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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effect of pyrolysis temperature and correlation analysis on the yield and physicochemical properties of crop residue biochar
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Effect of pyrolysis temperature and correlation analysis on the yield and physicochemical properties of crop residue biochar

机译:热解温和相关分析对作物残留生物炭产量和物理化学特性的影响

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The aim of this study was to evaluate how pyrolysis temperature influences the yield and physicochemical properties of biochar. We produced biochar from four feedstocks (wheat straw, corn straw, rape straw, and rice straw) pyrolyzed at 300, 400, 500, and 600 degrees C for 1 h, respectively. The results showed that all biochar yields decreased consistently with increasing temperature during pyrolysis and showed a steady decrease over 400 degrees C. Rice straw derived biochar had high yield superiority due to its higher content of ash. Pyrolysis temperature has significant effects on the properties of biochar; demonstrating a negative relationship with H, O, H/C, O/C, (O + N)/C, and functional groups, whilst having a positive relationship with C, ash, pH, electrical conductivity, and surface roughness. Higher pyrolysis temperature was beneficial to the formation of a more recalcitrant constitutions and crystal structure, making it available for material application.
机译:本研究的目的是评估热解温如何影响生物炭的产量和物理化学性质。 我们从四个原料(小麦秸秆,玉米秸秆,强奸秸秆和稻草)的生物炭分别在300,400,500和600℃下热解1小时。 结果表明,所有生物炭产量均断随着热解期间的温度呈增加而降低,并且由于其较高的灰分含量,稻草衍生的生物炭具有高产量优势而稳步下降。 热解温对生物炭的性质产生显着影响; 证明与H,O,H / C,O / C,(O + N)/ C和官能团的负关系,同时具有与C,灰,pH,导电性和表面粗糙度的阳性关系。 较高的热解温有利于形成更顽固的构成和晶体结构,使其可用于材料应用。

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