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Recovery of Essential Plant Nutrients from Biofuel Residual 被引量:1
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作者 S. Agyin- Birikorang G. A. O’ Connor +1 位作者 P. C. Pullammanappallil G. R. Mohan 《Journal of Sustainable Bioenergy Systems》 2013年第2期149-159,共11页
Essential plant nutrients contained in residues and wastes generated during biofuel processing can be recovered for further production of bioenergy biomass. The objective of this study was to determine the relative ag... Essential plant nutrients contained in residues and wastes generated during biofuel processing can be recovered for further production of bioenergy biomass. The objective of this study was to determine the relative agronomic efficiency of “processed” biofuel residual (PBR). Liquid biofuel residual was “processed” by precipitating phosphate and ammonium in the residual with magnesium into a struvite-like material. Then, in a series of greenhouse experiments, we evaluated the fertility potential of PBR, using sweet sorghum (Sorghum bicolor (L.) Moench), as a test bioenergy crop. We compared the agronomic effectiveness of PBR to inorganic commercial fertilizers, biosolids, and poultry manure as nutrient sources. The sources were either applied alone or in combination with supplemental essential plant nutrients (S, K, Mg, and micronutrients). In each of the greenhouse experiments, the crop was grown for 12 wk on soil of minimal native fertility. After each harvest, sufficient water was applied to the soil in each pot over a 6-wk period to yield ~2 L (~one pore volume) of leachate to assess potential total N and soluble reactive phosphorus (SRP) losses. Dry matter yields from the PBR treatment applied alone were significantly greater than yields from inorganic fertilizers, biosolids, and poultry manure treatments applied alone, and similar to yields obtained when the supplemental essential plant nutrients were added to the inorganic fertilizer, biosolids, and manure treatments. Leachate N and SRP concentrations from the PBR treatment were significantly lower than in the treatments with inorganic fertilizers, poultry manure, and biosolids. We conclude that PBR can substitute for inorganic fertilizers and other organic sources of plant nutrients to produce bioenergy biomass cheaply, without causing offsite N and P losses in vulnerable soils. 展开更多
关键词 BIOENERGY Biomass Dry Matter Yield Leaching N and P Losses processed biofuel residual (pbr) SWEET SORGHUM
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林业剩余物颗粒燃料成型工艺 被引量:7
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作者 黄逢龙 刘大椿 +2 位作者 邓欲 周日巍 龚伟 《林业科技开发》 北大核心 2014年第3期115-118,共4页
分析了环模孔长径比、林业剩余物的粒度、含水率和进料转速对颗粒燃料成型的影响,并找出了杉木、松木、樟木、杂灌、锯末、竹屑6种林业剩余物的颗粒燃料较佳成型工艺条件。检测结果显示,生产的林业剩余物颗粒燃料的密度在1.1 g/cm3以上... 分析了环模孔长径比、林业剩余物的粒度、含水率和进料转速对颗粒燃料成型的影响,并找出了杉木、松木、樟木、杂灌、锯末、竹屑6种林业剩余物的颗粒燃料较佳成型工艺条件。检测结果显示,生产的林业剩余物颗粒燃料的密度在1.1 g/cm3以上,以杉木和松木为原料的颗粒燃料的热值最高,超过17 800 kJ/kg。 展开更多
关键词 林业剩余物 颗粒燃料 成型工艺
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药渣衍生改性燃料:热化学转化规律与机制
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作者 梁学斌 卫怡琳 +4 位作者 周哲宁 詹昊 曾志勇 冷立健 彭好义 《化工进展》 2025年第1期477-489,共13页
当前,我国制药产业蓬勃发展且增速迅猛,其工艺过程会不可避免地产生大量药渣,主要分为中药渣和抗生素菌渣两类,具有资源和废物双重属性。实现药渣的清洁高效资源化,在保护环境和节约资源层面,对于国家、行业和企业均具有积极意义,能源... 当前,我国制药产业蓬勃发展且增速迅猛,其工艺过程会不可避免地产生大量药渣,主要分为中药渣和抗生素菌渣两类,具有资源和废物双重属性。实现药渣的清洁高效资源化,在保护环境和节约资源层面,对于国家、行业和企业均具有积极意义,能源化利用是目前技术水平下最直接有效的途径。本文围绕热化学转化策略,以固、气、液燃料为目标产物,综述了目前两类药渣的热化学转化特点与影响因素、过程组分演化机制、产物特性规律等相关研究进展。现有研究结果表明,药渣的高水、富氮和丰氧等缺陷属性,是制约其清洁高效能源化的主要障碍。脱水、烘焙等预处理手段,通过基于水、碳、氮组分迁移演化调控的提质降氮机制,可强化药渣衍生固体燃料性能,但效果有限,同时会带来二次副产物的处置问题;热解、气化或水热液化等手段,可将药渣转化为具有更高能量密度的气液燃料,但反应中如氮、氧、灰等有害/无用组分在各相的演化和赋存机制,会不同程度地降低相应衍生燃料的品质或产率。因此,未来的研究应从探索更经济环保的热化学策略角度来解决上述缺陷属性,以实现药渣到衍生高值燃料的清洁高效转化。此外,通过现有结论的对比,提出了水热与后续热化学手段的耦合联用,可作为药渣全质清洁资源化的潜力方向。 展开更多
关键词 药渣 热化学转化 生物燃料 缺陷属性 水热
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