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于佳佳  陈浚  杨宣  陈建孟 《环境科学》2012,33(4):1313-1317
采用紫外诱变方法对从污水处理厂活性污泥中筛得的1株好氧反硝化菌(YS)进行处理,得到1株突变菌株(TB),考察了诱变前后2菌株的理化性能及反硝化能力的变化.结果表明,菌株TB的反硝化能力得到改善.在相同实验条件下,菌株TB对硝酸根的去除能力可从菌株YS的87%提高至93%,培养基中的亚硝酸根浓度从212.48 mg.L-1减少到37.62 mg.L-1,去除率从15%快速提高至85%,表明菌株TB对亚硝酸根的去除能力大幅提高,且传代前后菌株TB对硝酸根和亚硝酸根的去除率变化不大,遗传稳定性较好.对两菌株的反硝化性能影响因素的研究比较发现菌株YS的最适条件为:接种量1.5%左右,pH为6,C/N比为10,碳源为葡萄糖;而菌株TB的最适条件为:接种量1.5%左右,pH为9,C/N比为10,碳源为琥珀酸钠.  相似文献   
2.
Polybrominated diphenyl ethers (PBDEs) are frequently detected in food and environmental samples. We used compound specific isotope analysis to determine the δ13C values of individual PBDEs in two technical mixtures. Within the same technical product (DE-71 or DE-79), BDE congeners were the more depleted in 13C the higher brominated they were. In contrast, the products of light-induced hydrodebromination of BDE 47 and technical DE-79 were more enriched in 13C because of more stable bonds between 13C and bromine. As a result, the δ13C values of the irradiated solution progressed diametrically compared to those of the technical synthesis. The ratio of the δ13C values of BDE 47 to BDE 99 and of BDE 99 to BDE 153 are thus suggested as indicators to distinguish native technical products from transformation products. Ratios <1 are typical for native congeners (e.g. in DE-71) while the reversed ratio (>1) is typical of transformation products.  相似文献   
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The rates of photodegradation and photocatalysis of benzo [a]pyrene (BaP) on soil surfaces under UV light have been studied. Different parameters such as temperature, soil particle sizes, and soil depth responsible for photodegradation, catalyst loads and wavelength of UV irradiation blamed for photocatalysis have been monitored. The results obtained indicated that BaP photodegradation follows pseudo-first-order kinetics. BaP photodegradation was the fastest at 30℃ . The rates of BaP photodegradation at different soil particle size followed the order: less than 1 mm〉less than 0.45 mm〉less than 0.25 mm. When the soil depth increased from 1 mm to 4 ram, the half-life increased from 13.23 d to 17.73 d. The additions of TiO2 or Fe2O3 accelerated the photodegradation of BaP, and the photocatalysis of BaP follows pseudo-first-order kinetics. Changes in catalyst loads of TiO2 (0.5%, 1%, 2%, and 3% (wt)) or Fe203 (2%, 5%, 7%, and 10% (wt)) did not significantly affect the degradation rates. Both BaP photocatalysis in the presence of TiO2 and Fe2O3 were the fastest at 254 nm UV irradiation.  相似文献   
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紫外诱变选育优势好氧反硝化菌株   总被引:3,自引:0,他引:3  
吕聪  马玖彤  刘懿  张凤君 《环境科学学报》2008,28(10):1976-1980
采用紫外照射的方法对好氧反硝化菌株进行诱变,从中筛选出一株优势正突变菌株ZR43,并对其形态、生长条件及反硝化能力进行了研究.结果显示,相对于亲本R1,菌株ZR43对亚硝态氮的积累量大幅度降低,从75.05mg·L-1减少到17.42mg·L-1.TN去除率提高了18%.菌株形态为球菌.最佳生长条件:温度为30℃、pH为8、C/N为10、以丁二酸为最佳碳源.C/N对菌株ZR43的好氧反硝化能力影响很大,当C/N大于8时,总氮的去除率均达到32%以上.  相似文献   
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