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利用麻风树油籽饼发电

Bio-electricity Generation using Jatropha Oil Seed Cake.

作者信息

Raheman Hifjur, Padhee Debasish

机构信息

Department of Agricultural & Food Engineering, Indian Institute of Technology, Kharagpur 721302 India.

出版信息

Recent Pat Biotechnol. 2016;10(1):79-85. doi: 10.2174/1872208310666160830162304.

Abstract

BACKGROUND

The review of patents reveals that Handling of Jatropha seed cake after extraction of oil is essential as it contains toxic materials which create environmental pollution.

METHODS

The goal of this work is complete utilisation of Jatropha seeds. For this purpose, Jatropha oil was used for producing biodiesel and the byproduct Jatropha seed cake was gasified to obtain producer gas. Both biodiesel and producer gas were used to generate electricity. To achieve this, a system comprising gasifier, briquetting machine, diesel engine and generator was developed.

RESULTS

Biodiesel was produced successfully using the method patented for biodiesel production and briquettes of Jatropha seed cake were made using a vertical extruding machine. Producer gas was obtained by gasifying these briquettes in a downdraft gasifier. A diesel engine was then run in dual fuel mode with biodiesel and producer gas instead of only diesel. Electricity was generated by coupling it to a generator.

CONCLUSION

The cost of producing kilowatthour of electricity with biodiesel and diesel in dual fuel mode with producer gas was found to be 0.84 $ and 0.75 $, respectively as compared to 0.69 $ and 0.5 $ for the same fuels in single fuel mode resulting in up to 48 % saving of pilot fuel. Compared to singlefuel mode, there was 25-32 % reduction in system and brake thermal efficiency along with significantly lower NOx, higher CO and CO2 emissions when the bio-electricity generating system was operated in dual fuel mode. Overall, the developed system could produce electricity successfully by completely uti- lising Jatropha seeds without leaving any seed cake to cause environmental pollution.

摘要

背景

对专利的审查表明,麻疯树籽榨油后饼粕的处理至关重要,因为其含有会造成环境污染的有毒物质。

方法

这项工作的目标是实现麻疯树籽的完全利用。为此,麻疯树油用于生产生物柴油,副产品麻疯树籽饼粕被气化以获得发生炉煤气。生物柴油和发生炉煤气都用于发电。为实现这一目标,开发了一个包括气化炉、压块机、柴油发动机和发电机的系统。

结果

使用获得专利的生物柴油生产方法成功生产出了生物柴油,并用立式挤压机制成了麻疯树籽饼粕的压块。通过在下行式气化炉中气化这些压块获得了发生炉煤气。然后,一台柴油发动机以双燃料模式运行,使用生物柴油和发生炉煤气而非仅使用柴油。通过将其与发电机相连来发电。

结论

发现使用生物柴油和柴油以双燃料模式与发生炉煤气一起生产每千瓦时电力的成本分别为0.84美元和0.75美元,而在单燃料模式下相同燃料的成本分别为0.69美元和0.5美元,从而节省了高达48%的引燃燃料。与单燃料模式相比,当生物发电系统以双燃料模式运行时,系统和制动热效率降低了25% - 32%,同时氮氧化物显著降低,一氧化碳和二氧化碳排放量更高。总体而言,所开发的系统能够通过完全利用麻疯树籽成功发电,而不会留下任何籽饼造成环境污染。

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