通过添加剂混合提高生物质能源用麦草颗粒的品质。

IF 2.1 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Bidhan Nath, Guangnan Chen, Les Bowtell, Thong Nguyen-Huy
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引用次数: 0

摘要

通过颗粒化的生物质致密化提供了一种有前途的方法,从可再生资源生产清洁的生物燃料。本研究调查了添加剂混合物对麦草颗粒制造和提升理化性能的影响,揭示了令人兴奋的可能性。选择木屑(SD)、膨润土(BC)、玉米淀粉(S)、粗甘油(CG)和生物炭(BioC) 5种添加剂进行研究。使用实验室规模的颗粒磨机由七种不同的组合制成颗粒。根据ISO 17225 -8标准对所得颗粒的物理和元素特性进行了评估。与对照颗粒相比,添加剂共混物(T3-T7)在机械耐久性(80%至99%)、抗拉强度(0.36 MPa至2.09 MPa)和容重(244 kg/m3至665.21 kg/m3)方面均有显著改善,均符合ISO标准。此外,这些共混物保持了较低的细粒含量(1和T5)。固定碳含量从11.1%提高到30.90%,能量含量从17.02 MJ/kg提高到20.36 MJ/kg,均表现出明显的增效作用。这些发现强调了麦秸作为一种可行的生物质来源的潜力,通过颗粒化生产生物能源,为可再生能源的未来提供了一个充满希望的前景。然而,需要进一步的研究来优化添加剂的混合比例,以获得更高的颗粒质量。意义:该研究成功地证明了在麦草造粒过程中添加特定的材料可以显著提高作为生物燃料的颗粒的质量。以下是该声明的主要含义。麦秸是一种很有前途的生物燃料来源:通过颗粒化致密化使麦秸成为可再生能源生产的可行选择。添加剂提高颗粒质量:锯末、膨润土、玉米淀粉、粗甘油和生物炭提高颗粒的耐久性、强度、密度和能量含量。改进的颗粒性能符合行业标准:所得颗粒符合ISO机械强度,堆积密度和细粒含量标准。混合的协同作用:不同添加剂混合使用比单独使用效果更好。进一步研究的需要:优化这些添加剂的比例可能会产生更好的生物燃料颗粒。总的来说,该研究强调了添加特定添加剂的麦草造粒作为可持续和有效的生物燃料选择的潜力。虽然还有进一步改进的空间,但初步研究结果令人鼓舞。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancement of wheat straw pellet quality for bioenergy through additive blending.

Densification of biomass through pelletizing offers a promising approach to producing clean biofuels from renewable resources. This study, which investigates the impact of additive blends on wheat straw pellet making and upgrading the physiochemical properties, has revealed exciting possibilities. Five additives, including sawdust (SD), bentonite clay (BC), corn starch (S), crude glycerol (CG), and biochar (BioC), were chosen for this study. Pellets were made from seven different combinations using a laboratory-scale pellet mill. The resulting pellets' physical and elemental properties were assessed against ISO 17,225-8 standards. Compared to control pellets, additive blends (T3-T7) exhibited significant improvements in mechanical durability (80% to 99%), tensile strength (0.36 MPa to 2.09 MPa), and bulk density (244 kg/m3 to 665.21 kg/m3), all meeting ISO standards. Additionally, these blends maintained low fines content (<2%) and water absorption capacity (<2%, except T1 and T5). Furthermore, fixed carbon content increased from 11.1% to 30.90%, and energy content rose from 17.02 MJ/kg to 20.36 MJ/kg, which showed a significant synergistic effect of blending additives. These findings underscore the potential of wheat straw as a viable biomass source for bioenergy production through pelletization, offering a hopeful outlook for the future of renewable energy. However, further research is necessary to optimize additive mixing ratios for even greater pellet quality.Implications: The study successfully demonstrated that adding specific materials during wheat straw pelletizing significantly improves the quality of the pellets as a biofuel. Here are the key implications of the statement.Wheat straw is a promising biofuel source: Densification through pelletizing makes wheat straw a viable option for renewable energy production.Additives enhance pellet quality: Sawdust, bentonite clay, corn starch, crude glycerol, and biochar improve the pellets' durability, strength, density, and energy content.Improved pellet properties meet industry standards: The resulting pellets meet ISO standards for mechanical strength, bulk density, and fines content.Synergistic effect of blending: Combining different additives leads to a greater improvement than using them individually.Need for further research: Optimizing the ratios of these additives can potentially create even better biofuel pellets.Overall, the study highlights the potential of wheat straw pelletizing with specific additives as a sustainable and efficient biofuel option. There's room for further improvement, but the initial findings are promising.

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来源期刊
Journal of the Air & Waste Management Association
Journal of the Air & Waste Management Association ENGINEERING, ENVIRONMENTAL-ENVIRONMENTAL SCIENCES
CiteScore
5.00
自引率
3.70%
发文量
95
审稿时长
3 months
期刊介绍: The Journal of the Air & Waste Management Association (J&AWMA) is one of the oldest continuously published, peer-reviewed, technical environmental journals in the world. First published in 1951 under the name Air Repair, J&AWMA is intended to serve those occupationally involved in air pollution control and waste management through the publication of timely and reliable information.
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