首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >The interaction of N-butoxypropyl-N'-ethoxycarbonylthiourea with sulfide minerals: Scanning electrochemical microscopy, diffuse reflectance infrared Fourier transform spectroscopy, and thermodynamics
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The interaction of N-butoxypropyl-N'-ethoxycarbonylthiourea with sulfide minerals: Scanning electrochemical microscopy, diffuse reflectance infrared Fourier transform spectroscopy, and thermodynamics

机译:N-丁氧基丙基-N'-乙氧基羰基硫脲与硫化物的相互作用:扫描电化学显微镜,漫反射红外傅里叶变换光谱和热力学

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The adsorption mechanism of N-butoxypropyl-N'-ethoxycarbonyl thiourea (BOPECTU) on chalcopyrite surfaces was investigated by thermodynamics, scanning electrochemical microscopy (SECM), and diffuse reflectance infrared Fourier transform (DRIFT) spectroscopy. The thermodynamic results demonstrated that the adsorption agreed well with the Langmuir or Freundlich isotherm and the adsorption parameters of thermodynamics were ?G (303 K) = -31.02kJ mol~(-1_, ?S = 10.92 J mol~(-1_ K~(-1) and ?H = -27.71 kJ mol~(-1). It inferred the adsorption of BOPECTU on chalcopyrite was a spontaneously exothermic chemisorption process. The in situ SECM images indicated the adsorption of BOPECTU on chalcopyrite resulted in the decrease of the current response. DRIFT spectra exhibited that after BOPECTU treatment, the characteristic peaks of copper-BOPECTU complex appeared on chalcopyrite surfaces, while on pyrite or sphalerite surfaces, no new peaks appeared. UV-vis and FTIR spectra elucidated that BOPECTU showed more affinities to Cu~(2+) ions than to Zn~(2+), Fe~(3+) or Fe~(2+) ions, and might bond copper atoms with its sulfur and nitrogen atoms. The results of flotation and adsorption experiments further demonstrated BOPECTU owned stronger collecting ability to chalcopyrite than to sphalerite or pyrite.
机译:通过热力学,扫描电化学显微镜(SECM)和漫反射红外傅里叶变换光谱(DRIFT)研究了N-丁氧基丙基-N'-乙氧基羰基硫脲(BOPECTU)在黄铜矿表面的吸附机理。热力学结果表明,吸附与Langmuir或Freundlich等温线吻合良好,热力学吸附参数为ΔG(303 K)= -31.02kJ mol〜(-1_,?S = 10.92 J mol〜(-1_ K〜 (-1),?H = -27.71 kJ mol〜(-1),表明BOPECTU在黄铜矿上的吸附是自发放热的化学吸附过程,原位SECM图像表明BOPECTU在黄铜矿上的吸附导致BOPECTU在黄铜矿上的吸附减少。 DRIFT光谱显示,经过BOPECTU处理后,铜-BOPECTU配合物的特征峰出现在黄铜矿表面,而在黄铁矿或闪锌矿表面没有出现新的峰,UV-vis和FTIR光谱表明BOPECTU显示出对铜的更多亲和力。 Cu〜(2+)离子与Zn〜(2 +),Fe〜(3+)或Fe〜(2+)离子发生键合,并可能将铜原子与其硫和氮原子键合。进一步证明了北京OPECTU拥有更强的搜集能力黄铜矿比闪锌矿或黄铁矿。

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