High acetone soluble organosolv lignin extraction and its application towards green antifouling and wear-resistant coating
Artikel i vetenskaplig tidskrift, 2024

Marine fouling poses significant challenges to the efficiency and longevity of marine engineering equipment. To address this issue, developing effective marine antifouling coatings is critical to ensure the economic viability, environmental sustainability, and safety of offshore operations. In this study, we developed an innovative green antifouling and wear-resistant coating based on lignin, a renewable and sustainable resource. Lignin is considered environmentally friendly because it is abundant, biodegradable, and reduces reliance on petroleum-based materials. The coating was formulated with a controlled hydrophilic-to-hydrophobic ratio of 2:8, leveraging lignin's unique properties. Applying lignin increased the water contact angle by 14.5 %, improving surface hydrophobicity and contributing to the coating's antifouling efficacy. Moreover, the mechanical strength of the coating was enhanced by approximately 200 %, significantly boosting its durability in harsh marine environments. Additionally, the friction coefficient was reduced by about 85 %, further preventing organism adhesion. These results demonstrate that lignin-based coatings offer a greener alternative to traditional antifouling solutions. The results of this study not only help advance antifouling coating technology but are also consistent with the broader goal of promoting environmental responsibility in marine engineering practice.

Antifouling

Coating

Lignin

Polyurethane

Författare

Zhipeng Wu

Luleå tekniska universitet

Petter Paulsen Thoresen

Luleå tekniska universitet

Dominik Maršík

Vysoká škola chemicko-technologická v Praze

Leonidas Matsakas

Luleå tekniska universitet

Markéta Kulišová

Vysoká škola chemicko-technologická v Praze

Karel Fous

Vysoká škola chemicko-technologická v Praze

Olga Maťátková

Vysoká škola chemicko-technologická v Praze

Jan Masák

Vysoká škola chemicko-technologická v Praze

Ulrika Rova

Luleå tekniska universitet

Erik Ytreberg

Chalmers, Mekanik och maritima vetenskaper, Maritima studier

Lena Granhag

Chalmers, Mekanik och maritima vetenskaper, Maritima studier

P. Christakopoulos

Luleå tekniska universitet

Yijun Shi

Luleå tekniska universitet

International Journal of Biological Macromolecules

0141-8130 (ISSN) 18790003 (eISSN)

Vol. 282 137456

Lignin-vegetabilisk olja oleogel mot helt grön, hållbar, självläkande, slitstark, korrosionsskyddande och antifouling beläggning

Formas (2022-01047), 2023-01-01 -- 2025-12-31.

Drivkrafter

Hållbar utveckling

Ämneskategorier

Miljövetenskap

DOI

10.1016/j.ijbiomac.2024.137456

Mer information

Senast uppdaterat

2024-12-03