A., Removal of Heavy Metal Ions ...
  • Gupta V.K, Ali I., Removal of Lead and Chromium from ...
  • Krzysztof R. and Krzysztof L., Stimulation of Heavy Metal Adsorption ...
  • Dipendra W., Heather J S., Adsorption of Arsenic (V) to ...
  • Yuh-Shan Ho, Augustine E. Ofomaja, Kinetics and Thermodynamics of Lead ...
  • Ashtoukhy ESZ., Amin N.K., Abedelwahab O., Removal of Lead (II) ...
  • Dhanakumar S., Solaraj G., Mohanraj R., Pattabhi S., Removal of ...
  • Demirbas E., Kobya M., Senturk E., Ozkan T., Adsorption Kinetics ...
  • Neagu V., Mikhalovsky S., Removal of Hexavalent chromium by New ...
  • Beulah S.K.M., Removal of Chromium (VI) from Wastewater Using Chemically ...
  • WHO, “Guidelines for Drinking-Water Quality, Volume ۱: Recommendations”, ۳rd ed, ...
  • Cieslak-Golonka M., Toxic and Mutagenic Effects of Chromium (VI), Polyhedron. ...
  • Malakootian M., Askarpour A., Amirmahani N., Nasiri Z., Nasir A., ...
  • Institute of Standards & Industrial Research of Iran, “Quality Standards ...
  • Pagnanelli F., Mainelli S., Veglio F., Toro L., Heavy Metal ...
  • Sanchooli M., Marziyeh, R.S., Taghavi, M., Cadmium Removal from Aqueous ...
  • Laidani Y., Hanini S., Mortha G., Henini G., Study of ...
  • Tanobe V.O.A., Sydenstricker T.H.D., Munaro M., Amico S.C., A Comprehensive ...
  • Demir H., Top A., Balkose D., Ulku S., Dye Adsorption ...
  • Hidalgo-VA´ zquez AR., Alfaro-Cuevas-Villanueva R., Ma´rquez-benavides L., Cortés-Martinez R., Cadmium ...
  • Gupta V.K., Agarwal S., Singh P., Pathania D., Acrylic Acid ...
  • Kalia, S., Kumar, A. Kaith, B.S., Sunn Hemp Cellulose Graft ...
  • Sanghavi B.J., Mobina S.M., Mathur P., Lahiri G. K., Srivastava ...
  • Sanghavi B.J., Kalambate P.K., Karna S.P., Srivastava A.K., Voltammetric Determination ...
  • Sharma S., Pathania D., Preparation, Characterization and Cr(VI) Adsorption Behavior ...
  • Wang L., Dong W., Xu Y., Synthesis and Characterization of ...
  • Kapoor A., Viraraghavan T., Nitrate Removal from Drinking Waterreview, J. ...
  • Song H., Zhou Y., Li A., Mueller S., Selective Removal ...
  • Gupta V.K., Rastogi A., Biosorption of Hexavalent Chromium by Raw ...
  • Gupta, V.K., Rastogi, A., Sorption and Desorption Studies of Chromium ...
  • Sarı A., Tuzen M., Biosorption of Total Chromium from Aqueous ...
  • Gupta V.K., Pathania D., Sharma S., Agarwal S.Sin P., Remediation ...
  • Aksu Z., Acikel U., Kabasakal E., Tezer S., Equilibrium Modelling ...
  • Prakashan R.S., Merrie J.S., Sheela R., Saswathi N., Ramakrishna S.V., ...
  • Langmuir I., The Constitution and Fundamental Properties of Solids and ...
  • Dehvari M., Ehrampoush M., Ghaneian H., Taghi M., Adsorption Kinetics ...
  • Freundlich H.M.F., Uber Die Adsorption in Losungen (Over the Adsorption ...
  • Haq Nawaz B., Rubina K., Muhammad Asif H., Biosorption of ...
  • Beigi S.M., Babapoor A., Maghsoodi V., Mousavi S.M., Rajabi N., ...
  • Xu H., Liu D.-d., He L., Liu N., Ning G., ...
  • Timken M. J., and Pyzhev V., Recent Modifications to Langmuir ...
  • Sparks D. L., “Kinetics of Soil Chemical Processes”, Academic Press ...
  • Zhang J., Stanforth R., Slow Adsorption Reaction between Arsenic Species ...
  • Laidani Y., Henini G., Hanini S., Labbaci A., Souahi F., ...
  • Amarasinghe B.M.W.P.K and Williams R.A., Tea Waste as a Low ...
  • Vaghetti JCP, Lima EC, Royer B, Brasil JL, da Cunha ...
  • Murphy V., Hughes H., McLoughlin P., Comparative Study of Chromium ...
  • Fiol N., Villaescusa I., Martínez M., Miralles N., Poch J., ...
  • Dhanakumar S., Solaraj G., MohanrajR., Pattabhi S., Removal of Cr ...
  • Alma Rosa N.-M., María del Carmen C.-U., Eliseo C.-U., Chromium ...
  • Elangovan R., Philip L., Chandraraj K., Biosorption of Hexavalent and ...
  • Ncibi M. C., Borhane M., Mongi S., Biosorption of Chromium ...
  • Argun M.E., Dursun S., Ozdemir C., Karatas, M., Heavy Metal ...
  • Melvin Samuel S., Abigail M. E.A., Biosorption of Cr(VI) by ...
  • Lagergren S., Zur Theorie Der Sogenannten Adsorption Gelöster Stoffe, Kungliga ...
  • Crini G., Kinetic and Equilibrium Studies on the Removal of ...
  • Weber J.R., Morris J.C., Kinetics of Adsorption on Carbon from ...
  • Seki Y., Yurdakoc K., Adsorption of Promethazine Hydrochloride with KSF ...
  • Senthil Kumar P., Gayathri R., Adsorption of Pb۲+ Ions from ...
  • Abdel Ghani N.T., Elchaghaby G.A., Influence of Operating Conditions on ...
  • نمایش کامل مراجع