共查询到19条相似文献,搜索用时 156 毫秒
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铅锌硫化矿浮选废水回用的应用研究 总被引:1,自引:0,他引:1
通过对一矿山的铅锌硫化矿浮选废水回用工艺的分析,提出了对部分浮选废水直接回用,其余部分废水适度净化处理后再回用,使浮选废水100%回用于选矿生产的处理工艺,本工艺可达到使浮选废水的完全回用的目的,对国内众多的浮选企业提出了一种可行的废水处理方法。 相似文献
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厌氧-气浮-UASB-SBR工艺处理酒精废水 总被引:2,自引:0,他引:2
介绍了厌氧-气浮-UASB-SBR处理工艺在酒精废水处理工程中的实际应用,分析并总结了工程设计及运行的经验。实践表明,经厌氧-气浮-UASB-SBR的工艺处理后,废水中COD和SS总去除效率分别可达到99.6%和99.8%以上,并可以回收大量的沼气和部分废水回用于生产过程中。该工艺具有运行稳定和处理效率高等优点,为企业带来了良好的经济效益和社会效益。 相似文献
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采用生物铁-接触氧化组合技术,研究各单元工艺和组合工艺的处理抗生素制药废水的效果、最佳控制参数和操作条件。结果表明,其CODCr去除率可超过90%,经处理后的出水可达到工厂回用水的水质要求,是处理抗生素制药废水行之有效的方法。 相似文献
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根据污染源头控制和废水回用的要求,对典型棉针织染整厂的不同生产过程废水排水水质特征进行了统计分析,提出了较实用的废水源头清浊分流方案。在此基础上重点研究了混凝-臭氧组合工艺对清废水处理效果,确定了最优的工艺条件。结果表明,清废水主要为洗水,占废水总量的25%~30%;混凝-臭氧组合工艺的最优工艺条件为:pH为6~9,PAC投加量为48 mg/L,PAM投加量为1.0 mg/L,臭氧接触时间为12 min(臭氧浓度为14.5 mg/L),这时,清废水COD、色度去除率分别为71%和98%,实践证明,出水水质完全能够满足染整生产。 相似文献
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传统湿法制备活性白土工艺中存在水耗、酸耗大等清洁水平较低的问题,本研究提出了在生产工艺流程中循环使用硫酸酸性废液、并从循环3次的硫酸废液中回收铝盐制备无铁硫酸铝的一种改良型湿法制备活性白土工艺,对末端治理采用电石渣替代石灰作为中和剂进行了探索性实验研究。实验结果表明,改良型湿法制备活性白土工艺对活性白土产品的理化性质无明显影响,产品质量符合行业标准,且酸的利用率从20%提高到约90%,水耗减少量为原工艺的1/3,无铁硫酸铝主要参数符合相关产品技术标准(HG/T2225-2001)。用电石渣作为中和剂处理酸性废液能够实现出水水质稳定达标,处理成本从255万元降低至210万元。本研究的实施使得活性白土的生产工艺清洁生产水平有较大提高。 相似文献
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Mariangela Grassi Luigi Rizzo Anna Farina 《Environmental science and pollution research international》2013,20(6):3616-3628
In the last years, a lot of emerging contaminants, such as, endocrine disruptors compounds (EDCs), pharmaceuticals, and personal care products (PPCPs) have been detected in wastewater. Because of their toxicity and possible adverse effects on the environment and humans, their release from urban wastewater treatment plants (UWWTPs) effluents should be minimized, particularly when a wastewater reuse for crops irrigation is expected. Many processes have been investigated for advanced treatment of UWWTP effluents as well as for emerging contaminant degradation; among these, adsorption process was successfully used to remove EDCs and PPCPs from wastewater. This article shortly reviews EDCs and PPCPs removal from UWWTP effluents by adsorption process using conventional and non-conventional adsorbents. The fate of EDCs and PPCPs in UWWTPs and the implications for agricultural wastewater reuse has been addressed too. In spite of the adsorption process looking to be a valuable alternative to other advanced technologies for the removal of emerging contaminants from wastewater, some gaps still remain to evaluate the actual feasibility at full scale. However, according to a few studies available in scientific literature on the use of both powdered activated carbon and granular activated carbon at full scale, adsorption process by activated carbon is a promising, potentially effective, and economically feasible solution for producing safe wastewater for agricultural reuse. 相似文献
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