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Preparation of feed grade calcium formate from calcium carbide residue

机译:用电石渣制备饲料级甲酸钙

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摘要

Calcium carbide residue is generated from the reaction of CaC2 (calcium carbide) and water in the production of acetylene in the chlor-alkali industry. The main component contained in calcium carbide residue is Ca(OH)(2) (calcium hydroxide). At present, great amounts of calcium carbide residue in China are disposed by land stockpiling or landfilling. These disposal practices cause serious environmental pollution and lead to resource wastage. Effective disposal methods by recycling and reusing the calcium carbide residue are urgently needed. In this paper, a novel method for producing feed grade calcium formate from calcium carbide residue is introduced. The calcium carbide residue and CO (carbon monoxide) are utilized as raw materials to prepare Ca(HCOO)(2) (calcium formate) through the carbonylation synthesis route. The optimal reaction conditions (reaction temperature = 200 A degrees C, reaction pressure = 6 MPa, reaction time = 22.5 min, and slurry concentration = 0.125 g/mL) have been obtained through pilot-scale experimental studies with the aim of producing high-quality feed grade calcium formate product. Data from the continuous pilot plant are used to evaluate the economic feasibility of the production method. In addition, CO, which is acquired from industrial exhausts, is innovatively used as a reactant to produce calcium formate instead of being treated as a waste material, reducing carbon dioxide emissions significantly. Therefore, the proposed method is a very promising clean and green chemical technology that turns calcium carbide residue and industrial exhaust gas into a useful product, promoting the development of industrial waste recycling in China.
机译:电石渣是由氯碱工业中乙炔生产中的CaC2(电石)与水反应生成的。电石残渣中包含的主要成分是Ca(OH)(2)(氢氧化钙)。目前,中国大量的电石渣是通过土地储备或垃圾掩埋处置的。这些处置方法会造成严重的环境污染,并导致资源浪费。迫切需要通过回收和再利用电石渣的有效处置方法。本文介绍了一种由电石渣生产饲料级甲酸钙的新方法。电石渣和CO(一氧化碳)被用作原料,通过羰基化合成路线制备Ca(HCOO)(2)(甲酸钙)。通过中试实验研究获得了最佳反应条件(反应温度= 200 A摄氏度,反应压力= 6 MPa,反应时间= 22.5分钟,料浆浓度= 0.125 g / mL),目的是生产高优质饲料级甲酸钙产品。来自连续中试工厂的数据用于评估该生产方法的经济可行性。另外,从工业废气中获取的一氧化碳被创新地用作生产甲酸钙的反应物,而不是被当作废料处理,从而大大减少了二氧化碳的排放。因此,该方法是一种非常有前途的清洁绿色化学技术,它将电石渣和工业废气转化为有用的产品,促进了中国工业废物循环利用的发展。

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