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KOH activated carbon from conventional and microwave heating system of a macroalgae waste from the Agar-Agar industry

机译:来自琼脂-琼脂工业的大型藻类废物的常规和微波加热系统的KOH活性炭

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摘要

In this research the use of a macroalgae waste, algae meal, from the Agar-Agar industry is studied as precursor of activated carbon. Algae meal has a high carbon and nitrogen content, low ash content and absence of heavy metals. Activated carbons were prepared by KOH chemical activation by conventional and microwave heating system. The precursors studied were: algae meal and the carbonized waste obtained by pyrolysis at 750 °C in previous works of energy use of this marine biomass waste. The nature of the precursor, the influence of the activation temperature and KOH/precursor weight ratio were investigated and discussed. Furthermore the effect of conventional and microwave activation, was studied. The best activated carbons were obtained by conventional activation using algae meal as precursor. Under appropriate activation conditions it is possible to obtain adsorbent materials with S_(BET) surface areas and pore volume as high as 2118 m~2/g and 1.14 cm~3/g respectively. Microwave activation favours the development of ultramicroporosity whereas medium-size micropore and mesopore formation was predominant in the material obtained by means of the electrical conventional furnace. Converting this macroalgae waste in activated carbon could solve environmental problems since a considerable portion of this residue is disposed of by landfill.
机译:在这项研究中,将琼脂-琼脂工业中的大型藻类废物藻粉用作活性炭的前体。藻粉的碳和氮含量高,灰分含量低,并且不含重金属。活性炭是通过常规和微波加热系统通过KOH化学活化而制备的。研究的前体是:藻粉和在先前对该海洋生物质废物进行能源利用的工作中,在750°C下热解获得的碳化废物。研究和讨论了前体的性质,活化温度的影响以及KOH /前体重量比。此外,研究了常规和微波活化的作用。使用藻粉作为前体,通过常规活化获得了最佳的活性炭。在适当的活化条件下,可以获得具有S_(BET)表面积和孔体积分别高达2118 m〜2 / g和1.14 cm〜3 / g的吸附材料。微波活化有利于超微孔的发展,而中型微孔和中孔的形成在通过常规电炉获得的材料中占主导地位。将这种大型藻类废物转化为活性炭可以解决环境问题,因为该残余物中有相当一部分是由垃圾填埋场处置的。

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