Studying the application of fish-farming net-cleaning waste as fire-retardant for Scots pine (Pinus sylvestris L.) sapwood

Edita Garskaite , Maria M. Estevez , Alexandra Byström , Michael Försth , Zivile Stankeviciute , Denis Sokol , Matthew Steele , Dick Sandberg
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引用次数: 1

Abstract

Optimising the exploitation of available waste resources for the recovery of their intrinsic value will be vital in the future circular economy society. Recovery of energy, nutrients and metals from waste streams is in focus today. This study aimed to evaluate the use of an aquaculture waste, i.e. the dried-solid waste discharge that generates by cleaning the fishing-nets, as a potential fire-retardancy promoter for Scots pine sapwood. As-received dried-solid waste from salmon-farming was calcined at different temperatures to evaluate material phase transformation and achieve homogeneous phase distribution. Thermal degradation of waste powders was studied by TG-FTIR gas analysis when annealing the material to temperatures up to 800°C, and the crystallinity, phase composition, morphology, elemental composition and particle sizes of as-received and calcined-waste materials at different temperatures were evaluated by XRD, FTIR, SEM/EDS, and TEM analyses. The flammability studies using cone calorimeter of Scots pine sapwood blocks treated with as-received and processed material is also reported and discussed. Results were promising, indicating that the aquaculture waste could be employed as an effective fire-retardant. The possibility of value-creation from waste discharges is enforced in this study so to promote the way towards waste valorisation and circular economy.

渔网清洗废液作为苏格兰松边材阻燃剂的应用研究
在未来的循环经济社会中,优化利用可利用的废弃资源,回收其内在价值是至关重要的。从废物流中回收能源、营养物质和金属是当今的重点。本研究旨在评价水产养殖废弃物(即清洗渔网产生的干燥固体废弃物排放)作为苏格兰松边材的潜在阻燃促进剂的利用。对收到的鲑鱼养殖固体废物进行了不同温度的煅烧,以评估物质相变并实现相分布均匀。采用TG-FTIR气体分析方法研究了废粉体在800℃退火条件下的热降解过程,并采用XRD、FTIR、SEM/EDS、TEM等分析方法对不同温度下接收废粉体和煅烧废粉体的结晶度、相组成、形貌、元素组成和粒度进行了表征。本文还报道并讨论了用圆锥体量热计对苏格兰松边材块进行的可燃性研究。结果表明,水产养殖废弃物可以作为一种有效的阻燃剂。在本研究中,强化了废物排放创造价值的可能性,以促进废物增值和循环经济的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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