首页> 外文期刊>Biomass Conversion and Biorefinery >High-grade activated carbon from pyrolytic biochar of Jatropha and Karanja oil seed cakes-Indian biodiesel industry wastes
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High-grade activated carbon from pyrolytic biochar of Jatropha and Karanja oil seed cakes-Indian biodiesel industry wastes

机译:来自麻醉药和卡兰哈石油种子蛋糕 - 印度生物柴油行业废物的高级活性炭

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Most of the commercially available pyrolysis plants use fluidized bed technologies where bio-oil is the major product and the biochar produced is combusted for process heat. However, auger-based technologies are now gaining importance because of their small to medium scale of operation and decentralized nature where biochar is obtained as a by-product. One of the factors which may greatly influence the techno-economic viability of such decentralized plants is making high-grade carbon from pyrolytic biochar. In the present study, Jatropha and Karanja oil seed cake-based biochar is obtained as a by-product in a pilot-scale (20 kg/h) direct gas-fired auger pyrolysis process at 500 A degrees C under fast pyrolysis conditions that is originally aimed at maximizing the bio-oil yield. The biochar has low surface area and porosity. To value add to this carbon, downstream physical and chemical activation are carried out in an externally heated laboratory-scale reactor. CO2 activation resulted in the formation of activated carbon with BET surface area up to similar to 200 m(2)/g with marginal improvement in porosity, while K2CO3 activation enhanced the surface area to as high as 2400 m(2)/g along with substantial enhancement of porosity.
机译:大多数商业上可获得的热解植物使用流化床技术,生物油是主要产物,产生的生物炭燃烧用于工艺热量。然而,基于螺旋钻的技术现在正在获得重要性,因为它们小于中等的操作规模和分散性,并且获得生物炭作为副产品。可能极大地影响这种分散式植物的技术经济可行性的因素之一是从热解生物炭制造高级别的碳。在本研究中,在快速热解条件下以500℃下,在试验尺度(20kg / h)直接燃气螺旋钻热解过程中以500℃下的副产物获得基于麻风树和卡朗加籽油种子的生物炭。最初旨在最大化生物油产量。 Biochar具有低表面积和孔隙率。值加入该碳,下游物理和化学活化在外部加热的实验室级反应器中进行。 CO 2活化导致与BET表面积形成的活性炭,高达200μm(2)/ g,孔隙率下边缘改善,而K2CO3活化会增强表面积,高达2400米(2)/ g以及孔隙度的大量提高。

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