Social Awareness as a Catalyst for Biochar Adoption in the Agricultural and Forestry Sectors

IF 4.1 3区 工程技术 Q1 AGRONOMY
Dominika Janiszewska-Latterini, Joana Ortigueira, Tiago F. Lopes, Julia Gościańska-Łowińska, Dobrochna Augustyniak-Wysocka, Ewa Leszczyszyn, Catarina Nobre
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Abstract

Biochar, a carbon-rich material produced from the pyrolysis of organic matter, has garnered attention for its potential agricultural and environmental benefits, including soil improvement, enhanced crop yields and climate change mitigation. Despite its promise, biochar adoption has been hindered by limited social awareness, particularly in industrialised countries. This review explores the factors influencing biochar's acceptance in agriculture and forestry, focusing on the social aspects that affect its integration. A systematic literature review was conducted to identify studies on social awareness and acceptance, revealing significant barriers such as a lack of knowledge among farmers, high production costs and insufficient infrastructure. In industrialised countries, while technical research on biochar has progressed, farmers often remain unfamiliar with its benefits, and resistance to adoption is common. Studies show that social factors such as age, education level and access to funding play a crucial role in biochar adoption. Furthermore, a lack of government incentives and unclear regulatory frameworks exacerbate the challenge. Conversely, studies from lower-income countries suggest that small-scale, cost-effective biochar production systems may hold promise. The review also identifies strategies to enhance biochar's social acceptance, including targeted education programs, financial incentives and clearer regulatory standards. Despite varying levels of social awareness, the literature suggests that with increased outreach, biochar could significantly contribute to sustainable agricultural practices globally. This review underscores the need for further research into the social dimensions of biochar adoption and the implementation of policies to foster its widespread use.

Abstract Image

社会意识促进农业和林业部门采用生物炭
生物炭是一种由有机物热解产生的富含碳的物质,因其潜在的农业和环境效益而受到关注,包括改善土壤、提高作物产量和减缓气候变化。尽管前景光明,但由于社会意识有限,特别是在工业化国家,生物炭的采用受到了阻碍。本文探讨了影响生物炭在农业和林业中接受度的因素,重点是影响其整合的社会方面。我们进行了系统的文献综述,以确定有关社会意识和接受度的研究,揭示了农民缺乏知识、生产成本高和基础设施不足等重大障碍。在工业化国家,虽然生物炭的技术研究取得了进展,但农民往往不熟悉它的好处,对采用的抵制也很普遍。研究表明,年龄、教育水平和获得资金等社会因素在生物炭的采用中起着至关重要的作用。此外,缺乏政府激励和不明确的监管框架加剧了这一挑战。相反,来自低收入国家的研究表明,小规模、具有成本效益的生物炭生产系统可能有希望。该报告还确定了提高生物炭社会接受度的战略,包括有针对性的教育项目、财政激励和更明确的监管标准。尽管社会意识水平不同,但文献表明,随着推广的增加,生物炭可以为全球可持续农业实践做出重大贡献。这一综述强调需要进一步研究采用生物炭的社会层面和实施促进其广泛使用的政策。
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来源期刊
Global Change Biology Bioenergy
Global Change Biology Bioenergy AGRONOMY-ENERGY & FUELS
CiteScore
10.30
自引率
7.10%
发文量
96
审稿时长
1.5 months
期刊介绍: GCB Bioenergy is an international journal publishing original research papers, review articles and commentaries that promote understanding of the interface between biological and environmental sciences and the production of fuels directly from plants, algae and waste. The scope of the journal extends to areas outside of biology to policy forum, socioeconomic analyses, technoeconomic analyses and systems analysis. Papers do not need a global change component for consideration for publication, it is viewed as implicit that most bioenergy will be beneficial in avoiding at least a part of the fossil fuel energy that would otherwise be used. Key areas covered by the journal: Bioenergy feedstock and bio-oil production: energy crops and algae their management,, genomics, genetic improvements, planting, harvesting, storage, transportation, integrated logistics, production modeling, composition and its modification, pests, diseases and weeds of feedstocks. Manuscripts concerning alternative energy based on biological mimicry are also encouraged (e.g. artificial photosynthesis). Biological Residues/Co-products: from agricultural production, forestry and plantations (stover, sugar, bio-plastics, etc.), algae processing industries, and municipal sources (MSW). Bioenergy and the Environment: ecosystem services, carbon mitigation, land use change, life cycle assessment, energy and greenhouse gas balances, water use, water quality, assessment of sustainability, and biodiversity issues. Bioenergy Socioeconomics: examining the economic viability or social acceptability of crops, crops systems and their processing, including genetically modified organisms [GMOs], health impacts of bioenergy systems. Bioenergy Policy: legislative developments affecting biofuels and bioenergy. Bioenergy Systems Analysis: examining biological developments in a whole systems context.
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