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211.
气体分离循环对高温厌氧消化过程的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
采用厌氧序批式反应器,研究了气体循环(包括气体直接循环和脱除气体中的氢气后循环)对以葡萄糖和乙酸钠配制的模拟废水在高温厌氧消化过程中乙酸代谢速率、出水性质及微生物相的影响,并采用尺寸排除色谱和三维荧光光谱技术,对溶解性微生物产物(SMP)的分子量分布和荧光物质组成进行了分析.结果显示,气体循环使得出水中残余挥发性脂肪酸的浓度由238.2mg/L(未脱氢)和129.6mg/L(脱氢)分别减少至8.5mg/L和8.2mg/L,并最终降低了SMP产量,45d时分别降至气体循环前的36.8%和59.2%.脱氢气体循环促进了乙酸化和乙酸氧化,导致了微生态环境和甲烷化基质浓度的差异,促进了高分子量SMP向低分子量SMP的转化,污泥中的微生物形态亦发生了较大变化.可见气体循环改善了基质与微生物的混合状况,改善了出水水质,而脱氢气体循环加速了乙酸的代谢,有望更快速地解除易降解有机物高温厌氧消化过程中的酸抑制,提高厌氧消化效率.  相似文献   
212.
An anaerobic contact reactor (ACR) system comprising a continuous flow stirred tank reactor (CSTR) with settler to decouple the hydraulic retention time (HRT) from solids retention time (SRT) was developed for fermentative hydrogen production from diluted molasses by mixed microbial cultures. The ACR was operated at various volumetric loading rates (VLRs) of 20–44 kgCOD·m-3·d-1 with constant HRT of 6 h under mesophilic conditions of 35°C. The SRT was maintained at about 46–50 h in the system. At the initial VLR of 20 kgCOD·m-3·d-1, the hydrogen production rate dropped from 22.6 to 1.58 L·d-1 as the hydrogen was consumed by the hydrogentrophic methanogen. After increasing the VLR to 28 kgCOD·m-3·d-1 and discharging the sludge for 6 consecutive times, the hydrogentrophic methanogens were eliminated, and the hydrogen content reached 36.4%. As the VLR was increased to 44 kgCOD·m-3·d-1, the hydrogen production rate and hydrogen yield increased to 42.1 L·d-1 and 1.40 mol H2·molglucose-consumed-1, respectively. The results showed that a stable ethanol-type fermentation that favored hydrogen production in the reactor was thus established with the sludge loading rate (SLR) of 2.0–2.5 kgCOD·kgMLVSS-1·d-1. It was found that the ethanol increased more than other liquid fermentation products, and the ethanol/acetic acid (mol/mol) ratio increased from 1.27 to 2.45 when the VLR increased from 28 to 44 kgCOD·m-3·d-1, whereas the hydrogen composition decreased from 40.4% to 36.4%. The results suggested that the anaerobic contact reactor was a promising bioprocess for fermentative hydrogen production.  相似文献   
213.
The effect of white African mineral dye Yombofita (YF) on the activities of alkaline phosphatase (ALP), acid phosphatase (ACP) and malondialdehyde (MDA) levels in the skin, liver, kidney and serum of albino rats was investigated. The chemical analysis of the dye was first carried out using solubility test, pH determination and X-ray fluorescence (XRF) elemental analysis. Six different concentrations (0.05, 0.15, 0.25, 0.5, 0.75 and 1.00%) of the dye were prepared using hydrogen peroxide (30 volume) as solvent. A total of 80 albino rats (Rattus norvegicus) were used for the study. The rats were divided into 8 groups of 10 each and were maintained on commercial feed for the period of the experiment i.e. 30 days. In group 1, the control group, the animals were applied distilled water on their heads, whereas in group 2 the vehicle i.e. hydrogen peroxide was applied. In groups 3 to 8 various concentrations of YF (white) dye ranging from 0.05, 0.15, 0.25, 0.5, 0.75 to 1.00% was applied respectively. At the end of the experiment, blood samples were collected and portions of the selected tissues were excised for the determination of ALP and ACP activities. The MDA level was also determined in the skin of experimental animals. The results revealed a significant decrease (p?p?相似文献   
214.
Swine slurry is a source of atmospheric pollutants. Emissions of basic and acidic compounds from slurry are largely dependent on the surface pH. In a storage system, the pH at the surface layers changes over time due to the volatilisation of ammonia (NH3), carbon dioxide (CO2) and acetic acid (HAc). In this article, a comprehensive gas emission–pH (GE–pH) coupled model is proposed to describe the simultaneous release of acidic and basic gaseous pollutants from swine slurry. The model was applied to describe the release of NH3, CO2, HAc and hydrogen sulphide (H2S) from standard slurries stored in animal houses, outside storage tanks and lagoons. The modelled results agreed well with values reported in the literature and could be reasonably interpreted. The key parameters affecting the release of gases were: initial pH, initial concentration of total ammonium nitrogen and inorganic carbon, slurry temperature and air velocity. This study suggests that future modelling studies on gas emissions from animal slurry should consider the concentration of inorganic carbon and the frequency in which the slurry surface is mixed or altered, because they affect the surface pH and the release of gaseous pollutants from slurry.  相似文献   
215.
The thermodynamic equilibrium of the C‐H‐O‐Cl system has been calculated to elucidate the generation and decomposition behavior of dioxins, and is discussed from the viewpoint of the oxygen and hydrogen chloride potential. The dioxins behavior is greatly dependent on the oxygen potential, i.e. higher temperature and oxygen potential lead to the complete decomposition of dioxins, while low hydrogen chloride potential under insufficient oxygen condition leads to an increase of multi‐chlorine displacement of dioxins.  相似文献   
216.
A low pH, ethanol-type fermentation process was evaluated for wastewater treatment and bio-hydrogen production from acidic beet sugar factory wastewater in a continuous stirred tank reactor (CSTR) with an effective volume of 9.6 L by anaerobic mixed cultures in this present study. After inoculating with aerobic activated sludge and operating at organic loading rate (OLR) of 12 kgCOD?m-3·d-1, HRT of 8h, and temperature of 35°C for 28 days, the CSTR achieved stable ethanol-type fermentation. When OLR was further increased to 18 kgCOD?m-3·d-1 on the 53rd day, ethanol-type fermentation dominant microflora was enhanced. The liquid fermentation products, including volatile fatty acids (VFAs) and ethanol, stabilized at 1493 mg·L-1 in the bioreactor. Effluent pH, oxidation-reduction potential (ORP), and alkalinity ranged at 4.1–4.5, -250–(-290) mV, and 230–260 mgCaCO3?L-1. The specific hydrogen production rate of anaerobic activated sludge was 0.1 L?gMLVSS-1·d-1 and the COD removal efficiency was 45%. The experimental results showed that the CSTR system had good operation stability and microbial activity, which led to high substrate conversion rate and hydrogen production ability.  相似文献   
217.
在自制的圆柱型双层玻璃反应器中,以木素类模型物紫丁香醇(SL)为目标化合物,考察Fenton试剂对紫丁香醇的降解效果,研究溶液的pH值、H2O2的用量、Fe2+的用量、紫丁香醇溶液初始浓度、反应时间、紫外光照射等因素对紫丁香醇降解的影响。实验结果表明:在室温条件下,当体系pH值为3.0时,加入两倍理论用量的H2O2,Fe2+与H2 O2的物质的量之比为1︰50,反应60 min后,50 mg/L的紫丁香醇的去除率可达87.5%;当体系中引入紫外光后,Fenton试剂的氧化性明显增加,反应速度显著加快,30 min后紫丁香醇可完全矿化。  相似文献   
218.
厌氧氨氧化工艺的抑制现象   总被引:5,自引:0,他引:5  
厌氧氨氧化(Anammox)工艺因其高效低耗优势,在废水生物脱氮领域中具有广阔的应用前景.然而,基质、有机物、盐度、重金属、磷酸盐及硫化物等物质对Anammox工艺产生的抑制作用制约了工艺的推广应用.基质主要通过游离氨和游离亚硝酸对Anammox产生抑制,而温度和pH是基质抑制的重要调控参数.非致毒性有机物对Anammox的作用因其种类跟浓度而异.在较低的浓度条件下对Anammox的抑制作用不显著,而高于抑制阈值将严重抑制Anammox.其抑制机制尚无定论.部分研究证明致毒性有机物(醇、醛、酚及抗生素等)对Anammox具有抑制作用,但研究有待拓展深化.超过抑制阈值的盐度会抑制Anammox活性,但合适的盐度(3~15 g L-1NaCl)却能够促进Anammox生物颗粒的形成.重金属对Anammox的抑制报道较少.因试验条件及菌种等的差异使得磷酸盐及硫化物对Anammox的抑制在不同试验中存在很大差异.Anammox抑制是可控的,通过pH和温度调节、基质浓度及负荷控制、污泥驯化以及添加辅助剂等方法可解除或缓解抑制.建议今后在特种废水的Anammox脱氮、复合抑制以及Anammox抑制的分子生态学机理等方面开展深入研究.  相似文献   
219.
硝酸钙对河流底泥中含硫化合物嗅味原位控制   总被引:4,自引:0,他引:4  
以硝酸钙作为氧化剂,对深圳河污染底泥典型嗅味物质AVS(酸挥发性硫化物)和GEM(土臭素)及2 MIB(2 甲基异莰醇)进行原位控制. 结果表明,当硝酸钙投加量(以单位质量AVS所需NO3- N质量计)为1.68 g/g,AVS去除率达到92%,且可有效避免硝酸钙向上覆水释放,适合工程应用. 但是,硝酸钙对河流底泥GEM和2 MIB等典型嗅味物质的原位控制效果较差. 硝酸钙能够引起底泥中微生物多样性增加,16S rDNA指纹图谱显示,优势菌株包括去除AVS的脱氮硫杆菌(Thiobacillus thioparus),反硝化细菌(Simplicispira sp.和Rhodanobacter sp).以及降解有机物的菌株(Simplicispira sp.、Lysobacter sp.、Pseudoxanthomonas sp.)等.   相似文献   
220.
生物硫铁复合材料处理含铜废水及机理研究   总被引:1,自引:0,他引:1       下载免费PDF全文
利用Hungate分离出一株产生物硫铁复合材料(生物硫铁)的硫酸盐还原菌SRB2,考察了投加量、pH值、温度、搅拌速度对生物硫铁处理含铜废水的影响,并分别从化学置换、胞外聚合物(EPS)吸附等途径研究了生物硫铁去除Cu2+的机理.结果表明,生物硫铁投加量越大、温度越高对铜的去除效果最好,在pH4.0、35℃、0.6661g生物硫铁、搅拌速度100r/min时,2min即可使Cu2+去除率达到99.9%以上.化学置换途径在生物硫铁去除Cu2+时占主导地位,10min去除率达90.9%,EPS吸附途径在生物硫铁去除Cu2+过程中不占优势,24h去除率为38%.  相似文献   
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