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膜生物反应器系统在光电工业废水处理中的应用——一项中试研究。

Application of a membrane bioreactor system for opto-electronic industrial wastewater treatment--a pilot study.

作者信息

Chen T K, Chen J N, Ni C H, Lin G T, Chang C Y

机构信息

Institute of Environmental Engineering, National Chiao Tung University, No. 75, Poai Street, Hsinchu 300, Chinese Taiwan.

出版信息

Water Sci Technol. 2003;48(8):195-202.

Abstract

The membrane bioreactor (MBR) system has become more and more attractive in the field of wastewater treatment. It is particularly attractive in situations where long solids retention times are required, such as nitrifying bacteria, and physical retention is critical to achieving more efficiency for biological degradation of pollutants. Although it is a new technology, the MBR process has been applied to industrial wastewater treatment for only the past decade. The opto-electronic industry, developed very fast over the past decade in the world, is a high technological manufacturing industry. The treatment of the opto-electronic industrial wastewater containing a significant quantity of organic nitrogen compounds, with a ratio over 95% in organic nitrogen (Org-N) to total nitrogen (T-N), is very difficult to meet the discharge limits. The purpose of this research is mainly to discuss the treatment capacity of high-strength organic nitrogen wastewater, and to investigate the capabilities of the MBR process. A 2 m3/day capacity MBR pilot plant consisting of anoxic and aerobic tanks and a membrane bioreactor was installed for evaluation. The operation was continued for 130 days. Over the whole experimental period, a satisfactory organic removal performance was achieved. The COD could be removed with an average of over 94.5%. For TOC and BOD5, the average removal efficiencies were 96.3 and 97.6%, respectively. The nitrification and denitrification were also successfully achieved. The effluent did not contain any suspended solids. Only a small concentration of ammonia nitrogen was found in the effluent. The stable effluent quality and satisfactory removal performance mentioned above were ensured by the efficient interception performance of the membrane device incorporated within the biological reactor. The MBR system shows promise as a means of treating very high organic nitrogen wastewater without dilution. The effluent of TKN, NOx-N and COD can fall below 20 mg/L, 30 mg/L and 50 mg/L.

摘要

膜生物反应器(MBR)系统在污水处理领域越来越具有吸引力。在需要较长固体停留时间的情况下,例如硝化细菌,以及物理截留对于提高污染物生物降解效率至关重要时,它尤其具有吸引力。尽管这是一项新技术,但MBR工艺在过去十年才应用于工业废水处理。光电产业在过去十年中在全球发展迅速,是一个高科技制造业。处理含有大量有机氮化合物的光电工业废水非常困难,有机氮(Org-N)与总氮(T-N)的比例超过95%,很难达到排放限值。本研究的目的主要是探讨高强度有机氮废水的处理能力,并研究MBR工艺的性能。安装了一个日处理量为2立方米的MBR中试装置,该装置由缺氧和好氧池以及一个膜生物反应器组成,用于评估。运行持续了130天。在整个实验期间,实现了令人满意的有机物去除性能。COD的平均去除率超过94.5%。对于TOC和BOD5,平均去除效率分别为96.3%和97.6%。硝化和反硝化也成功实现。出水不含有任何悬浮固体。出水中仅发现少量氨氮。上述稳定的出水水质和令人满意的去除性能是由生物反应器内的膜装置的高效截留性能保证的。MBR系统有望成为一种无需稀释即可处理高浓度有机氮废水的方法。总凯氏氮(TKN)、硝态氮(NOx-N)和COD的出水可降至20毫克/升、30毫克/升和50毫克/升以下。

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