0
Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Detection Methods Human Health Effects Marine & Wildlife Nanoplastics Remediation Reproductive & Development Sign in to save

Using Nano Zero-Valent Iron Supported on Diatomite to Remove Acid Blue Dye: Synthesis, Characterization, and Toxicology Test

Sustainability 2021 9 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 40 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
E. Flores-Rojas, Denhí Schnabel, Erick Justo-Cabrera, O. Solorza‐Feria, Héctor M. Poggi‐Varaldo, Luz Bretón‐Deval

Summary

Researchers synthesized nano zero-valent iron supported on diatomaceous earth at two molar concentrations and demonstrated effective decolorization of acid blue dye, with zebrafish toxicity testing confirming low acute toxicity of the nZVI-DE composites at treatment-relevant concentrations.

Body Systems

This work aimed to synthesize and characterize nanoscale zero-valent iron (nZVI), supported on diatomaceous earth (DE) at two different molar concentrations, 3 and 4 M (nZVI-DE-1 nZVI-DE-2), to test the decolorization treatment of acid blue dye (AB) and perform a toxicological test using zebrafish. The synthesis of the nanoparticles was obtained using the chemical reduction method. The material was fully characterized by X-ray diffraction, scanning electron microscopy (SEM), energy-dispersive X-ray (EDX), and transmission electron microscopy and specific surface area (BET). The results showed spherical forms in clusters between 20 and 40 nm of zero-valent iron supported on diatomaceous earth. The removal of 1 g/L of AB from water treated with nZVI-DE-1 and nZVI-DE-2 reached the decolorization of 90% and 98% of all dye. By contrast, controls such as nZVI and DE-1 and DE-2 removed 40%, 37%, and 24% of the dye. Toxicological analysis using zebrafish showed that AB causes a severe defect in development, and embryos die after exposure. However, the water samples treated with nZVI-DE-1 and nZVI-DE-2 are not harmful to the zebrafish embryos during the first 24 h. However, all embryos exposed to the new material for more than 48 hpf had cardiac edema, smaller eyes, and curved and smaller bodies with less pigmentation.

Sign in to start a discussion.

More Papers Like This

Article Tier 2

Using nano zero valent iron supported on diatomite to remove acid blue dye: synthesis, characterization and toxicology test

Researchers synthesized iron nanoparticles supported on diatomaceous earth and tested their ability to remove a toxic blue dye from water. The material showed effective dye removal and low toxicity to zebrafish, offering a potential green technology for industrial wastewater treatment.

Article Tier 2

Zero-valent iron supported-lemon derived biochar for ultra-fast adsorption of methylene blue

Researchers developed a nano zero-valent iron supported on lemon-derived biochar composite for ultra-fast adsorption of methylene blue dye from water, demonstrating its effectiveness as an ecofriendly and low-cost adsorbent for water treatment.

Article Tier 2

Mini review on the application research of nanoscale zero valent iron in water treatment

This mini-review covers nanoscale zero valent iron (nZVI) particles as tools for environmental pollution control, capable of adsorbing and chemically reducing heavy metals and organic contaminants in water. These nanomaterials are also being explored for microplastic removal and the breakdown of plastic-associated chemical pollutants in water treatment.

Article Tier 2

Preparation of Sepiolite Nanofibers Supported Zero Valent Iron Composite Material for Catalytic Removal of Tetracycline in Aqueous Solution

Researchers developed a sepiolite nanofiber-supported zero-valent iron composite for catalytic removal of tetracycline from water, offering an efficient and environmentally friendly approach to degrading antibiotic contaminants that accumulate in aquatic environments.

Article Tier 2

Synthesis and characterization of a novel ternary magnetic composite for the enhanced adsorption capacity to remove organic dyes

A novel composite material (Fe3O4/NC/MOF) combining iron oxide nanoparticles, nanocellulose, and a zinc-based metal-organic framework was synthesized using simple mechanical agitation for adsorbing organic dyes from water. The composite effectively removed four dye types (Congo red, Basic Blue 54, Basic Violet 14, Acid Red 88) with performance evaluated across pH, temperature, and contact time variables.

Share this paper