این سایت در حال حاضر پشتیبانی نمی شود و امکان دارد داده های نشریات بروز نباشند
صفحه اصلی
درباره پایگاه
فهرست سامانه ها
الزامات سامانه ها
فهرست سازمانی
تماس با ما
JCR 2016
جستجوی مقالات
پنجشنبه 27 آذر 1404
Iranian Journal of Chemistry and Chemical Engineering
، جلد ۴۱، شماره ۸، صفحات ۲۵۴۸-۲۵۶۰
عنوان فارسی
چکیده فارسی مقاله
کلیدواژههای فارسی مقاله
عنوان انگلیسی
Sonochemically Synthesized Mesoporous Pyrophanite- MnTiO3/TiO2 Nanoparticles: Adsorbent for Removal of Commercial Malachite Green Dye
چکیده انگلیسی مقاله
Malachite Green (MG) dye belongs to the triphenylmethane class and exhibits a noxious impact on the living being. Thus, it’s being immensely important to remove it from the environment matrix.
Herein, the sonochemical synthesized adsorbent material -pyrophanite-MnTiO
3
/TiO
2
NanoParticles (NPs) was utilized to expel the commercial Malachite Green (MG) dye from the solution. The adsorption efficacy data indicate the maximum removal of MG (90.2%) is obtained for the NPs calcinated at 1000 °C (MT1). The optimized adsorption material (MT1) is characterized by using different techniques including XRD, FE-SEM, EDX, FTIR, BJH, and BET.
The XRD analysis indicates the formation of divergent phases viz. rutile TiO
2
and MnTiO
3
. The FE-SEM indicates the formation of a nano-rod-like structure. The average size and percentage of void space of MT1 NPs are evaluated by using IMAGE J software. The hysteric loops obtain from BET and BJH plots reveal the existence of type H3 hysteresis indicating the MT1 NPs exhibit mesoporous structure. The surface area, pore volume, and pore size are 61.245 m
2
/g, 0.139 cm
3
/g, and 2.0178 nm respectively.
The pH, dye concentration, and temperature of the solution are optimized for the removal
of MG by using MT1 NPs. Further, the adsorption isotherms, kinetics studies, and intra-particle studies indicate that monolayered second-order diffusion occurs onto the surface of MT1 NPs. The adsorption process is endothermic, thermodynamically driven, and accompanied by an increase in entropy.
کلیدواژههای انگلیسی مقاله
MnTiO3,Malachite green,Adsorption kinetics,Adsorption isotherms,Thermodynamics
نویسندگان مقاله
Abhinandan Syal |
Department of Chemistry, Sant Longowal Institute of Engineering & Technology (SLIET), Longowal, Sangrur, 148106, Punjab, INDIA
Dhiraj Sud |
Department of Chemistry, Sant Longowal Institute of Engineering & Technology (SLIET), Longowal, Sangrur, 148106, Punjab, INDIA
نشانی اینترنتی
https://ijcce.ac.ir/article_246380_4ada64a2052d09c359916d694de1e900.pdf
فایل مقاله
فایلی برای مقاله ذخیره نشده است
کد مقاله (doi)
زبان مقاله منتشر شده
en
موضوعات مقاله منتشر شده
نوع مقاله منتشر شده
برگشت به:
صفحه اول پایگاه
|
نسخه مرتبط
|
نشریه مرتبط
|
فهرست نشریات