An Hyesung, Yoo Mi, Ha Hyunwoo, Choi Hyuk, Kang Eunji, Kim Hyun You
Department of Materials Science and Engineering, Chungnam National University, 99 Daehak-ro, Yuseong-gu, Daejeon, 34134, Republic of Korea.
Sci Rep. 2019 Nov 13;9(1):16702. doi: 10.1038/s41598-019-53389-7.
We study the mechanism of alkane reduction of SnO for efficient low-temperature recovery of Sn from SnO. Based on thermodynamic simulation results, we comparatively analyze the reduction behavior and the efficiency of SnO reduction by H and alkanes (CH, 0 ≤ x ≤ 4). We found that alkanes (n·CH) with the higher nx generally complete the reduction of SnO (T) at the lower temperature. Moreover, the T of the SnO reduction by alkanes (n·CH) was decreased from the T of pure hydrogen with the same amount of hydrogen atoms (n·H). We found that the concentration of a gas phase product mixture, the amount of the produced solid carbon, and the T complementary vary as a function of the nx and ny, the total amount of carbon and hydrogen atoms in the reducing gas phase molecules. Our results demonstrate a viability of the low temperature reduction method of SnO by alkanes for efficient recovery of Sn from SnO, which can be applied for Sn recovery from Sn containing industrial wastes or Sn ores with economic value added that is held by the co-produced H.
我们研究了SnO的烷烃还原机制,以实现从SnO中高效低温回收Sn。基于热力学模拟结果,我们比较分析了H和烷烃(CH,0≤x≤4)对SnO的还原行为及还原效率。我们发现,nx较高的烷烃(n·CH)通常在较低温度下完成SnO(T)的还原。此外,烷烃(n·CH)还原SnO的T低于具有相同氢原子数(n·H)的纯氢气的T。我们发现,作为还原气相分子中碳和氢原子总量的nx和ny的函数,气相产物混合物的浓度、生成的固体碳的量以及T互补变化。我们的结果证明了通过烷烃对SnO进行低温还原以从SnO中高效回收Sn的可行性,这可应用于从含Sn工业废料或具有经济附加值的Sn矿石中回收Sn,而这由联产的H实现。