铜冶炼污酸和酸性废水“零排放”工艺设计
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康舒欣(1993—),女,河南三门峡人,硕士,环境工程师,主要从事环境管理工作。

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TF811;X758

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“Zero Discharge” Process Design of Contaminated Acid and Acidic Wastewater from Copper Smelting
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    摘要:

    某铜冶炼企业各个工序运行中产生大量的污酸和酸性废水,其中污酸具有酸度大、含砷浓度高的特点,易对环境和人体造成危害。本文通过“两级硫化+两段中和”组合工艺对污酸和酸性废水进行处理,两级硫化采用硫氢化钠沉淀去除污酸中的砷、铜等重金属元素,两段中和先采用石灰石中和污酸中的酸,再采用电石渣、铁盐中和除去重金属离子。处理后砷含量由8~14g/L降至低于0.5mg/L,H2SO4含量由125g/L降至0.5mg/L,达到《铜、镍、钴工业污染物排放标准》(GB 25467—2010)要求,并且能够满足厂区其他工序用水要求,实现污酸和酸性废水循环回收“零排放”的目标。

    Abstract:

    A large amount of contaminated acid and acidic wastewater are produced in the operation of each process of a copper smelting enterprise. The contaminated acid has the characteristics of high acidity and high arsenic concentration, which is easy to cause harm to the environment and human body. In this paper, the combined process of “two-stage sulfidation + two-stage neutralization” was used to treat the contaminated acid and acidic wastewater. The two-stage sulfidation used sodium hydrosulfide precipitation to remove heavy metal elements such as arsenic and copper in the contaminated acid. The two-stage neutralization used limestone to neutralize the acid in the contaminated acid, and then used calcium carbide slag and iron salt to neutralize the heavy metal ions. After treatment, the arsenic content was reduced from 8~14g/L to less than 0.5mg/L, and the H2SO4 content was reduced from 125g/L to 0.5mg/L, which met the requirements of national standard and could meet the water requirements of other processes in the plant area, and achieve the goal of “zero discharge” for the recycling of contaminated acid and acid wastewater.

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康舒欣.铜冶炼污酸和酸性废水“零排放”工艺设计[J].绿色矿冶,2024,(1):55-60

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  • 收稿日期:2023-09-04
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  • 在线发布日期: 2024-06-20
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