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ece 室研究开发
化工进展
CHEMICALINDUSTRY AND ENGINEERING PROGRESS
螺旋对称流厌氧反应器常温下的运行特性
2016年第35卷第11期
AWADAbdelgadirl·2,陈小光",戴若彬,柳建设",罗颖",马璞月1,倪圣笙1
('东华大学环境科学与工程学院,国家环境保护纺织工业污染防治工程技术中心,上海201620:2工业研究与
咨询中心,268-喀土稳,苏丹)
摘要:螺放对称流厌氧反应器(SSSAB)的最高有机负荷能在中温条件下(35C)可达361.5kgCOD/(m·d),然而在常温条件下(1030℃C)其运行性能及污泥特征尚不明确,需进一步探究。以分段组合式厌氧反应器(TCAB)和升流式厌氧污泥床反应器(UASB)为参比,在常温下,以相同的操作条件研究了SSSAB的运行性能和污泥特征。实验结果表明:SSSAB的COD平均去除率(88%)高于TCAB和UASB(80%和78%),SSSAB的一级反应动力学常数为5.4d-",高于TCAB的3.6d-和UASB的2.2d,SSSAB内颗程污泥宏观上相比于TCAB及 UASB轮廊清晰、黑亮密实,且SSSAB颗粒污泥表面微观上较为粗糙,存在许多孔道,SSSAB颗粒污泥的胞外聚合物(EPS)总量高于TCAB及UASB,为底物的质量传递创造了条件,SSSAB颗粒污泥EPS的蛋自质(PN)/ 多糖(PS)较低,更有利于维持高污泥强度和优良的沉降性能。相比于UASB,SSSAB厌氧颗粒污泥凝聚性的分布更优,且其凝聚性波动更小。
关键词:螺放对称流厌氧反应器;常温;运行特性;稳定性;污泥特性;胞外聚合物
中图分类号:X703.1
文献标志码:A
DOI: 10.16085/j.issn.1000-6613.2016.11.006
文章编号:10006613(2016)11-342607
Operationalcharacteristicsofspiralsymmetrystreamanaerobic
bioreactorunderroomtemperature
AWADAbdelgadirl.2,CHENXiaoguang',DAI Ruobin',LIUJianshe',LUOYing',MAPuyue'
NI Shengsheng
('State Environmental Protection Engineering Center for Pollution Treatment and Control in Textile Industry, College of Environmental Science and Engineering, Donghua University, Shanghai 201620, China; "industrial Research and
Consultancy Center, IRCC, 268-Khartoum, Sudan)
Abstract: A maximum organic loading rate of 361.5kgCOD/(m*-d) is achieved in spiral symmetry stream anaerobic bioreactor (SSSAB)under mesophilic condition (35'C).However, the performance and sludge features, which require further research, are still unclear under room temperature (103o'C).In comparison to three compartmentalized anaerobic bioreactor (TCAB) and upflow anaerobic sludge blanket reactor (UASB), the performance and sludge features were studied with same operational conditions under room temperature. The results showed that: the average COD removal efficiency of SSSAB (88%) was higher than that of TCAB and UASB (80% and 78%). The first-order kinetic constant of SSSAB was 5.4d', higher than that of TCAB(3.6d') and UASB (2.2d-').In macro scale, compared with that from TCAB and UASB, the anaerobic granular sludge from SSSAB was clearer, more black and denser. Moreover, the surface of
收稿日期:2016-04-07;修改稿日期:2016-04-25
基金项目:国家自然科学基金(51208087)及过程装备与控制工程四
川省高校重点实验室开放基金(GK201402)项目,万方数据
第一作者:AwadAbdelgadir(1978—),男,博士研究生,研究方向为厌氧生物处理。联系人:陈小光,副教投,研究方向为厌氧生物处理设备开发及过程研究,E-mailcxg@dhu.edu.cn