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用于珊瑚礁修复的活性生物糊剂。

Active Biopaste for Coral Reef Restoration.

作者信息

Corigliano Gabriele, Isa Valerio, Annese Valerio Francesco, Rinaldi Camilla, Summa Maria, Bertorelli Rosalia, Galli Paolo, Lavorano Silvia, Caironi Mario, Contardi Marco, Cataldi Pietro, Montano Simone, Athanassiou Athanassia

机构信息

Smart Materials, Istituto Italiano di Tecnologia, Via Morego 30, Genova, 16163, Italy.

Department of Earth and Environmental Sciences (DISAT), University of Milano - Bicocca, Piazza della Scienza, Milan, 20126, Italy.

出版信息

Adv Mater. 2025 Jul 4:e2502078. doi: 10.1002/adma.202502078.

DOI:10.1002/adma.202502078
PMID:40611787
Abstract

Preserving coral reefs is crucial for safeguarding marine biodiversity, global ecosystems, and coastal communities. Coral restoration focuses on farming and transplanting corals back onto reefs. However, traditional attachment methods, such as petroleum-based epoxy, pose environmental risks or provide inefficient affixation. Moreover, maximizing coral growth while farming boosts the restoration rate of the reefs. Hence, an environmentally friendly, conductive hardening bicomponent paste is developed to transplant and anchor corals, provide them with a solid growing substrate, and enable mineral accretion technology (MAT), a strategy to accelerate coral farming. The bicomponent paste consists of bio-based and biodegradable acrylate soybean oil matrix and graphene nanoplatelets fillers. The paste hardens through mixing, transitioning from a Young's modulus of ≃0.1 to ≃60 MPa and reaching a strength of ≃5 MPa. Rheological tests demonstrate the tunability of the crosslinking dynamics of the paste. The paste exhibits a resistivity of 0.1 Ω∙m, with stable electrical properties for over 40 days in seawater. MAT tests show significant enhancement of coral growth rates within two weeks, doubling those of the control group. This paste offers versatility for application in aquaria and nurseries, does not require prone-to-oxidation metallic structures underwater, and can be employed on reefs.

摘要

保护珊瑚礁对于维护海洋生物多样性、全球生态系统和沿海社区至关重要。珊瑚修复主要致力于培育珊瑚并将其重新移植到珊瑚礁上。然而,传统的固定方法,如石油基环氧树脂,存在环境风险或固定效率低下的问题。此外,在培育过程中最大限度地促进珊瑚生长可提高珊瑚礁的修复速度。因此,开发了一种环保的、具有导电性的双组分硬化糊剂,用于移植和固定珊瑚,为它们提供坚实的生长基质,并启用矿物增生技术(MAT),这是一种加速珊瑚培育的策略。该双组分糊剂由生物基且可生物降解的丙烯酸酯大豆油基质和石墨烯纳米片填料组成。糊剂通过混合硬化,杨氏模量从约0.1兆帕转变为约60兆帕,强度达到约5兆帕。流变学测试表明糊剂交联动力学具有可调性。该糊剂的电阻率为0.1Ω∙m,在海水中40多天内电性能稳定。MAT测试表明,两周内珊瑚生长速度显著提高,是对照组的两倍。这种糊剂在水族馆和育苗场应用具有通用性,不需要水下易氧化的金属结构,并且可用于珊瑚礁。

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