Advantages of anaerobic digestion of sludge in microaerobic conditions

被引:56
作者
Jenicek, P. [1 ]
Koubova, J. [1 ]
Bindzar, J. [1 ]
Zabranska, J. [1 ]
机构
[1] Prague Inst Chem Technol, Dept Water Technol & Environm Engn, CR-16628 Prague, Czech Republic
关键词
anaerobic digestion; biodegradability; methanogenic activity; microaerobic conditions; sulphide oxidation; SULFATE WASTE-WATER; SULFIDE; OXYGEN; REACTOR; REMOVAL; SULFUR; BIODEGRADATION; CHEMOSTAT; AERATION; CULTURES;
D O I
10.2166/wst.2010.305
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The paper reviews results and experience of microaerobic experiments at both high and low sulphide concentrations and evaluates advantages and drawbacks of the anaerobic digestion of sludge in microaerobic conditions as regards biogas quality, digested sludge quality, organic pollutants biodegradability and methanogenic activity of biomass. The innovative microaerobic modification of the anaerobic sludge digestion technology was studied in both laboratory and full scale. Microaerobic conditions are obtained by dosing of a limited amount of the air into the liquid phase of the anaerobic digester. It was shown that anaerobic bacteria including methanogens can be active also in such system. In a mixed culture, even strict anaerobes can survive without inhibition, if the facultative microorganisms are able to consume the present oxygen quickly and fully. Until now, the microaerobic conditions were predominantly used for hydrogen sulphide removal from biogas. In the paper the role of the surplus oxygen was studied also at low sulphide concentration, when the oxygen is consumed in high extent for other processes beside sulphide oxidation.
引用
收藏
页码:427 / 434
页数:8
相关论文
共 31 条
[1]   Defining the biomethane potential (BMP) of solid organic wastes and energy crops: a proposed protocol for batch assays [J].
Angelidaki, I. ;
Alves, M. ;
Bolzonella, D. ;
Borzacconi, L. ;
Campos, J. L. ;
Guwy, A. J. ;
Kalyuzhnyi, S. ;
Jenicek, P. ;
van Lier, J. B. .
WATER SCIENCE AND TECHNOLOGY, 2009, 59 (05) :927-934
[2]  
[Anonymous], 1994, STANDARD METHODS EXA, V16th
[3]   OPTIMIZATION OF SULFUR PRODUCTION IN A BIOTECHNOLOGICAL SULFIDE-REMOVING REACTOR [J].
BUISMAN, CJN ;
GERAATS, BG ;
IJSPEERT, P ;
LETTINGA, G .
BIOTECHNOLOGY AND BIOENGINEERING, 1990, 35 (01) :50-56
[4]  
Chu A, 1998, WATER SCI TECHNOL, V38, P55, DOI 10.1016/S0273-1223(98)00475-2
[5]   Control of sulphide during anaerobic treatment of S-containing wastewaters by adding limited amounts of oxygen or nitrate [J].
Cirne D.G. ;
Van Der Zee F.P. ;
Fernandez-Polanco M. ;
Fernandez-Polanco F. .
Reviews in Environmental Science and Bio/Technology, 2008, 7 (2) :93-105
[6]   Effects of oxygen on biodegradation of benzoate and 3-chlorobenzoate in a denitrifying chemostat [J].
Deniz, T ;
Çinar, O ;
Grady, CPL .
WATER RESEARCH, 2004, 38 (20) :4524-4534
[7]   Investigation of granulation of a mixture of suspended anaerobic and aerobic cultures under alternating anaerobic/microaerobic/aerobic conditions [J].
Ergüder, TH ;
Demirer, GN .
PROCESS BIOCHEMISTRY, 2005, 40 (12) :3732-3741
[8]  
Erhardt W., 2001, Organic Contaminants in Sewage Sludge for Agricultural Use
[9]   Hydrogen production in anaerobic and microaerobic Thermotoga neapolitana [J].
Eriksen, Niels T. ;
Nielsen, Thomas M. ;
Iversen, Niels .
BIOTECHNOLOGY LETTERS, 2008, 30 (01) :103-109
[10]   Removal of hydrogen sulphide from wastewater and waste gases by biological conversion to elemental sulphur - Colloidal and interfacial aspects of biologically produced sulphur particles [J].
Janssen, AJH ;
Lettinga, G ;
de Keizer, A .
COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 1999, 151 (1-2) :389-397