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排序方式: 共有1319条查询结果,搜索用时 15 毫秒
11.
热带假丝酵母8953菌株对苯酚的降解特性研究 总被引:6,自引:1,他引:6
实验室分离的一株热带假丝酵母(编号为8953)具有较强的苯酚降解能力,并可以利用苯酚、间苯二酚、联苯胺等芳烃为唯一碳源和能源生长。该菌株在48h内可完全降解约14.88mmol/L苯酚,完全降解10.63mmol/L苯酚只需要24h,其降解苯酚浓度最高可达19.13mmol/L。在pH4~9,温度20℃~40℃范围内,苯酚浓度为10.0mmol/L条件下该菌株均保持100%的降解率。该菌株降解苯酚的最适pH范围为6.0~8.0,最适温度范围为28℃~30℃,最佳接种量为1%~3%,外源添加氮源能促进酵母生长和苯酚的降解。 相似文献
12.
取代苯甲酸在天然河流中的生物降解及其定量结构--生物降解性相关研究 总被引:1,自引:0,他引:1
以天然河流水作为微生物源 ,采用碘量法测定了 2 0种苯甲酸类化合物的 5日生化需氧量 ,并以其占理论需氧量的百分数作为表征生物降解性的参数 ,得出各类取代苯甲酸类化合物的生物降解能力为 :羟基 >氨基 >羧基 >甲氧基 >氯基 >硝基 ;对于同一种取代基 ,对位取代基化合物生物降解能力最大 ,而邻位、间位取代基化合物生物降解能力大体相同。计算了苯甲酸类化合物的分子连接性指数 ,并以 5日生化需氧量占理论需氧量的百分数为参数建立了 QSBR模型。分析结果表明 ,分子连接性指数5Xvpc、5Xp- 5Xvp 能较好地反映取代苯甲酸的生物降解性 相似文献
13.
富Ca^2+柠檬酸废水的处理 总被引:2,自引:0,他引:2
采用近三年废水处理厂的实际运行数据,分析了Ca^2 对厌氧和好氧的影响。在选用的工艺中,IC塔能适应高Ca^2 废水,不论是厌氧还是氧,Ca^2 对COD的去除都无影响。 相似文献
14.
一株苯酚降解菌的分离和鉴定 总被引:42,自引:0,他引:42
:从工业废水中分离到一株高效降解苯酚的菌株PHEA 2 ,它能够在以苯酚为单一碳源和能源的无机培养基上生长 ,其最高苯酚降解率为 394nmol/ (mg·min) .经Biolog细菌自动鉴定仪鉴定 ,该菌株为醋酸钙不动杆菌 (Acinetobactercalcoaceti cus) .采用PCR扩增获得的该菌 16SrDNA片段 ,核苷酸序列分析结果表明 ,该菌株的 16SrDNA的核苷酸序列与醋酸钙不动杆菌同源性为 98% .在细菌系统发育分类学上 ,PHEA 2归属变形细菌γ亚类、不动杆菌属、醋酸钙不动杆菌 . 相似文献
15.
Dunaliella tertiolecta has an ability to biodegrade dimethyl phthalate(DMP) was found in this study, and the average of the biodegradation rates were 11.3 mg/(L·d) and 30.5 mg/(L·d), and the average of the phthalic acid (PA) production rates were 1.5 mg/(L·d) and 3.6 mg/(L·d), for initial 100 mg/L and 300 mg/L DMP, respectively. The larger amount of accumulation by D. tertiolecta under higher DMP concentration may be responsible for the increase of biodegradation rate, and one of products of DMP biodegradation by D. tertiolecta may be PA. By fitting the process of DMP biodegradation by D. tertiolecta with a kinetic equation newly suggested, the standard deviations between calculated and observed values were 2.5 mg/L and 5.7 mg/L, respectively. 相似文献
16.
甲醇残液生化处理系统中好氧菌特性研究 总被引:1,自引:0,他引:1
以甲醇残液生化处理系统中的生物污泥为材料,运用分离技术,获得好氧菌30株。研究了每株细菌的生理生化特性和培养特征,将30株细菌鉴定为9个属,并进一步探讨了甲醇残液生物降解的模式。 相似文献
17.
A laboratory scale study was conducted to assess the feasibility of the new coupling of rotating biological contactor (RBC) plus porous biomass support system (PBSS) using polyurethane foam as porous support media to biodegrade petroleum refinery wastewater. Polyurethane foam was attached on disks of two four-stage laboratory scale cascade connected RBC units.The two RBC units were operated simultaneously at different but constant, flowrates giving hydraulic loading rates of 0.01, 0.02, 0.03, 0.04 m3/m2/d in two runs keeping the same rotational speed 10 r/min throughout. Organic loading was a less controllable factor in this study.For all of the hydraulic loadings, it was found that the removal efficiency of total chemical oxygen demand (TCOD) and oil were above 80 percent. Ammonia nitrogen and phenol removal were above 90 and 80 percent respectively. The maximum biomass concentration within polyurethane foam was about 30 g/m2 in the first stage for 0.03 m3/m2/d hydraulic loading.The results show that t 相似文献
18.
Laboratory column experiments run for up to 13 days compared air sparging of groundwater contaminated by dissolved petroleum hydrocarbons in sterile and non-sterile aquifer sediments as well as uncontaminated sediments and groundwater. Loss of dissolved BTEX compounds in the contaminated columns was very rapid, occurring through volatilisation. The majority of the dissolved total organic carbon (TOC) persisted for much longer periods however. A direct comparison between losses from sterile and non-sterile columns suggested a negligible contribution of biodegradation to the removal of TOC. This was difficult to confirm through examination of O2 utilisation because oxidation of a small amount of reduced sulphur in the aquifer materials was the dominant sink for O2. Despite this, it was possible to conclude that less than 22% of the removal of TOC was through biodegradation during the first three days of air sparging. 相似文献
19.
Charles M. Buchanan Debra Dorschel Robert M. Gardner Ron J. Komarek Andrew J. Matosky Alan W. White Matthew D. Wood 《Journal of Polymers and the Environment》1996,4(3):179-195
In this account, we report our findings on blends of cellulose acetate having a degree of substitution (DS) of 2.49 (CA2.5) with a cellulose acetate having a DS of 2.06 (CA2.0). This blend system was examined over the composition range of 0–100% CA2.0 employing both solvent casting of films (no plasticizer) and thermal processing (melt-compressed films and injection molding) using poly(ethylene glycol) as a common plasticizer. All thermally processed blends were optically clear and showed no loss in optical quality after storage for several months. Thermal analysis and measurement of physical properties indicate that blends in the middle composition range are partially miscible, while those at the ends of the composition range are miscible. We suggest that the miscibility of these cellulose acetate blends is influenced primarily by the monomer composition of the copolymers. Bench-scale simulated municipal composting confirmed the biodestructability of these blends and indicated that incorporation of a plasticizer accelerated the composting rates of the blends.In vitro aerobic biodegradation testing involving radiochemical labeling conclusively demonstrated that both the lower DS CA2.0 and the plasticizer significantly enhanced the biodegradation of the more highly substituted CA2.5.While this work was in progress, Robert Gardner was struck with cancer and died on June 6, 1995. This paper is dedicated to his memory and to his contributions as a friend and colleague. 相似文献
20.