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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Turning Leucaena leucocephala bark to biochar for soil application via statistical modelling and optimization technique
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Turning Leucaena leucocephala bark to biochar for soil application via statistical modelling and optimization technique

机译:通过统计建模和优化技术将银合欢皮转化为生物炭用于土壤应用

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Soil applicable biochar has been prepared from bark of Leucaena leucocephala wood which is a waste generated during its pulping and papermaking process. The slow pyrolysis process adopted for this purpose has been modelled and optimized employing central composite design and desirability function under response surface methodology taking temperature (308-592 degrees C) and time (35-205 min) as independent variable while yield, loss on ignition, stable organic matter, oxidisable carbon and carbon liability index as dependent variable. L. leucocephala bark was characterized in terms of proximate analysis (moisture 4.90%, ash 7.20%, fixed carbon 18.10%, volatile matter 69.80%), elemental analysis (carbon 45.78%, hydrogen 10.67%, nitrogen 1.77%, oxygen 32.08%, sulphur 0.09%), lignocellulosic composition (holocellulose 45.86%, hemicellulose 15.01%, lignin 34.75%) and compared with a wide range of feedstocks to find its suitability towards biochar production. The optimum pyrolysis temperature and residence time were found to be 350 degrees C and 60 min respectively which gave biochar yield 53.16%, loss on ignition 88.17%, oxidisable carbon 28.82%, stable organic matter 38.48%, and carbon liability index 0.32. The biochar produced at optimum conditions were characterized by proximate analysis (moisture 0.65%, ash 11.83%, fixed carbon 40.2%, volatile matter 47.57%) and elemental analysis (carbon 62.91%, hydrogen 3.12%, nitrogen 2.65%, oxygen 20.74%, sulphur 0.05%). The O/C ratio of 0.25 and H/C ratio of 0.60 confirmed its life between 100-1000 years and appropriateness for soil application as well as carbon sequestration. (C) 2015 Elsevier B.V. All rights reserved.
机译:土壤适用的生物炭是由白桦木材的树皮制备的,该木材是制浆和造纸过程中产生的废物。为此采用了慢速热解过程进行建模和优化,采用中心复合设计和期望函数,在响应面方法下,以温度(308-592摄氏度)和时间(35-205分钟)为自变量,同时收率,燃烧损失,稳定的有机物,可氧化的碳和碳负债指数作为因变量。白头翁树皮的特征在于最近的分析(水分4.90%,灰分7.20%,固定碳18.10%,挥发性物质69.80%),元素分析(碳45.78%,氢10.67%,氮1.77%,氧32.08%,含硫量为0.09%),木质纤维素成分(全纤维素为45.86%,半纤维素为15.01%,木质素为34.75%),并与各种原料进行了比较,发现其适合生产生物炭。最佳热解温度为350℃,停留时间为60 min,生物炭产率为53.16%,灼烧损失为88.17%,可氧化碳为28.82%,稳定有机物为38.48%,碳易感指数为0.32。在最佳条件下生产的生物炭的特征是通过近距离分析(水分0.65%,灰分11.83%,固定碳40.2%,挥发性物质47.57%)和元素分析(碳62.91%,氢3.12%,氮2.65%,氧20.74%,硫0.05%)。 O / C比0.25和H / C比0.60证实了其100-1000年的使用寿命,适用于土壤施用和固碳。 (C)2015 Elsevier B.V.保留所有权利。

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