竹材可持续生物质型煤的生产与表征

Settu Krishnamoorthi, Muthusamy Palani Divya, Iyapillai Sekar, George Jenner Varuvel, Ramasamy Ravi, Palanivel Hemalatha
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引用次数: 0

摘要

竹子是一种快速生长的多年生高大乔木状多年生草本植物,用途广泛,生长在印度的许多地方。每年,以竹为基础的工业产生14.6%-33.5%的竹废物,这些竹废物可以以压块的形式得到更好的利用,竹基压块为农业工业、茶和咖啡工业、食品加工业、砖窑、饮料工业和制药工业等不同行业提供煤炭和松散生物质需求的替代资源。采用中试液压活塞式成型机,对普通竹、多形竹、长叶竹、竹竹、长叶竹、大叶竹等6种竹子制成的型煤进行了物理-热化学分析。以4年生竹竹秆为原料制备的型煤的水分(4.75%)、灰分(2.37%)、挥发物(71.59%)、固定碳含量(26.04%)、总热值(19.09 MJ kg−1)、容重(367.7 kg cm−3)、能量密度(7.03 MJ m−3)、抗压强度(6.60 MPa)、抗摔性能(0.31%)和膨胀性能(3.54)为指标,得出了较好的实验结果。由特里普拉邦当地可用的竹子品种生产的压块可能会满足对热能的需求,并在各种工业中替代煤炭和松散生物质的使用,特别是在印度东北部。
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Production and Characterization of Sustainable Biomass Briquettes from Selected Bamboo Species
Bamboo is a diverse group of fast growing perennial tall tree-like perennial grass species, versatile and growing in many parts of India. Every year, the bamboo based industries produce 14.6%–33.5% of bamboo waste, which could be better utilized in the form of briquettes, with the bamboo-based briquettes providing alternative resources for coal and loose biomass requirements in the diverse industries e.g., agro-industries, tea and coffee industries, food processing industries, brick kilns, beverage industries, and pharmaceutical industries. The physic-thermo-chemical analysis was conducted in the briquette produced from six bamboo species namely Bambusa vulgaris, Bambusa polymorpha, Bambusa cacharensis, Bambusa balcooa, Dendrocalamus longispathus , and Melocanna baccifera , by using a pilot hydraulic piston briquette machine. The current study concludes that the briquettes produced from a 4-year-old culm of Bambusa polymorpha gave better performance based on the briquettes properties of moisture content (4.75%), ash content (2.37%), volatile matter (71.59%), fixed carbon content (26.04%), gross calorific value (19.09 MJ kg−1), bulk density (367.7 kg cm−3), energy density (7.03 MJ m−3), compression strength (6.60 MPa), drop resistance test (0.31%), and swelling (3.54), respectively. The briquettes produced from locally available bamboo species in Tripura could potentially fulfill the demand for thermal energy and be an alternative to the usage of coal and loose biomass in the diverse industries, especially in the state of North-East India.
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来源期刊
Journal of Biobased Materials and Bioenergy
Journal of Biobased Materials and Bioenergy 工程技术-材料科学:生物材料
自引率
0.00%
发文量
60
审稿时长
6 months
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