EFFECTS OF SULFATE CONCENTRATION AND SLUDGE RETENTION TIME ON THE INTERACTION BETWEEN METHANE PRODUCTION AND SULFATE REDUCTION FOR BUTYRATE

被引:74
作者
MIZUNO, O
LI, YY
NOIKE, T
机构
关键词
ANAEROBIC DEGRADATION; BACTERIAL POPULATION; BUTYRATE; COMPETITION; ELECTRON FLOW; METABOLIC ACTIVITY; METHANE-PRODUCING BACTERIA; SULFATE-REDUCING BACTERIA;
D O I
10.2166/wst.1994.0378
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The effects of sulfate concentration and COD/S ratio on the anaerobic degradation of butyrate were investigated by using 2.0 L anaerobic chemostat-type reactor at 35 degrees C. The study was conducted over a wide range of the COD/S ratio (1.5 to 148) by varying COD concentrations (2500-10000 mg/L) and sulfate concentrations (68-1667 mg-S/L) in the substrate. The sludge retention time at each COD/S ratio was changed from 5 to 20 days. The interaction between methane producing bacteria(MPB) and sulfate-reducing bacteria (SRB) was evidently influenced by COD/S ratio in the substrate. When COD/S ratio was 6.0 or more, methane production was the predominate reaction and over 80% of the total electron flow was used by MPB. At the COD/S ratio of 1.5, SRB utilized over 50% of the total electron flow. A large amount of sulfate reduction resulted in not only the decrease of methane production, but also the rapid increase of the bacterial growth. The degradation pathway of butyrate and the composition of bacterial populations in the reactor were also dominated by COD/S ratio. In sulfate depleted condition, butyrate was degraded to methane via acetate and hydrogen by MPB. On the other hand, butyrate was firstly degraded into sulfide and acetate in sulfate rich conditions by SRB, and the produced acetate was then degraded by acetate consuming MPB and SRB. The methanogenesis from acetate was inhibited by the high concentration of sulfide.
引用
收藏
页码:45 / 54
页数:10
相关论文
共 18 条
[1]   INHIBITION OF METHANOGENESIS BY SULFATE REDUCING BACTERIA COMPETING FOR TRANSFERRED HYDROGEN [J].
ABRAM, JW ;
NEDWELL, DB .
ARCHIVES OF MICROBIOLOGY, 1978, 117 (01) :89-92
[2]   GROWTH OF DESULFOVIBRIO IN LACTATE OR ETHANOL MEDIA LOW IN SULFATE IN ASSOCIATION WITH H2-UTILIZING METHANOGENIC BACTERIA [J].
BRYANT, MP ;
CAMPBELL, LL ;
REDDY, CA ;
CRABILL, MR .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1977, 33 (05) :1162-1169
[3]   MICROBIAL ECOPHYSIOLOGY OF WHEY BIOMETHANATION - CHARACTERIZATION OF BACTERIAL TROPHIC POPULATIONS AND PREVALENT SPECIES IN CONTINUOUS CULTURE [J].
CHARTRAIN, M ;
ZEIKUS, JG .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1986, 51 (01) :188-196
[4]   COMPARISON OF METHANE PRODUCTION-RATE AND COENZYME F420 CONTENT OF METHANOGENIC CONSORTIA IN ANAEROBIC GRANULAR SLUDGE [J].
DOLFING, J ;
MULDER, JW .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1985, 49 (05) :1142-1145
[5]   SULFATE REDUCTION RELATIVE TO METHANE PRODUCTION IN HIGH-RATE ANAEROBIC-DIGESTION - TECHNICAL ASPECTS [J].
ISA, Z ;
GRUSENMEYER, S ;
VERSTRAETE, W .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1986, 51 (03) :572-579
[6]   UASB-PROCESS DESIGN FOR VARIOUS TYPES OF WASTEWATERS [J].
LETTINGA, G ;
POL, LWH .
WATER SCIENCE AND TECHNOLOGY, 1991, 24 (08) :87-107
[7]   USE OF THE UPFLOW SLUDGE BLANKET (USB) REACTOR CONCEPT FOR BIOLOGICAL WASTEWATER-TREATMENT, ESPECIALLY FOR ANAEROBIC TREATMENT [J].
LETTINGA, G ;
VANVELSEN, AFM ;
HOBMA, SW ;
DEZEEUW, W ;
KLAPWIJK, A .
BIOTECHNOLOGY AND BIOENGINEERING, 1980, 22 (04) :699-734
[8]  
LI YY, 1989, J JAPAN SOC WATER EN, V13, P771
[9]  
Lovley JA, 1984, ARCH MICROBIOL, V137, P26
[10]   ANAEROBIC DEGRADATION OF LACTATE BY SYNTROPHIC ASSOCIATIONS OF METHANOSARCINA-BARKERI AND DESULFOVIBRIO SPECIES AND EFFECT OF H-2 ON ACETATE DEGRADATION [J].
MCINERNEY, MJ ;
BRYANT, MP .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1981, 41 (02) :346-354