Preface DOI

Sandeep Kumar Verma,

Ashok Kumar Das

Comprehensive analytical chemistry, Journal Year: 2024, Volume and Issue: unknown, P. xiii - xv

Published: Jan. 1, 2024

Can bacteria and carbon-based nanomaterials revolutionize nanoremediation strategies for industrial effluents? DOI Creative Commons
Elidamar Nunes de Carvalho Lima, Luiz Henrique Mesquita Souza,

E. Aguiar

et al.

Frontiers in Nanotechnology, Journal Year: 2024, Volume and Issue: 6

Published: June 5, 2024

In this study, we delved into cutting-edge strategies for the effective management of wastewater, a critical issue exacerbated by industrial pollution and urban expansion. We introduce use carbon-based nanomaterials (CBNs), either alone or functionalized with bacteria, as novel nanobiotechnological solution urgent nanobioremediation needs. This technique is notable its exceptional ability to remove various pollutants, including heavy metals, pesticides, textiles, dyes, emphasizing pivotal role CBNs. The development bionanocomposites through integration CBNs bacteria represents significant advancement in enhancing bioremediation efforts. assessed potential health environmental risks associated CBN usage while offering an in-depth evaluation adsorption mechanisms factors influencing effectiveness. Furthermore, improved efficiency treating effluents facilitated was investigated, their alignment circular economy principles recyclability discussed. aimed provide, detailed overview recent advancements, challenges, prospects bacterial application sophisticated wastewater treatment, underscoring vital importance promoting environment.

Language: Английский

Citations

1

Properties of Nanomaterials for Corrosion Control DOI
John Tsado Mathew, Abel Inobeme, Jonathan Hussaini

et al.

Advances in chemical and materials engineering book series, Journal Year: 2024, Volume and Issue: unknown, P. 74 - 99

Published: July 19, 2024

Corrosion presents significant challenges across industries, causing economic losses and safety risks. Traditional methods for corrosion control have limitations, prompting exploration of nanotechnology solutions. Nanomaterials offer unique properties mitigation. This chapter reviews diverse nanomaterial types like nanoparticles, nanocoatings, nanocomposites, elucidating their protective mechanisms. Additionally, it examines characterization techniques to assess structure performance. Application areas encompass aerospace, automotive, marine, oil gas sectors. Future perspectives in widespread adoption are discussed. The aims insights into nanotechnology's role combating corrosion, fostering further research the domain.

Language: Английский

Citations

1

Silver Nanoparticles DOI

Sachi Dubey,

Sharayu Lohakar,

Sunil Jayant Kulkarni

et al.

Advances in chemical and materials engineering book series, Journal Year: 2024, Volume and Issue: unknown, P. 461 - 488

Published: Oct. 22, 2024

Silver nanoparticles (AgNPs) have garnered attention as an effective solution for anti-microbial food packaging. Agri-food waste should be viewed a source of valuable products, paving the way zero-waste economy. With special qualities that may greatly improve quality and safety packaged items, this chapter examines various ways in which silver revolutionized packaging enhanced standards. nanoparticles' antibacterial been thoroughly investigated used to prevent microbial development on surfaces, increasing shelf life lowering risk foodborne infections. Furthermore, barrier help maintain nutritional value, taste, freshness goods, assuring customer pleasure positive health effects. This is green synthesis nanoparticles. It envisaged minimize pollution promote metallic

Language: Английский

Citations

1

Nanotherapeutics to cure inflammation-induced cancer DOI Open Access
Rajiv Kumar

Current Cancer Reports, Journal Year: 2024, Volume and Issue: 6(1), P. 193 - 204

Published: July 2, 2024

Aims: Nanotherapeutics are being explored as a potential solution to treat inflammation-induced cancer. enhance innate immune cells' immunity, enabling them fight tumors effectively. These cells secrete specific chemicals like cytokines, allowing replicate quickly and respond future threats, making suitable for immunotherapy.Methods: Nanotechnology can significantly improve human health by enhancing infection detection, prevention, treatment. Nanomedicines, composed of restorative imaging compounds in submicrometer-sized materials, aim deliver effective treatments limit inflammation healthy body areas. Combining nanotechnology clinical sciences, nanoparticles gene therapy have been developed treating various diseases, including cancer, cardiovascular, diabetes, pulmonary, inflammatory diseases.Results: Neutrophils their offspring, films extracellular vehicles, crucial drug transporters enhanced growth therapy. Tumor microenvironment inputs modify tumor-associated neutrophils (TANs), which essential tumor healing. Human intratumor heterogeneity is Nanomedicines shown targeted delivery, toxicity reduction, therapeutic effectiveness enhancement. However, relevance efficacy remain inadequate due lack understanding the interaction between nanomaterials, nanomedicine, biology. The diverse biological milieu impacts dynamic bioidentity nanoformulations, interactions function or cellular absorption.Conclusion: holds great promise improving detecting, preventing, infections. fusion sciences nanotechnology, use transporter materials delivery reducing contamination. Nanoparticles' small size high surface-to-volume ratio benefit Research has led wide range nanomedicine products globally.

Language: Английский

Citations

0

Preface DOI

Sandeep Kumar Verma,

Ashok Kumar Das

Comprehensive analytical chemistry, Journal Year: 2024, Volume and Issue: unknown, P. xiii - xv

Published: Jan. 1, 2024

Citations

0