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Treating both wastewater and excess sludge with an innovative process
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作者 HE Sheng-bing, WANG Bao-zhen, WANG Lin, JIANG Yi-feng (School of Municipal & Environmental Engineering, Harbin Institute of Technology, Harbin 150090, China. 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2003年第6期749-756,共8页
The innovative process consists of biological unit for wastewater treatment and ozonation unit for excess sludge treatment. An aerobic membrane bioreactor(MBR) was used to remove organics and nitrogen, and an anaerobi... The innovative process consists of biological unit for wastewater treatment and ozonation unit for excess sludge treatment. An aerobic membrane bioreactor(MBR) was used to remove organics and nitrogen, and an anaerobic reactor was added to the biological unit for the release of phosphorus contained at aerobic sludge to enhance the removal of phosphorus. For the excess sludge produced in the MBR, which was fed to ozone contact column and reacted with ozone, then the ozonated sludge was returned to the MBR for further biological treatment. Experimental results showed that this process could remove organics, nitrogen and phosphorus efficiently, and the removals for COD, NH 3-N, TN and TP were 93.17%, 97.57%, 82.77% and 79.5%, respectively. Batch test indicated that the specific nitrification rate and specific denitrification rate of the MBR were 1.03 mg NH 3-N/(gMLSS·h) and 0.56 mg NOx-N/(gMLSS·h), and denitrification seems to be the rate-limiting step. Under the test conditions, the sludge concentration in the MBR was kept at 5000—6000 mg/L, and the wasted sludge was ozonated at an ozone dosage of 0.10 kgO 3/kgSS. During the experimental period of two months, no excess sludge was wasted, and a zero withdrawal of excess sludge was implemented. Through economic analysis, it was found that an additional ozonation operating cost for treatment of both wastewater and excess sludge was only 0.045 RMB Yuan(USD 0.0054)/m 3 wastewater. 展开更多
关键词 wastewater treatment excess sludge aerobic membrane bioreactor(MBR) anaerobic reactor OZONATION zero withdrawal of excess sludge
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一种适用于高悬浮物有机废水处理的新型厌氧装置
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作者 申立贤 刘玫 袁玉琳 《环境科学》 EI CAS CSSCI CSCD 北大核心 1993年第4期62-65,共4页
本研究的厌氧反应器具有UASB工艺与两相消化装置的特点,将发酸酵、甲烷发酵、沉淀分离3个工艺过程有效地组合成一体,并利用所产生的沼气及水位变化控制进行无需外加动力与设备的自动回流搅拌,以适应于处理高悬浮物的废水,并避免堵塞、... 本研究的厌氧反应器具有UASB工艺与两相消化装置的特点,将发酸酵、甲烷发酵、沉淀分离3个工艺过程有效地组合成一体,并利用所产生的沼气及水位变化控制进行无需外加动力与设备的自动回流搅拌,以适应于处理高悬浮物的废水,并避免堵塞、短流与浮渣板结等问题。120L反应器在35℃下处理好氧剩余污泥的试验表明,在HRT3.53—8.57d条件下,其有机物去除率达51.4%—58.6%,在HRT为7.5d时,其有机负荷为2.97kgSS/(m^3·d),COD负荷为3.89kgCOD/(m^3·d),平均有机物去除率为55.3%,所产沼气含甲烷60%以上。 展开更多
关键词 厌氧反应器 有机废水处理 废水处理
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厨余垃圾好氧堆肥与污泥厌氧消化一体化处理 被引量:2
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作者 李果 何强 +1 位作者 吴正松 彭晨 《环境工程学报》 CAS CSCD 北大核心 2015年第3期1381-1388,共8页
利用自行研制的城镇生活垃圾与污水厂污泥一体化处理反应器对厨余垃圾好氧堆肥和污水处理厂污泥厌氧消化进行了实验研究,结果表明,在环境温度8~17.2℃的条件下,垃圾仓温度范围为17.2~50℃,堆肥垃圾含水率由(91.0±1.8)%降为(85.1... 利用自行研制的城镇生活垃圾与污水厂污泥一体化处理反应器对厨余垃圾好氧堆肥和污水处理厂污泥厌氧消化进行了实验研究,结果表明,在环境温度8~17.2℃的条件下,垃圾仓温度范围为17.2~50℃,堆肥垃圾含水率由(91.0±1.8)%降为(85.1±5.2)%,p H维持在5.92~7.40之间,VS/TS由0.78±0.06降为0.60±0.12,垃圾蛋白酶活性在第15天后维持在153.5~347.5 U/g DW。污泥仓温度主要范围为25~35℃,排泥含水率由(99.2±0.3)%降为(96.0±1.5)%,p H维持在6.77~6.97之间,VS/TS由0.66±0.07下降为0.44±0.11。污泥仓日均产气量为(44.7±8.6)L,其中甲烷平均体积分数为(61.32±4.68)%,污泥蛋白酶活性在第4天后稳定在0.98~1.78 U/m L之间。一体化反应器实现了厨余垃圾与污水厂污泥在同一反应器中集中处理,并利用垃圾堆肥时产生的热量为污泥浓缩消化提供温度条件。 展开更多
关键词 污泥厌氧消化 垃圾好氧堆肥 一体化反应器 协同处理 温度
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