1
Return

Thermally Modified Bentonite as an Effective Adsorbent for Caffeine Removal: A Techno-Economic Perspective

delete2026-08-12
delete0
delete
OA
AI
J
Javier A. Quintero-Jaramillo
I
Iván F. Macías-Quiroga
J
Juan Camilo Solarte‐Toro
J
Javier I. Carrero-Mantilla
C
Carlos Ariel Cardona Álzate
N
Nancy R. Sanabria‐González *
DOI:10.3390/chemengineering10080099delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Caffeine has been recognized as an emerging pollutant in aquatic ecosystems due to its persistence. This study evaluated the techno-economic viability of caffeine removal using thermally modified bentonite (Na–Bent–400) as an adsorbent. Caffeine removal was simulated under two operational schemes: Scenario 1 (S1: Adsorption–Disposal), where Na–Bent–400 is discarded following saturation, and Scenario 2 (S2: Regeneration–Reuse–Disposal), which integrates adsorbent regeneration to enable the reuse of Na–Bent–400 in a second adsorption before final disposal. Using the optimized model for caffeine removal (95.97% removal efficiency in batch operation: 2.26 g/L Na–Bent–400, 30 mg/L caffeine, and pH 8), the process was scaled up through process simulation in Aspen Plus (V14) for a treatment flow rate of 8 L/s (252,288 m3/year). Capital expenditure (CapEx) was estimated at USD 331,004 without adsorbent regeneration (S1) and USD 486,725 with regeneration (S2), showing a 47% increase due to auxiliary equipment and operational complexity; however, integrating adsorbent regeneration minimizes long-term operational expenditures by reducing raw material requirements and wastewater treatment costs. Estimated water treatment costs based on operational expenditures (OpEx) are USD 1.38/m3 for S1 and USD 0.74/m3 for S2. A sensitivity study found that caffeine concentrations above 30 mg/L have little effect on treatment costs. By evaluating these scenarios, this study demonstrates the preliminary techno-economic viability of thermally modified bentonite for treating caffeine-contaminated agroindustry effluents.
Keywords:
caffeine adsorption
bentonite
thermal treatment
techno-economic analysis
water treatment
emerging pollutant

Journal

ChemEngineering cover
ChemEngineering
IF:
3.4
Papers:
328
Citations:
1.6K

Organization

U
universidad nacional de colombia
Scholars:
1.4K
Papers: 757
Citations: 0
Cited Papers

Cited Papers

Citing Papers

Citing Papers