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Electrochemical recovery of zinc from the spent pickling baths coming from the hot dip galvanizing industry. Potentiostatic operation

机译:从热浸镀锌行业的废酸洗槽中电化学回收锌。恒电位手术

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An electrochemical reactor was developed to recover zinc from the spent pickling solutions coming from the hot dip galvanizing industry. These solutions mainly contain ZnCl2 and FeCl2 in aqueous HC1 media. The effect of the applied potential on the figures of merit (fractional conversion, current efficiency, space-time yield and specific energy consumption) of the electrochemical reactor was analysed. Voltammetric experiments were performed previously in order to select the optimum conditions to be applied in the electrolysis experiments. From the I-V curves it was inferred that bulk zinc deposition started from potential values more cathodic than -0.99 V. The hydrogen evolution reaction (HER) appeared from -0.45 V and masked the zinc cathodic peak C1, related to bulk zinc deposition, at high HC1 concentrations. The presence of HC1 inhibited iron deposition in synthetic samples. The additives present in the real baths, which diminish the massive hydrogen generation, allowed the observation of peak C1.The potential values to be applied in the electrolysis experiments were chosen from the voltammetric experiments and ranged between -1 V and -1.75 V. In the absence of iron in solution, as the electrode potential was shifted towards more negative values, the space-time yield of zinc and its fractional conversion increased because of the increase in the electrode roughness and the hydrogen turbulence-promoting action. Simultaneously, the specific energy consumption decreased initially due to the increase in the zinc conversion rate but decreased for the most cathodic potential value due to HER. The presence of iron in synthetic solutions led to a decrease in current efficiency associated with the reverse redox Fe~(2+)/ Fe~(3+) system and to the enhancement of the HER, which also induced increments in the local pH and the subsequent zinc redissolution for the most cathodic potential values. On the contrary, the additives present in the real spent pickling baths avoided the adverse effects of iron, and zinc electrodeposition was possible even at high cathodic potential values. In fact, a potential value of -1.75 V was selected as the optimum since the conversion, the current efficiency and the space time yield obtained in the real baths were relatively high.
机译:开发了电化学反应器以从热浸镀锌工业的废酸洗溶液中回收锌。这些溶液在HCl水溶液中主要包含ZnCl2和FeCl2。分析了施加电势对电化学反应器的品质因数(分数转换,电流效率,时空产率和比能耗)的影响。先前进行了伏安实验,以便选择要在电解实验中应用的最佳条件。从IV曲线可以推断出,大量锌的沉积从高于-0.99 V的阴极电位开始。在-0.45 V处出现了析氢反应(HER),并掩盖了与大量锌沉积有关的锌阴极峰C1。 HCl浓度。 HCl的存在会抑制合成样品中的铁沉积。实际浴中存在的添加剂可以减少大量氢的产生,从而可以观察到C1峰。从伏安法实验中选择电解实验中的电势值,范围为-1 V至-1.75 V.在溶液中不存在铁的情况下,由于电极电位向负值移动,锌的时空产率及其分数转化率因电极粗糙度的增加和氢湍流促进作用而增加。同时,比能耗最初由于锌转化率的提高而降低,但由于HER而在最大阴极电位值时降低了。合成溶液中铁的存在导致与反向氧化还原Fe〜(2 +)/ Fe〜(3+)系统相关的电流效率降低,并导致HER增强,这也导致局部pH和随后进行锌再溶解,获得最大的阴极电位值。相反,在真正的酸洗槽中存在的添加剂避免了铁的不利影响,即使在高阴极电位下也可以进行锌电沉积。实际上,由于在实际浴中获得的转化率,电流效率和时空产率相对较高,因此将电位值-1.75 V选择为最佳。

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