首页> 外文会议>International Latin-American Conference on Powder Technology; 20031119-21; Guaruja-Sao Paulo(BR) >SYNTHESIS OF NIOBIUM CARBIDE FROM AMMONIUM NIOBIUM(V) OXALATE PRECURSOR AT LOW TEMPERATURE IN ROTATING CYLINDER REACTOR
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SYNTHESIS OF NIOBIUM CARBIDE FROM AMMONIUM NIOBIUM(V) OXALATE PRECURSOR AT LOW TEMPERATURE IN ROTATING CYLINDER REACTOR

机译:旋转筒式反应器中低温下由草酸铌铌(V)前驱体合成碳化铌

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The reaction of oxalic precursor {(NH_4)_3[NbO(C_2O_4)_3]H_2O}, was prepared from the Nb_2O_5, to niobium carbide (NbC) were performed in a rotating cylinder reactor scale-lab designed to niobium carbide powders synthesis at low temperature (1173 K). The NbC was prepared by a oxalic precursor and as well of commercial niobium pentoxide under flowing CH_4- H_2 mixtures. The reactor was heated through a bi-partied electric furnace with programmable temperature. The reaction overall time was determined from the curve of methane absorption evolution by gas chromatograph (FID) analysis. The preliminary results showed that the conversion function depends on the rotation, temperature, mixture flow, CH_4/H_2 ratio and heating rate. The niobium carbide was characterized through X-ray diffraction and compared to the commercial products. The reaction of oxalic precursor {(NH_4)_3[NbO(C_2O_4)_3]H_2O} to niobium carbide (NbC) in 3% (v/v) CH_4/H_2 yielded smallest grain size as well smaller overall time when compared with obtained direct by commercial Nb_2O_5, however it had small mass conversion due the solid carryover not controlled.
机译:由Nb_2O_5制备草酸前体{(NH_4)_3 [NbO(C_2O_4)_3] H_2O}与碳化铌(NbC)的反应在旋转圆筒反应器规模实验室中进行,目的是在较低的温度下合成碳化铌粉末温度(1173 K)。 NbC是由草酸前体以及市售五氧化二铌在流动的CH_4-H_2混合物下制得的。通过具有可编程温度的双部分电炉加热反应器。通过气相色谱(FID)分析从甲烷吸收量的变化曲线确定反应总时间。初步结果表明,转换函数取决于转速,温度,混合物流量,CH_4 / H_2比和加热速率。通过X射线衍射对碳化铌进行表征,并与市售产品进行比较。草酸前体{(NH_4)_3 [NbO(C_2O_4)_3] H_2O}在3%(v / v)CH_4 / H_2中与碳化铌(NbC)的反应产生的晶粒尺寸最小,总时间更短。通过商业化的Nb_2O_5,它的质量转化率很小,因为固体残留物不受控制。

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