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Titlebook: Agricultural Waste to Value-Added Products; Technical, Economic Remya Neelancherry,Bin Gao,Alberto Wisniewski Jr Book 2023 The Editor(s) (

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Stetige Maximierung auf stetigen Urbildernustainable development of agriculture and energy conservation and emission reduction but also realize the “double efficiency” of economy and ecology. Recently, although some progress has been made in the thermochemical conversion technology of agricultural waste worldwide, there are still some probl
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https://doi.org/10.1007/978-981-10-0721-7 in detail. In addition, the carbon sequestration and emission reduction mechanisms of AWB in soil were analyzed and summarized. The specific surface area, micropore volume, hydrophobicity, and alkaline groups of AWB become the key to the carbon sequestration capacity of AWB. Soil pH, moisture, and
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Bayesian Reliability Demonstrationits derivatives, such as rice husk ash (RHA), rice husk biochar (RHB), rice husk hydrochar (RHH), and activated carbon (RHAC), have been placed forefront for applications in agriculture and other industries. While the investigation of RH’s composition, microstructure, and by-products has been done i
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Bayesian Reliability Demonstrationts to treat various forms of wastewater from agricultural production activities. This wastewater might contain pollutants from multiple sources (i.e., heavy metals, pesticides, organic pesticides, fuels, and eutrophic waters), and NMs are capable of optimally removing different pollutants. Overall,
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M. Henke,A. Jaeger,H.-J. Zimmermannected technological advancements, are also discussed. Besides, selected waste biomass sources, biochemicals, biomass conversion pathways, derivatives, and potential applications are elaborately discussed.
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