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豆制抗盐菌在PCB回用浓水处理中的研究

2015-07-13蔡升云陈可丁建华

安徽农业科学 2015年15期

蔡升云 陈可 丁建华

摘要 [目的]探讨豆制抗盐菌处理PCB回用浓水的可行性。[方法]利用豆制抗盐菌处理PCB回用浓水,研究pH、停留时间、进水流量、电导率、温度以及铜离子浓度等对处理效果的影响。[结果]该微生物接种时间短,停留时间为6 h,抗负荷能力比传统嗜盐菌强;在电导率6 000~14 000 μS/cm条件下,温度在10 ℃左右时,其活性依然较强。[结论]该研究可为豆制抗盐菌处理PCB回用浓水提供参考。

关键词 豆制抗盐菌;PCB回用浓水;去除率

中图分类号 S181.3 文献标識码

A 文章编号 0517-6611(2015)15-202-03

Study on Treatment of PCB Recycling Concentrated Water by Beanmade Antisalt Bacteria

CAI Shengyun, CHEN Ke, DING Jianhua

(Shenzhen Environmental Engineering Technology Center Co., Ltd., Shenzhen, Guangdong 518048)

Abstract [Objective] The research aimed to explore the feasibility of PCB recycling concentrated water by beanmade antisalt bacteria.[Method] The beanmade antisalt bacteria were used to treat PCB recycling concentrated water, and the influences of pH, hydraulic retention time, influent flow, conductivity, temperature and copper ion concentration on treatment effect were studied.[Result] The microorganism had shorter inoculation time.The hydraulic retention time was 6 h, and its antiload capacity was stronger than that of traditional halophile.When conductivity was 6 000-14 000 μS/cm, and temperature was about 10 ℃, its activity was still stronger.[Conclusion] The research could provide reference for beanmade antisalt bacteria treating PCB recycling concentrated water.

Key words Beanmade antisalt bacteria; PCB recycling concentrated water; Removal rate

PCB行业是一个高污染行业,有一次性污染,也有二次性污染。废水虽经无害化处理,可以达到国家排放标准,但排放水中仍含有Cu+、Ni2+、Pb2+等重金属离子和各种有机物等。如按国家规定废水排放标准来计算,每年将有1.34万~1.62万kg的Cu+、Ni2+, Pb2+等排入环境中,造成生态环境的破坏和危害人们的健康。PCB行业实行循环经济模式,推行清洁生产,采用先进的生产工艺和管理经验,可提高生产过程中资源的利用率,减少废水和废弃物的产生。开展废水的重复使用采用RO回用技术,不仅提高废水的重复利用率节约水资源,而且可减轻PCB行业的环境污染。但PCB废水经过RO处理回用后的浓水已经超出国家排放标准, RO浓水(废水回用,经处理后达国家一级排放标准)经过4倍浓缩后,部分污染因子仍然超标,浓水COD一般在120~180 mg/L,重金属离子一般为0.5~2.0 mg/L,因此必须经过处理后才能排放。

1 国内外反渗透浓水处理现状

反渗透处理过程中产生大量的浓水和反冲洗水,目前大多数工艺不经过处理直接排放,造成水资源和能源的浪费,同时对周围的环境造成污染。……

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