首页> 外文期刊>Separation and Purification Technology >A pilot study on a membrane process for the treatment and recycling of spent final rinse water from electroless plating
【24h】

A pilot study on a membrane process for the treatment and recycling of spent final rinse water from electroless plating

机译:对膜工艺进行化学处理的初步研究,该工艺用于处理和回收化学镀废旧水

获取原文
获取原文并翻译 | 示例
       

摘要

A hybrid process that includes microfiltration, UV irradiation, carbon adsorption, nanofiltration and ion exchange for treating and recycling spent final rinse water from an electroless plating operation has been developed. The process comprises four steps: (1) wastewater stream segregation, in which spent final rinses are segregated from other more heavily contaminated rinses and are combined to form a raw feed water stream for treatment; (2) pretreatment, in which the raw feed water stream is treated to remove particulates, microorganisms and free chlorine, and to reduce TOC; (3) heavy metal removal, in which the pretreated water is separated into a concentrate stream (containing salts) and a permeate stream (clean water) using a nanofiltration membrane: (4) polishing step, in which the permeate is further deionised using a mixed bed. The polished permeate stream is then recycled back to the plating operation rinsing system. The results of a pilot study showed that high quaity product water (heavy metals free and < 5 muS/cm in conductivity) is being consisently produced using a NF membrane system with an ovrall water recovery of 90%. The product water treated using this hybrid process is being recycled for use in the plant operation with no detrimental effects. The design data for a ful scale NF plant with a treatment capacity of 25 m~3/h has been obtained and the estimated payback period is between 13 and 18 months. The process is more applicable for reclaiming wastewater containing mainly heavy metals but low in monovalent ions.
机译:已经开发出一种混合工艺,包括微滤,紫外线辐射,碳吸附,纳滤和离子交换,用于处理和回收来自化学镀操作的废最终漂洗水。该过程包括四个步骤:(1)废水流分离,其中用过的最终漂洗液与其他污染更严重的漂洗液分离,合并形成未经处理的原料水流; (2)预处理,在该预处理中,对原料进料流进行处理以除去颗粒物,微生物和游离氯,并降低总有机碳(TOC); (3)重金属去除,其中使用纳滤膜将预处理后的水分离成精矿流(含盐)和渗透物流(净水):(4)抛光步骤,其中渗透液通过硅胶进一步去离子混合床。然后将抛光的渗透物流再循环回电镀操作漂洗系统。一项先导研究的结果表明,使用NF膜系统可始终如一地生产高品质的产品水(不含重金属,导电率<5μS/ cm),其零水回收率达90%。使用该混合工艺处理过的产品水将被循环用于工厂运营,而不会产生有害影响。获得了处理能力为25 m〜3 / h的大型NF工厂的设计数据,预计投资回收期为13到18个月。该方法更适用于回收主要包含重金属但单价离子含量低的废水。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号