Special Issue
Advances in Environmental Health and Toxicology
Guest Editor: Editorial Team — Journal of Biomedical Research & Environmental Sciences
Submission
Covid-19 Research
Safety Profile of COVID-19 Vaccines: Retrospective Analysis of Short, Medium, and Long-Term Side Effects: The Military Hospital Experience – Read more Evaluating the Efficacy of Different SARS-Cov-2 Drug Targets Using the Topo-Geometrical Superposition Algorithm, Molecular Docking and Chemical Reactivity Frameworks – Read more Preventing COVID-19 Infection by Complementary Medicine and Oral Health – Read more Analysis of Body Temperature in Patients with Trauma Visiting a Local Emergency Medical Center during the SARS-CoV-2 Outbreak – Read more N95 Respirator Fit Testing Experience during the Pandemic at a Singapore Tertiary Health Institution: Streamlining Workflow and Improving Respirator Fit Rate – Read more COVID-19 is an Amplifier of Social Inequalities Structural Violence against Students with Special Learning Needs and Low Socio-Economic Status – Read more Interaction between Chronic Influenza and COVID-19: Novel Aspects of Immune System Combat – Read more Daily Life, Fear of COVID-19 and Social Support in the Older Adults in Home Isolation: A Cross-Sectional Study – Read more The Impact of COVID-19 Pandemic on Cardiovascular Diseases in Brazil – Read more Diversity of Non-Influenza Respiratory Viruses Associated with Influenza-Like Illness during 2009 pre and pandemic periods in Sao Paulo, Brazil, a Historical Overview – Read more Cardiovascular Complications of SARS-CoV-2 (COVID-19) in Adults – Read more Impact of COVID-19 Pandemic on the Development of Childrens Executive Functions Implications for School-Based Interventions – Read more The Impact of the COVID-19 Pandemic on Youth Education – Read more Association between Dietary Habits, Lifestyle and Migraine Attacks During Social Isolation in the COVID-19 Pandemic: A Systematic Review of Observational Studies – Read more The Brazilian Increase in Cases of Lung Cancer and COVID-19, Can They be related? – Read more The Possible Therapeutic Application of CO on COVID-19 – Read more Planetary View of COVID Impact vs. IQ & PISA Rank as National Level of Intelligence – Read more Electrophysiological Study in a Patient with Visual Deficit after Severe Coronavirus 2 Pneumonia – Read more A Presentation of Analyses of COVID-19 Vaccine Samples, Blood Samples, Urine Samples, Foot Bath Samples, Sitz Bath Samples, and Skin-Extract Samples – Read more Is Anosmia-Ageusia in COVID-19 Patients Associated with Neuro-Philic Virus Mutant and Mild Respiratory Involvement? – Read more
Home/ All Articles/ Methylene Blue Removal and Phytotoxicity Evaluation by Aspergillus niger

Abstract & Article Details

Research Article • Vol.7, Issue 1 • ISSN: 2766-2276 • Open Access • CC BY 4.0

Open Access Research Article Vol.7, Issue 1 January 19, 2026

Methylene Blue Removal and Phytotoxicity Evaluation by Aspergillus niger

DOI: 10.37871/jbres2255
Authors
Mutlu G and Malkoc S

Abstract

As the global population continues to grow rapidly, the textile industry, one of the most significant sectors, faces increasing challenges in treating wastewater contaminated with dyes. The widespread use of synthetic dyes in textile manufacturing has made traditional treatment methods inadequate, emphasizing the need for more advanced and sustainable cleanup strategies. Among various techniques for removing color from industrial effluents, biodegradation-based methods have gained significant attention due to their cost-effectiveness and environmentally friendly qualities.
In this study, Aspergillus niger was utilized to remove methylene blue, one of the most common dyes found in textile wastewater, through a biosorption-based remediation process. Experiments were conducted over seven days at temperatures ranging from 25 to 35 °C, using both live and dead fungal biomass, with initial dye concentrations of 10-100 mg/L. The highest removal efficiency of 88.7% was achieved on the fifth day. Under these optimal conditions, the temperature and initial dye concentration were determined to be 25 °C and 10 mg/L, respectively.
Subsequently, a phytotoxicity test was performed using green lentil (Lens culinaris) under optimized conditions. Seeds were irrigated with three different solutions: A 10 mg/L methylene blue solution, control water (tap water), and the post-biosorption treated solution. After seven days, germination rates were recorded as 90%, 100%, and 100%, respectively. The results showed that the biosorption process had no harmful effects on seed germination, indicating that the treated effluent posed no detectable phytotoxic risk.

How to Cite

Mutlu G and Malkoc S (2026). Methylene Blue Removal and Phytotoxicity Evaluation by Aspergillus niger. Journal of Biomedical Research & Environmental Sciences, 7(1). https://doi.org/10.37871/jbres2255

Article Information

JournalJournal of Biomedical Research & Environmental Sciences (JBRES)
ISSN2766-2276
DOI DOI 10.37871/jbres2255
Volume / IssueVol. 7, Issue 1
ReceivedDecember 1, 2025
AcceptedJanuary 18, 2026
PublishedJanuary 19, 2026
Article TypeResearch Article
Pages1-11
LicenseCC BY 4.0 — Open Access
PublisherSciRes Literature LLC, Sheridan, WY, USA
LanguageEnglish
Creative Commons BY 4.0

Published under CC BY 4.0 — free to share, copy, adapt, and redistribute with attribution.

Certificate of Publication

Certificate of Publication — Methylene Blue Removal and Phytotoxicity Evaluation by Aspergillus niger

Certificate verifies that this article was peer-reviewed and published in the Journal of Biomedical Research & Environmental Sciences.

Publish with JBRES — Peer-reviewed, multidisciplinary Open Access with rigorous double-blind review, CrossRef DOI, and global visibility.
Double-Blind CrossRef DOI Discoverable