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Titlebook: Agricultural Waste to Value-Added Products; Bioproducts and its Remya Neelancherry,Bin Gao,Alberto Wisniewski Jr Book 2024 The Editor(s) (

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发表于 2025-3-21 19:16:12 | 显示全部楼层 |阅读模式
期刊全称Agricultural Waste to Value-Added Products
期刊简称Bioproducts and its
影响因子2023Remya Neelancherry,Bin Gao,Alberto Wisniewski Jr
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发行地址Covers pressing issues of sustainable utilization of agricultural residue.Overviews trends in utilizing agricultural waste-derived products for environmental remediation.Highlights technical and econo
图书封面Titlebook: Agricultural Waste to Value-Added Products; Bioproducts and its  Remya Neelancherry,Bin Gao,Alberto Wisniewski Jr Book 2024 The Editor(s) (
影响因子.This book provides awareness about utilizing the agricultural waste to assist sustainable development goals (SDGs) through the adaptation of such waste-to-energy technologies. It discusses the synthesis, characterization, and environmental utilization of biofuels produced from agriculture-derived wastes. The application of circular economy, insights and opportunities of recent issues, and ideas for the potential enhancement of agricultural waste-derived products are also explored...About a third of all biomass waste is produced by agriculture, making it one of the largest contributors to global biomass waste. Different biochemical and thermochemical processes can transform this waste into a wide range of value-added products. Such biomass-to-biofuel trends have gained a prominent status in the global energy system. And the agro-waste-derived products can provide potential solutions to a wide range of environmental problems...The primary audience shall be academicians, researchers, engineers, scientists, and managers working in the field of agricultural residue management and waste biomass to energy... .
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Advancements in Hydrogen Production Technologies from Agricultural Waste,e such renewable energy source, which has become a significant contributor in the battle against global warming and is anticipated to protect our planet in the future due to its substantial energy capacity and absence of emissions. Diverse forms of biomass can be harnessed to generate such energy an
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Biochar as a Filter Media for Air Pollution Control Systems,ent of soil, the lessening of greenhouse gases’ emissions, and the elimination of inorganic and organic contaminants from aqueous systems. Recent studies have accumulated growing evidence indicating that biochar possesses the ability to eliminate all gaseous chemical pollutants present in the flue g
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Application of Biochar in Removal of Per- and Polyfluoroalkyl Substances from Aqueous Medium,ubiquitous presence in environmental matrices. This chapter provides a comprehensive exploration of PFAS contamination, emphasizing the environmental and health risks associated with these persistent substances. PFAS, exemplified by perfluorooctane sulfonic acid (PFOS) and perfluorooctanoic acid (PF
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Biochar-Based Fertilizers: A Smart Solution for Sustainable Agriculture,ate this problem is the conversion of surplus agricultural biomass to low volume, high value products like biochar-based slow-release fertilizers. Over the last few decades, the use of biochar as a soil amendment has increased due to its high surface area, porous structure, surface functional groups
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Biomass Conversion to Synthetic Aviation Fuels,petroleum-based fuels. One of the practical options, in this case, might be the generation of renewable aviation fuel from a variety of resources, such as waste materials, lignocellulosic biomass, sugar and starch, and oil crops. Compared to conventional jet fuels, biomass-derived jet fuels have the
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Utilization of Agricultural Wastes and By-Products in Asphalt: A Critical Review,s such as crop residues and wood chips. Agricultural by-products, such as rice husk ash, sugarcane bagasse ash, palm oil fuel ash, and biomass ash, can be used to modify asphalt binders, enhancing road performance while minimizing waste and conserving resources in the pavement industry. However, the
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