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1.
以固定化微藻颗粒为原料,通过搭建流化床反应器强化微藻对氨氮(NH4+-N)的去除,设计了藻种、污水上升流速、光周期和光照强度四组单一变量实验,系统地研究了不同条件下微藻去除NH4+-N的能力.结果表明,当以固定化斜生栅藻为原料、污水上升流速为6.8m/h、光周期为8:16h和光照强度为4800Lux时,NH4+-N去除效果最优(96.7%).在最优操作条件下,探究了COD为200mg/L时微藻去除NH4+-N的潜力,结果表明,当NH4+-N初始浓度不高于50mg/L时,NH4+-N去除率高于95%.本实验建立了一套半连续微藻流化床实验方法,该方法显著减弱了微藻在生物同化过程中对有机碳源的依赖性,为低COD条件下微藻生物脱氮工艺的设计提供了技术参考和理论基础.  相似文献   
2.
Phenol, like many other organic solvents, is toxic to micro-organisms even at low concentrations. However, some micro-organisms can withstand this toxicity to a certain concentration. To observe the uptake mechanism of phenol, bacteria were isolatedfrom a petroleum refinery effluent and identified. Study was carried out to understand the effect of varying sub-lethal concentrations of phenol, on all the isolated individual bacterial cultures. Out of the bacteria isolated, Serratia liquefaciens was found to tolerate phenol concentration up to 1500 mg l-1. A microbial consortium of the isolated bacteriawas formulated and immobilized. Individual cultures were also immobilized and uptake of phenol by the immobilized micro-organisms was observed in a nutrient-rich and nutrient-stressed medium containing phenol as a sole source of carbon. A time-dependent uptake of phenol was exhibited by the micro-organismsin nutrient-stressed medium, after which a sudden increase in phenol concentration occurred in the extracellular medium, till it reached back to the initial concentration. This was attributedto an active efflux mechanism adopted by the micro-organisms to withstand the toxic shock.  相似文献   
3.
微生物固定化技术与载体结构的研究   总被引:11,自引:2,他引:11  
分析微生物固定化的一般方法、常用固定化载体的特性 ;并通过实验研究固定化微生物颗粒处理微污染水的净水效能 ,分析载体结构对微生物固定化微生物活性的影响  相似文献   
4.
利用石化污泥生产新型除油吸附剂的试验研究   总被引:9,自引:0,他引:9  
利用量大面广的石化污泥制备吸附材料用于水表面油的清除。该吸附剂制备的最佳工艺条件为:料层厚度65mm,碳化温度360℃-400℃,炭化时间4.5-5h。所制备的吸附剂具有很强的亲油疏水性和100%的悬浮率,20℃时对原油的饱和吸附量达到7.7g/g。  相似文献   
5.
稀土吸附剂对废水深度除磷研究   总被引:2,自引:0,他引:2  
通过浸渍——干燥——焙烧法制备预载镧氧化物稀土吸附剂,探讨了该吸附剂对水中磷的吸附性能。研究表明在镧离子浓度为0.025mol/1、pH为10-11的溶液中浸渍,于500℃温度下焙烧制得的稀土吸附剂,其除磷效果可达95%。  相似文献   
6.
对在沙漠地区应用化学固沙剂固沙的探讨   总被引:8,自引:1,他引:8  
探讨了化学固沙的原理和效果。提出了开展化学-生物一体化固沙新观点。认为LD系列化学固沙剂、超高强吸水保水剂等固沙植被用新材料及低成本制备技术,将在沙漠地区的公路、铁路建设中具有更为广阔的应用前景。  相似文献   
7.
群体感应淬灭菌的分离及其膜污染控制性能   总被引:1,自引:0,他引:1  
赵畅  王文昭  徐期勇 《环境科学》2016,37(12):4720-4726
通过淬灭细菌的群体感应系统来抑制生物膜形成、防止膜生物污染的方法近年来受到广泛关注.本实验从实际运行污水处理厂活性污泥中分离出5株具有群体感应淬灭功能的菌株,其中菌株HG10对信号分子N-乙酰高丝氨酸环内酯(C6-HSL)分解能力最强.经16S rRNA基因序列比对,初步鉴定为蜡样芽孢杆菌(Bacillus cereus).用海藻酸钠将菌株HG10进行包埋固定,以探究其在膜过滤系统中对膜污染防治的效果.结果表明,经过8 d培养,添加细菌包埋珠(SA-HG10)的实验组B中膜通量为181.29 L·(m~2·h)~(-1),未投加包埋珠的对照组A膜通量为110.64 L·(m~2·h)~(-1),B组膜通量比A组高出63.86%;对微滤膜片上生物膜中EPS含量测定表明,实验组B中EPS多糖和蛋白质含量较对照组A分别减少了29%和48%,疏水性蛋白质含量的大量减少是造成膜污染减弱的主要原因;膜表面胞外聚合物(EPS)总含量减少了43%,表明投放SA-HG10细菌包埋珠对过滤膜片上生物膜形成具有明显抑制作用,改善了膜过滤性能.  相似文献   
8.
Enzymatic decolourization of the azo dye, Direct Yellow (DY106) by Cucurbita pepo (courgette) peroxidase (CP) is a complex process, which is greatly affected by pH, temperature, enzyme activity and the concentrations of H2O2 and dye. Courgette peroxidase was extracted and its performance was evaluated by using the free-CP (FCP) and immobilized-CP (ICP) forms in the decolourization of DY106. Immobilization of peroxidase in calcium alginate beads was performed according to a strategy aiming to minimize enzyme leakage and keep its activity at a maximum value by optimizing sodium alginate content, enzyme loading and calcium chloride concentration. The initial conditions at which the highest DY106 decolourization yield was obtained were found at pH 2, temperature 20℃, H2O2 dose 1 mmol/L (FCP) and 100 mmol/L (ICP). The highest decolourization rates were obtained for dye concentrations 50 mg/L (FCP) and 80 mg/L (ICP). Under optimal conditions, the FCP was able to decolorize more than 87% of the dye within 2 min. While with ICP, the decolourization yield was 75% within 15 min. The decolourization and removal of DY106 was proved by UV-Vis analysis. Fourier transform infrared (FT-IR) spectroscopy analysis was also performed on DY106 and enzymatic treatment precipitated byproduct.  相似文献   
9.
Alga-lysing bacteria have been paid much attention to in recent years. In this study, the alga-lysing strain P05 which was isolated from an immobilizing biosystem was immobilized by coke and elastic filler, forming two biological reactors. The removal efficiencies of algae, NH4^+-N and organic matter using the two reactors were studied. The results showed that strain P05 was an ideal algal-lysing bacteria strain because it was easy to be immobilized by coke and elastic filler which are of cheap, low biodegradability and the simple immobilization procedure. After 7 d filming, the biological film could be formed and the reactors were used to treat the eutrophic water. These two reactors were of stability and high effect with low cost and easy operation. The optimal hydraulic retention time (HRT) of each reactor was 4 h. The algae removal rates were 80.38% and 82.1% (in term of Chl-α) of coke reactor and filler reactor, respectively. And that of NH4^+-N were 52.3% and 52.7%. The removal rates of CODMn were 39.03% and 39.64%. The strain P05 was identified as Bacillus sp. by PCR amplification of the 16S rRNA gene, BLAST analysis, and comparison with sequences in the GenBank nucleotide database.  相似文献   
10.
Kaolin has been widely used as an adsorbent to remove heavy metal ions from aqueous solutions. However, the lower heavy metal adsorption capacity of kaolin limits its practical application. A novel environmental friendly material, calcium alginate immobilized kaolin (kaolin/CA), was prepared using a sol-gel method. The e ects of contact time, pH, adsorbent dose, and temperature on Cu2+ adsorption by kaolin/CA were investigated. The Langmuir isotherm was used to describe the experimental adsorption, the maximum Cu2+ adsorption capacity of the kaolin/CA reached up to 53.63 mg/g. The thermodynamic studies showed that the adsorption reaction was a spontaneous and endothermic process.  相似文献   
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