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Dephosphorization of chromium-rich ashes from thermally-treated leather waste for utilization in pyrometallurgical process

机译:热处理皮革废料中富铬灰烬的脱磷,用于火法冶金工艺

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Acid leaching was investigated to remove phosphorus from the ashes of thermally-treated (gasification and combustion process) footwear leather waste in order to obtain a good quality raw material for the production of a ferrochromium alloy. The ash contained high amounts of chromium (55 wt.% Cr_2O_3) and phosphorus (1.42 wt.% P). The following key factors were selected for study: temperature, H_2SO_4 concentration in the leaching solution, acid solution/ash ratio and the particle size of the ash. The response was the phosphorus removal percentage and, under some experimental conditions, chromium loss. The strategy was based on a 2~4 full factorial design with a central point followed by the addition of star points in a face-centered central composite design. The maximum chromium loss was 1.1 wt.%. The significant effects (according to variance analysis) were used for a proposed second-order response surface model. The model was useful for finding the optimal operating conditions in the experimental region by the maximization of phosphorus leaching. 99.22.5% phosphorus removal from the ash was achieved under the following conditions: 60, 13.9 wt.% of H_2SO_4 in the leaching solution, 4.80 (ml of acid solution)(g of ash)~(-1), 0.0370 0.0370 mm particle size. Mass balance was used as a tool to indicate that the remaining phosphorus content was acceptable for producing ferrochromium alloys.
机译:为了获得用于生产铬铁合金的优质原料,对酸浸法进行了研究,以从热处理(气化和燃烧过程)鞋类皮革废料的灰烬中去除磷。灰分包含大量的铬(55 wt。%Cr_2O_3)和磷(1.42 wt。%P)。选择了以下关键因素进行研究:温度,浸出溶液中的H_2SO_4浓度,酸溶液/灰分比和灰分的粒径。响应是除磷百分比,在某些实验条件下是铬的损失。该策略基于具有中心点的2〜4全因子设计,然后在以面为中心的中心复合设计中添加星点。最大铬损失为1.1重量%。显着效果(根据方差分析)用于建议的二阶响应面模型。该模型可用于通过最大程度地磷浸出找到实验区域中的最佳运行条件。在以下条件下从灰分中除磷99.22.5%:浸出溶液中60,13.9 wt。%H_2SO_4,4.80(ml酸性溶液)(g灰分)〜(-1),0.0370 0.0370 mm粒度。质量平衡被用作指示剩余磷含量对于生产铬铁合金可接受的工具。

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