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21.
Ⅰ Ⅱ-ASBR中厌氧颗粒污泥的微生物组成及特性   总被引:1,自引:0,他引:1  
在35℃下以奶粉人工合成废水为底物连续运行了两段厌氧反应器(ⅠⅡ-ASBR),且于ⅠⅡ两柱中形成了两种不同的厌氧颗粒污泥,为了解厌氧颗粒污泥的微生态结构及生物学特性,对ⅠⅡ两柱中厌氧颗粒污泥的形态及微生物组成进行扫描电镜观察,并测定了其不同基质中的比产甲烷活性、辅酶F420和胞外多聚物的含量。结果表明:ⅠⅡ-ASBR反应器ⅠⅡ两柱中厌氧颗粒污泥形态及微生物组成差异明显,Ⅰ柱的厌氧颗粒污泥大而密实,Ⅱ柱的较小,呈多孔的网状结构,Ⅰ柱中厌氧颗粒污泥以甲烷八叠球菌、球菌及短杆菌为主,丝状菌较少,Ⅱ柱则以丝状菌、短杆菌为主,球菌较少;Ⅰ柱颗粒污泥利用葡萄糖、甲酸、丙酸的产甲烷活性较高,利用乙酸的活性相对较低,Ⅱ柱颗粒污泥利用葡萄糖、乙酸的产甲烷活性较高,而利用甲酸、丙酸的产甲烷活性较低;辅酶F420的含量Ⅱ柱比Ⅰ柱明显要高,而胞外多聚物含量Ⅰ柱比Ⅱ柱的高。  相似文献   
22.
环糊精在土壤有机污染物治理中的应用   总被引:2,自引:0,他引:2  
综述了环糊精及其衍生物在土壤弱极性有机物治理中的应用和原理。环糊精可与土壤中弱极性有机污染物形成主客包合物,从而增加其水溶性促进其从土壤中解吸去除;能够同时去除金属离子;能够改变有机污染物理化性质促进其光解;可降低有机污染物毒性促进其微生物降解。  相似文献   
23.
以壳聚糖(CTS)、聚乙烯吡咯烷酮(PVP)、活性炭(C)为基材,Cu(Ⅱ)为印迹离子,制备了CTS/PVP共混印迹球[Cu(Ⅱ)-IICP]和CTS/PVP/C共混印迹球[Cu(Ⅱ)-IICPC].以Cu(Ⅱ)的吸附量作为评价指标,对两种共混印迹球的制备条件进行了优化.研究结果表明,当CTS/PVP的质量比为6∶4,活性炭质量分数为0.6%,Cu(Ⅱ)模板剂质量分数为0.05%,所制备的两种共混印迹球吸附性能较佳,且对Cu(Ⅱ)有较好的选择吸附性.物理吸附分析结果表明,与未印迹相比印迹材料的比表面积明显增大.FTIR谱图分析,Cu(Ⅱ)模板主要与CTS和PVP中的—NH2和—OH发生了配位作用.XRD谱图分析结果表明,CTS与PVP、C、Cu(Ⅱ)之间发生了相互作用,改变了CTS原有的晶体结构,使其结晶度降低.  相似文献   
24.
李宁  梅征 《中国环境科学》2012,32(7):1210-1215
以β-环糊精(β-CD)和聚酰胺-胺(PAMAM)为原料,合成了新型环糊精聚合物(PAMAM-CD),并用元素分析、扫描电镜(SEM)和傅里叶红外光谱(FT-IR)对其进行了表征.提出了PAMAM-CD与Zn2+最可能的5种配位方式,研究了PAMAM-CD对Zn2+的吸附动力学及等温吸附特性.结果表明:吸附平衡时间为300min,最佳pH值为5~6.5,吸附量达0.78mmol/g.吸附过程符合伪二级动力学模型,速率控制步骤为粒内扩散控制,吸附等温线符合Freundlich模型.在288,298,303,308K时,ΔG分别为-2.139,-2.417,-2.188和-2.218 kJ/mol,表明PAMAM-CD对Zn2+的吸附是一个自发过程.  相似文献   
25.
利用反复冻融的方法对污泥细胞进行破碎,考察处理前后污泥重金属的浸出浓度和形态分布的变化,并通过扫描电镜和红外光谱分析污泥中微生物细胞形貌和有机化合物含量的变化.结果显示,经过细胞破碎处理后,污泥中重金属的浸出浓度增大,锌、镍、铬、镉和铜的浸出浓度比原始污泥分别增加了9.7%、5.1%、25%、9%和50%.不稳定态增加,锌和镍的不稳定态分别增加了20.4%和37.9%,锌、镍、铬和铜的有机态分别减少了4.2%、8.2%、1.2%和5.1%.细胞发生了形貌上的变化,细胞体破碎程度严重.细胞EPS以及污泥中的蛋白质、羧酸、多聚糖等有机基团含量明显减少.细胞破碎后污泥浸出浓度增加的主要原因是污泥中有机态的重金属转化成了其他不稳定态的重金属.  相似文献   
26.
The difficulty in achieving high removal efficiency for contaminants in textile wastewater over a wide range of pH impedes the progress of its treatment technique greatly. Herein, a facile and sustainable strategy was adopted for constructing magnetic ordered mesoporous polymers (M-OMPs) without the assistance of organic solvent and catalyst. The prepared M-OMPs were endowed with high special surface area and good superparamagnetism simultaneously, and exhibited high removal efficiency (>99%) for Methylene Blue (MB) within a short time (10 min) at a concentration of 50 mg/L. What's more, high removal efficiency was achieved over a wide range of pH 2-12 and the adsorption capacity for MB on M-OMPs was substantially retained even after 5 adsorption-desorption cycles, further demonstrating the application potential of M-OMPs in the decontamination of textile wastewater.  相似文献   
27.
Previous research in our laboratory reported a convenient laboratory-scale composting test method to study the weight loss of polymer films in aerobic thermophilic (53°C) reactors maintained at a 60% moisture content. The laboratory-scale compost reactors contained the following synthetic compost mixture (percentage on dry-weight basis): tree leaves (45.0), shredded paper (16.5), food (6.7), meat (5.8), cow manure (17.5), sawdust (1.9), aluminum and steel shavings (2.4), glass beads (1.3), urea (1.9), and a compost seed (1.0) which is designated Mix-1 in this work. To simplify the laboratory-scale compost weight loss test method and better understand how compost mixture compositions and environmental parameters affect the rate of plastic degradation, a systematic variation of the synthetic mixture composition as well as the moisture content was carried out. Cellulose acetate (CA) with a degree of substitution (DS) value of 1.7 and cellophane films were chosen as test polymer substrates for this work. The extent of CA DS-1.7 and cellophane weight loss as a function of the exposure time remained unchanged when the metal and glass components of the mixture were excluded in Mix-2. Further study showed that large variations in the mixture composition such as the replacement of tree leaves, food, meat, and sawdust with steam-exploded wood and alfalfa (forming Mix-C) could be made with little or no change in the time dependence of CA DS-1.7 film weight loss. In contrast, substituting tree leaves, food, meat, cow manure, and sawdust with steam-exploded wood in combination with either Rabbit Choice (Mix-D) or starch and urea (Mix-E) resulted in a significant time increase (from 7 to 12 days) for the complete disappearance of CA DS-1.7 films. Interestingly, in this work no direct correlation was observed between the C/N ratio (which ranged from 13.9 to 61.4) and the CA DS-1.7 film weight loss. Decreasing moisture contents of the compost Mix-2 from 60 and 50 and 40% resulted in dramatic changes in polymer degradation such that CA DS-1.7 showed an increase in the time period for a complete disappearance of polymer films from 6 to 16 and 30 days, respectively.Guest Editor: Dr. Graham Swift, Rohm & Haas.Paper presented at the Bio/Environmentally Degradable Polymer Society—Second National Meeting, August 19–21, 1993, Chicago, Illinois.  相似文献   
28.
Volatile organic compounds (VOCs) with high toxicity and carcinogenicity are emitted from kinds of industries, which endanger human health and the environment. Adsorption is a promising method for the treatment of VOCs due to its low cost and high efficiency. In recent years, activated carbons, zeolites, and mesoporous materials are widely used to remove VOCs because of their high specific surface area and abundant porosity. However, the hydrophilic nature and low desorption rate of those materials limit their commercial application. Furthermore, the adsorption capacities of VOCs still need to be improved. Porous organic polymers (POPs) with extremely high porosity, structural diversity, and hydrophobic have been considered as one of the most promising candidates for VOCs adsorption. This review generalized the superiority of POPs for VOCs adsorption compared to other porous materials and summarized the studies of VOCs adsorption on different types of POPs. Moreover, the mechanism of competitive adsorption between water and VOCs on the POPs was discussed. Finally, a concise outlook for utilizing POPs for VOCs adsorption was discussed, noting areas in which further work is needed to develop the next-generation POPs for practical applications.  相似文献   
29.
Soil retrieval, processing and storage procedures can have a profound effect on soil microorganisms. In particular, changes in soil microbial populations may adversely affect the biological activity of a soil and drastically alter the soil's potential to mineralize added substrates. The effects of cold storage on the biodegradation of a series of test polymers was investigated using two soils—a synthetic soil mix (SM-L8) and a field soil (Bridgehampton silt loam) from Rhode Island (RI-1). Biodegradation tests were conducted using freshly prepared/collected soil and again following storage at 4°C for 3 to 8 months. Prior to each biodegradation test, the soils were incubated at 60% water-holding capacity (WHC) and 25°C to rejuvenate the microbial populations; the soils were incubated for periods of 48 h (freshly collected soil) or 25 days (soils stored at 4°C). Soil microbial populations were assessed by enumerating different segments of the population on agar plates containing different selective media. Mineralization of the test polymers (cellulose, poly-3-hydroxybutyrate, and starch acetate, d.s. 1.5) was monitored using standard respirometric techniques. Our results demonstrated that cold storage had a generally negative effect on the soil microbial populations themselves but that its effect on the capacity of the soil microorganisms to degrade the test polymers varied between soils and polymer type. Whereas cold storage resulted in dramatic shifts in the community structure of the soil microbial populations, substantial restoration of these populations was possible by first conditioning the soils at 60% WHC and ambient temperatures for 25 days. Likewise, although the effects of cold storage on polymer mineralization varied with the test polymer and soil, these effects could be largely offset by including an initial 25-day stabilization period in the test.  相似文献   
30.
Cyclodextrins (CDs), with hydrophobic interior cavity and hydrophilic external surface, are capable of accelerating or inhibiting chemical degradation of organophosphorus pesticides through forming inclusion complexes between CDs and pesticides. This work evaluated the effects of CDs on hydrolysis of malathion in an attempt to assess their potential application in environmental approach. β-CD and its two derivatives, randomly methylated β-CD (RAMEB) and hydroxypropyl β-CD (HP-β-CD), were tested. It was found that RAMEB could inhibit the hydrolysis of malathion, and this was the function of pH and temperature, the inhibitory effects increase with increasing concentration of RAMEB and elevating temperature between 15 and 35℃. On the other hand, β-CD and HP-β-CD have little or no stabilizing effects on malathion at all pH and temperature studied, except that the large concentration of β-CD and HP- β-CD can mildly reduce hydrolysis of malathion. Both 2 mol/L and 5 mol/L urea increase the inhibitory effects of RAMEB on hydrolysis of malathion at 25℃, oH 9.0.  相似文献   
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