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Physicochemical Property and Heating Value Analyses of Charcoal Briquettes From Agricultural Wastes: An Alternative Renewable Energy Source

机译:农业废弃物中的木炭块的理化性质和热值分析:替代可再生能源

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Biomass material is a potential source of renewable energy. Charcoal briquette from agricultural wastes has a great impact on energy crisis solution, waste management and clean environment. Physicochemical properties of the charcoals produced from rice straw, sugarcane leaves, sawdust and coconut shell were analyzed. All tests were done with standard methods. Proximate analysis showed that moisture content was 5.67-9.23%, volatile matter existed 9.75-72.57%, ash content ranged 2.58-11.27% and fixed carbon varied 8.92%-78.04%. Heating value determines the selectivity of fuel. Heating value was in the range of 15.37-31.13 MJ/Kg and coconut shell showed the highest value. Ultimate analysis was done and range of Carbon (C), Oxygen (O), Hydrogen (H), Nitrogen (N), Sulfur (S) were respectively 34.71-89.03%, 6.18-39.71%, 0.65-5.71%, 0.32-1.37% and 0.01-0.03%. Heating value is related to the composition of charcoal. Strong linear Relationship of heating value with carbon (Rn2n=0.99876) and oxygen carbon ratio (Rn2n=0.999) were found. Comparison of produced charcoals with local coal sample was also studied. Low Nitrogen and Sulfur content of experimented charcoals relative to local coal sample indicated that, the charcoals would be eco-friendly. The charcoal samples showed the prospective applications in energy related operations and possible smart solution of agricultural wastes converting into energy resources.
机译:生物质材料是可再生能源的潜在来源。农业废弃物中的木炭块对能源危机解决方案,废弃物管理和清洁环境有很大影响。分析了稻草,甘蔗叶,锯末和椰子壳生产的木炭的理化性质。所有测试均采用标准方法进行。近似分析表明,水分含量为5.67-9.23%,存在挥发性物质9.75-72.57%,灰分为2.58-11.27%,固定碳为8.92%-78.04%。热值决定了燃料的选择性。热值在15.37-31.13 MJ / Kg范围内,椰子壳显示最高值。进行了最终分析,碳(C),氧(O),氢(H),氮(N),硫(S)的范围分别为34.71-89.03%,6.18-39.71%,0.65-5.71%,0.32- 1.37%和0.01-0.03%。热值与木炭的成分有关。热量与碳的强线性关系(Rn 2 n = 0.99876)和氧碳比(Rn 2n=0.999)。还研究了生产的木炭与当地煤炭样品的比较。相对于当地煤样,实验木炭的氮和硫含量较低,表明该木炭具有生态友好性。木炭样本显示了在能源相关操作中的潜在应用以及将农业废弃物转化为能源的可能的智能解决方案。

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