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土霉素结晶母液酸化水解过程的研究
引用本文:马文林,王晋,梁存珍,齐嵘,杨敏.土霉素结晶母液酸化水解过程的研究[J].环境科学,2001,22(5):41-44.
作者姓名:马文林  王晋  梁存珍  齐嵘  杨敏
作者单位:1. 山西大学环境科学系,太原, 030006 中国科学院生态环境研究中心环境水化学国家重点实验室,北京,100085
2. 中国科学院生态环境研究中心环境水化学国家重点实验室,北京,100085;山西大学环境科学系,太原, 030006
3. 中国科学院生态环境研究中心环境水化学国家重点实验室,北京,100085
基金项目:留学回国人员基金项目(教外司留[2000]367号)
摘    要:土霉素结晶母液是一类含高浓度有机物和氮的废水,反硝化电子供体相对不足,且含有多种生物抑制性物质.为了提高废水的可生化性、增加可利用反硝化电子供体的数量,利用厌氧污泥床对土霉素结晶母液进行了水解处理,并对反应的pH、COD、NH4+、和SO42--浓度等进行了考察.水解过程对COD的去除功能不强,在HRT1.5h~6.0h的条件下,COD去除率也仅从10%提高到16%.由于有机氮氨化和硫酸盐还原作用,酸化后废水的pH值增加.当HRT超过2h以后,SO42-基本上都被还原成S2-采用经过水解的废水进行批量实验,结果证明硝化速率和反硝化速率分别比未水解时提高90.9%和45.2%.

关 键 词:土霉素结晶母液  酸化水解  硝化  反硝化
文章编号:0250-3301(2001)05-04-0041
收稿时间:2001/1/17 0:00:00
修稿时间:2001年1月17日

Anaerobic Hydrolysis of Terramycin Crystallizing Mother Solution
Wenlin M,Jin Wang,Cunzheng Liang,Rong Qi and Min Yang.Anaerobic Hydrolysis of Terramycin Crystallizing Mother Solution[J].Chinese Journal of Environmental Science,2001,22(5):41-44.
Authors:Wenlin M  Jin Wang  Cunzheng Liang  Rong Qi and Min Yang
Institution:State Key Laboratory of Environmental Aquatic Chemistry, Research Center for Eco-Environmental Sciences, Beijing, 100085.
Abstract:The terramycin crystallizing mother solution contained high organics and high nitrogen. There were many kinds of bioinhibition in it but not enough electronic donor. Anaerobic hydrolysis of terramycin crystallizing mother solution was completed with up anarobic sludge bed in order to improve the biodegradability of wastewater and electronic donor in it. The variations of pH, COD, NH4+, and SO42- were monitored. The COD removal was in a narrow range between 10 % and 16.4 % even when the HRT of the reactor was changed from 1.5 h to 6 h. pH increased because of formation of NH3 and reduction of SO42-. Most of SO42- was reduced to S2- when the HRT was longer than 2h. Batch experiments on hydrolyzed wastewater demonstrated that reaction rates of nitrification and denitrification increased by 90.9% and 45.2%, respectively.
Keywords:terramycin crystallizing mother solution  anaerobic hydrolysis  nitrification  denitrification
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