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针对微生物修复地下水中四氯乙烯(tetrachloroethylene,PCE)周期长的问题,通过添加共代谢基质强化微生物修复技术以提高修复速率。以某污水处理厂的厌氧活性污泥为菌种来源,采用振荡培养法进行PCE高效降解菌群的驯化和筛选,对微生物降解PCE的温度、初始pH和PCE初始浓度3种影响因素进行了条件优化;使用甲醇、乙醇、葡萄糖、酵母浸膏以及乳酸钠作为共代谢基质,研究了不同共代谢基质条件下微生物群落对PCE的降解规律,并建立了反应动力学模型。结果表明:在种水平上,梭状芽孢杆菌Clostridium sp. FCB45是优势菌种;PCE初始浓度为1 mg·L-1,pH在中性,温度为30℃,共代谢基质为酵母浸膏时,微生物群落的降解效果最好,PCE降解率可高达96.75%,降解速率常数最高可达0.327 d-1;添加共代谢基质强化的微生物降解过程全部符合一级反应动力学模型。添加共代谢基质的微生物实验结果表明,添加共代谢基质可以有效缩短微生物修复周期,对污染地下水的原位生物修复具有一定的参考价值。  相似文献   
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Polygonum viviparum, which reproduces sexually and asexually, is widely distributed in the Qinghai-Tibet Plateau, and its reproduction strategies are very sensitive to changes in the environment. This study aimed to elucidate the effect of altitude on the photosynthetic characteristics and reproductive strategies of P. viviparum. This study was conducted to investigate the responses of photosynthetic, vegetative, and reproductive traits of P. viviparum populations along six altitudinal gradients in the eastern part of the Qilian Mountains in China. Our results indicated that, with increasing altitude, the net photosynthetic rate of P. viviparum showed an increasing trend, reaching its maximum value (14.39 μmol m–2 s–1) at 3 700 m above sea level. The transpiration rate showed an increasing trend, followed by a decreasing trend, and the intercellular CO2 concentration did not differ significantly between altitudes. With increasing altitude, the plant height and leaf area of P. viviparum showed a downward trend, the aboveground and underground biomass decreased, and the specific leaf area initially decreased and then increased. However, the leaf greenness index showed an upward trend, and the number of stomata in the upper and lower epidermis of leaves initially increased and then decreased. With increasing altitude, the proportion of inflorescence length per plant (the ratio of inflorescence length to plant height), the proportion of bulbil length per inflorescence (the ratio of bulbil length to inflorescence height), and the proportion of the number of bulbils per inflorescence (the ratio of the number of bulbils to the total number of flowers and bulbils) showed an increasing trend. Air temperature and light intensity are the major environmental factors affecting the photosynthetic characteristics and functional traits of P. viviparum. Thus, P. viviparum is exposed to more environmental stresses and obtains less energy when altitude increases, but it adapts to the harsh alpine environment by increasing the photosynthetic capability per unit area. With increasing altitude, P. viviparum populations may be sustained by investing less energy in vegetation and more in reproduction, especially asexual reproduction. © 2022 Science Press. All rights reserved.  相似文献   
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PAHs污染土壤的热修复可行性   总被引:1,自引:0,他引:1  
以某煤制气厂污染场地中16种US EPA优先控制多环芳烃(Σ16 PAHs)为目标污染物进行了热修复批量实验和可行性实验。热修复批量实验结果表明,当热修复温度为400℃、加热时间为8 h时,土壤中的Σ16 PAHs去除率达99.9%。热修复可行性实验选择重污染、中污染和轻污染土壤以400℃作为目标温度,恒温72 h进行实验。热修复前后不同程度污染土壤的Σ16 PAHs的总去除率均可达到99.9%,但重污染土壤浓度非常高,部分苯并类物质未达到修复目标值,需进一步延长加热时间或提高加热温度保证达到修复目标值。土壤土工参数影响分析结果表明,热修复后土壤颗粒粒径呈增大趋势,土壤稳定性、抗压强度均增强。此外,土壤中可溶性盐含量增多,盐渍化程度增大。  相似文献   
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