Pyrolysis of rubber seed pericarp biomass treated with sulfuric acid for the adsorption of crystal violet and methylene green dyes: an optimized process

MK Uddin, NN Abd Malek, AH Jawad… - International Journal of …, 2023 - Taylor & Francis
In this study, the biomass of rubber seed pericarp was first treated with sulfuric acid and then
its activated carbon was formed by the pyrolysis process. As produced acid-treated activated …

[HTML][HTML] Highly efficient removal of crystal violet dye from water by MnO2 based nanofibrous mesh/photocatalytic process

M Rahmat, A Rehman, S Rahmat, HN Bhatti… - Journal of Materials …, 2019 - Elsevier
The present study describes the potential use of 3D MnO 2 nanofibrous mesh as
photocatalyst for removal of organic dye. The MnO 2 nanofibrous mesh has synthesized …

Novel citric acid-functionalized brown algae with a high removal efficiency of crystal violet dye from colored wastewaters: insights into equilibrium, adsorption …

A Essekri, A Hsini, Y Naciri, M Laabd… - International Journal …, 2021 - Taylor & Francis
Synthetic dye waste is one of the world's key ecological concerns. The algal biomass has
emerged as a promising alternative adsorbent for wastewater treatment. The present study …

Evaluation of MnO2 incorporated cellulose acetate membranes and their potential photocatalytic studies using Rhodamine-B dye

P Karthik, S Ravichandran, V Sasikala… - Process Safety and …, 2023 - Elsevier
In this study, CA/MnO 2 nanocomposites were successfully synthesized by using a magnetic
stirring method that was not prohibitively expensive. For the purpose of characterizing …

Simple one-step synthesis process of novel MoS2@ bentonite magnetic nanocomposite for efficient adsorption of crystal violet from aqueous solution

MK Uddin, F Mashkoor, IM AlArifi, A Nasar - Materials Research Bulletin, 2021 - Elsevier
Toxic dye effluents from textile wastewater can cause hazardous effects on human health.
Hence, the removal of these effluents is crucial. In this study, a novel MoS 2@ bentonite …

Elimination of crystal violet from synthetic medium by adsorption using unmodified and acid-modified eucalyptus leaves with MPR and GA application

K Ghosh, N Bar, AB Biswas, SK Das - Sustainable Chemistry and Pharmacy, 2021 - Elsevier
The aim of this investigation concerns the elimination by batch adsorption method of a
primary (cationic) textile dye (Crystal Violet) from the synthetic medium, using raw and acid …

Fabrication of novel iminodiacetic acid-functionalized carboxymethyl cellulose microbeads for efficient removal of cationic crystal violet dye from aqueous solutions

AM Omer, GS Elgarhy, GM El-Subruiti… - International journal of …, 2020 - Elsevier
Novel anionic adsorbent microbeads were fabricated based on surface functionalization of p-
benzoquinone-carboxymethyl cellulose (CMC-PBQ) activated microbeads with …

Marang fruit (Artocarpus Odoratissimus) waste: A promising resource for food and diverse applications: A review of its current status, research opportunities, and …

MC Alvarado - Food Bioengineering, 2023 - Wiley Online Library
Marang fruit is commonly found and available in various Southeast Asian regions, notably in
countries such as Malaysia, the Philippines, and Indonesia. Marang fruit waste, despite its …

Fabrication and characterization of electrospun Fe3O4/o-MWCNTs/polyamide 6 hybrid nanofibrous membrane composite as an efficient and recoverable adsorbent …

D Bassyouni, M Mohamed, ES El-Ashtoukhy… - Microchemical …, 2019 - Elsevier
The fabrication of novel polymeric nanofiber and its potential are versatility prompted to
adoptive functionalized hybrid nanomaterials for the removal of toxic pollutants. In this …

Effective aqueous arsenic removal using zero valent iron doped MWCNT synthesized by in situ CVD method using natural α-Fe2O3 as a precursor

H Alijani, Z Shariatinia - Chemosphere, 2017 - Elsevier
This research presents an efficient system for removing aqua's arsenic based on in situ zero
valent iron doping onto multiwall carbon nanotube (MWCNT) through MWCNT growth onto …