Direct Blue ۷۱ Removal from Aqueous Solutions by Adsorption on Pistachio Hull Waste: Equilibrium, Kinetic and Thermodynamic Studies

سال انتشار: 1395
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 118

فایل این مقاله در 16 صفحه با فرمت PDF قابل دریافت می باشد

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این مقاله:

شناسه ملی سند علمی:

JR_JHES-4-2_007

تاریخ نمایه سازی: 8 آذر 1402

چکیده مقاله:

Background and Purpose: Azo dyes including Direct Blue ۷۱ (DB۷۱) are toxic, mutagenic and carcinogenic contaminants in effluents of industries. This study aimed to investigate the adsorption of DB۷۱ from aqueous solution onto pistachio hull waste (PHW) as a low-cost adsorbent. Materials and Methods: A series of experiments were performed via batch adsorption technique to examine the effect of the process variables such as contact time ۰-۲۱۰ minutes, initial dye concentration ۱۰-۱۰۰ mg/l, pH ۲-۱۲, adsorbent ۰.۰۵-۱ g/l, and the processing temperature of ۲۵, ۴۰, and ۵۰° C. The concentration changes of DB۷۱ were measured using the colorimetric method by the spectrophotometer T۸۰ ultraviolet/visible at the ۵۸۷ nm wavelength. Moreover, The PHW was characterized by scanning electron microscopy, Fourier transform infrared spectroscopy, Freundlich and Langmuir isotherm model, pHpzc and Brunauer–Emmett–Teller (BET) surface area analysis. Results: Maximum adsorption capacity was ۹۰.۴۸ mg DB۷۱ per ۱ g adsorbent at pH ۲, DB۷۱ ۱۰۰ mg/l, temperature ۵۰° C, and time ۲۱۰ minutes. In general, by increasing the adsorbent dosage, time, and processing temperature, the removal efficiency was increased; however, incrementing pH and dye concentration had a reverse effect. Maximum BET specific surface and total pore volume on the adsorbent were ۱.۰۴ m۲/g and ۰.۰۰۰۲ cm۳/g, respectively. The Freundlich isotherm (R۲ = ۰.۹۹۱۲) model fits the equilibrium data better than the Langmuir isotherm (R۲ = ۰.۹۰۲۴) model. The adsorption kinetic was found to be well described by the pseudo-second-order model. Thermodynamic analysis indicated that the adsorption process is a spontaneous and endothermic process. Conclusion: PHW can be used well as a low-cost surface adsorbent in the treatment of DB۷۱ from aquatic environments.

نویسندگان

Hamed Biglari

Gonabad University of Medical Sciences, Gonabad, Iran

Nasibeh Javan

Zahedan University of Medical Sciences, Zahedan, Iran

Rasoul Khosravi

Birjand University of Medical Sciences, Birjand, Iran

Amin Zarei

Torbateheidarie University of Medical Sciences, Mashhad, Iran

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 :
  • Bazrafshan E, Biglari H, Mahvi AH. Phenol removal by electrocoagulation ...
  • Najafpour GD, Zinatizadeh AAL, Lee LK. Performance of a three-stage ...
  • Cai MQ, Wei XQ, Song ZJ, Jin MC. Decolorization of ...
  • Gupta VK, Ali I, Saini VK. Adsorption studies on the ...
  • Liu Y, Chen X, Li J, Burda C. Photocatalytic degradation ...
  • dos Santos AB, Cervantes FJ, van Lier JB. Review paper ...
  • Daneshvar N, Oladegaragoze A, Djafarzadeh N. Decolorization of basic dye ...
  • Movahedian Attar H, Rezaee R. Investigating the efficiency of advanced ...
  • Bali U, Catalkaya E, Sengul F. Photodegradation of Reactive Black ...
  • Kokol V, Doliska A, Eichlerova I, Baldrian P, Nerud F. ...
  • Bazrafshan E, Mostafapour FK, Mahvi AH. Phenol removal from aqueous ...
  • Luo X, Zhan Y, Huang Y, Yang L, Tu X, ...
  • Moghaddam SS, Moghaddam MR, Arami M. Coagulation/flocculation process for dye ...
  • Li HQ, Han HJ, Du MA, Wang W. Removal of ...
  • Crini G, Badot PM. Application of chitosan, a natural aminopolysaccharide, ...
  • Dias JM, Alvim-Ferraz MC, Almeida MF, Rivera-Utrilla J, Sanchez-Polo M. ...
  • Han R, Ding D, Xu Y, Zou W, Wang Y, ...
  • Verma A, Chakraborty S, Basu JK. Adsorption study of hexavalent ...
  • Verma A, Dash RR, Bhunia P. A review on chemical ...
  • Moussavi G, Khosravi R. Removal of cyanide from wastewater by ...
  • Moussavi G, Khosravi R. The removal of cationic dyes from ...
  • Moussavi G, Khosravi R. Preparation and characterization of a biochar ...
  • Moussavi G, Barikbin B. Biosorption of chromium(VI) from industrial wastewater ...
  • Altenor S, Carene B, Emmanuel E, Lambert J, Ehrhardt JJ, ...
  • Garg U, Kaur MP, Jawa GK, Sud D, Garg VK. ...
  • Lim CK, Bay HH, Neoh CH, Aris A, Abdul MZ, ...
  • Bulut Y, Gozubenli N, Aydin H. Equilibrium and kinetics studies ...
  • Bulut Y, Baysal Z. Removal of Pb(II) from wastewater using ...
  • Kuo CY, Wu CH, Wu JY. Adsorption of direct dyes ...
  • Chakravarty P, Sarma NS, Sarma HP. Removal of lead(II) from ...
  • Zazouli MA, Barlak D, Mahdavi Y, Ebrahimi M. Adsorption rate ...
  • Zazouli MA, Moradi E. Adsorption Acid Red۱۸ dye using Sargassum ...
  • Wang S, Boyjoo Y, Choueib A. A comparative study of ...
  • Raffiea Baseri J, Palanisamy PN, Sivakumar P. Comparative studies of ...
  • Rasoulifard MH, Taheri Qazvini N, Farhangnia E, Heidari A, Doust ...
  • Kousha M, Daneshvar E, Sohrabi MS, Jokar M, Bhatnagar A. ...
  • Mall ID, Srivastava VC, Agarwal NK, Mishra IM. Removal of ...
  • Calvete T, Lima EC, Cardoso NF, Dias SLP, Pavan FA. ...
  • Karthikeyan T, Rajgopal S, Miranda LR. Chromium(VI) adsorption from aqueous ...
  • Caturla F, Martin-Martinez JM, Molina-Sabio M, Rodriguez-Reinoso F, Torregrosa R. ...
  • Imagawa A, Seto R, Nagaosa Y. Adsorption of chlorinated hydrocarbons ...
  • Hameed BH. Evaluation of papaya seeds as a novel non-conventional ...
  • Rao GP, Lu G, Su F. Sorption of divalent metal ...
  • نمایش کامل مراجع