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861.
随着纳米技术的广泛应用,越来越多的纳米材料进入污水/污泥中,对污水/污泥的厌氧消化过程产生一定的影响。综述了纳米材料特性利用在厌氧消化过程中产生的影响(吸附还原重金属,作为电子供体提高厌氧消化效能,降解难降解有机物,减少硫化氢等),以及纳米材料可能对厌氧消化系统微生物的影响(释放金属离子毒性,通过吸附作用包被微生物细胞,破坏细胞膜,引起遗传物质损伤等)。提出最大限度降低纳米材料对厌氧消化系统微生物危害以及利用纳米材料特性促进污水/污泥厌氧消化过程的可行性。  相似文献   
862.
水泥企业协同处置废弃物成为目前构建资源节约型与生态友好型城市十分有效的途径。针对这一新型的生产技术,通过介绍并对比分析中日水泥企业协同处置废弃物现状发现,我国废弃物产量大,但协同处置的方法发展缓慢,在协同处置废弃物种类、替代燃料水平、水泥窑固废利用水平、法律法规、政府管理、企业意识等方面与日本有很大的差距,针对我国的实际情况提出促进技术发展、加大科研力度、完善管理体系等合理的建议。  相似文献   
863.
Nansi Lake is composed of four sub-lakes from north to south: Nanyang Lake, Dushan Lake, Zhaoyang Lake and Weishan Lake. An environmental pollution investigation was carried out to determine the fractionation, and pollution assessments of mercury (Hg) in surficial sediments from Nansi Lake. Results showed that the mean concentration of Hg was 3.1 times higher than its background value (0.015 mg kg?1), and the high concentration of Hg which even reached up to five times than the background value in the part of Dushan Lake and Weishan Lake, which indicated that there are obvious spatial differences. The content of Hg was positively correlated with that of total organic carbon, and negatively correlated with that of pH and SiO2 in surface sediments. An improved Tessier sequential extraction procedure was used to study the fractions of Hg in sediments. The results indicated that Hg existed primarily in the fraction of residual, which accounts for 58.4% of total mercury (THg), and the percentage of extractable Hg was only 1.93% of total mercury. High concentrations of mercury of non-residual phase were found in part lake area from the Nanyang Lake and the Weishan Lake, which indicating a higher potential ecological risk relative to the other lake areas. Based on the values of enrichment factor and geo-accumulation index, most part of Dushan Lake and Nanyang Lake and Weishan Lake were in a moderate pollution. And based on the fractionation of mercury, risk assessment code of Hg exhibited low risks to the environment in Nansi Lake.  相似文献   
864.
The study focused on the analysis of the chemical constituents of ethyl acetate extracts of Penicillium herquei, an endophyte of Cordyceps sinensis. The compounds were isolated and purified by chromatographic procedures and identified on the basis of spectral methods. Eleven compounds were identified: 2′,4′-dihydroxy-3′,5′-dimethylacetophenone (1), vanillin (2), 3-oxo-α-ionone (3), 3,3,5-trimethyl-4-(3-oxo-1-butenyl)cyclohexan-1-one (4), p-hydroxybenzaldehyde (5), p-hydroxyacetophenone (6), methyl p-hydroxyphenylacetate (7), cyclo-(Pro-Ile) (8), cyclo-(Pro-Val) (9), 4-methoxyphenylacetic acid (10), and cyclo-(4-methyl-Pro-Val) (11). Benzaldehydes, ionones, and cyclodipeptides are the major metabolites of the P. herquei from C. sinensis. © 2018 Science Press. All rights reserved.  相似文献   
865.
The novel microwave catalyst MgFe2O4-SiC was synthesized via sol-gel method, to remove azo dye Direct Black BN (DB BN) through adsorption and microwave-induced catalytic reaction. Microwave-induced catalytic degradation of DB BN, including adsorption behavior and its influencing factors of DB BN on MgFe2O4-SiC were investigated. According to the obtained results, it indicated that the pseudo-second-order kinetics model was suitable for the adsorption of DB BN onto MgFe2O4-SiC. Besides, the consequence of adsorption isotherm depicted that the adsorption of DB BN was in accordance with the Langmuir isotherm, which verified that the singer layer adsorption of MgFe2O4-SiC was dominant than the multi-layer one. The excellent adsorption capacities of MgFe2O4-SiC were kept in the range of initial pH from 3 to 7. In addition, it could be concluded that the degradation rate of DB BN decreased over ten percent after the adsorption equilibrium had been attained, and the results from the result of comparative experiments manifested that the adsorption process was not conducive to the process of microwave-induced catalytic degradation. The degradation intermediates and products of DB BN were identified and determined by GC-MS and LC-MS. Furthermore, combined with the catalytic mechanism of MgFe2O4-SiC, the proposed degradation pathways of DB BN were the involution of microwave-induced $OH and holes in this catalytic system the breakage of azo bond, hydroxyl substitution, hydroxyl addition, nitration reaction, deamination reaction, desorbate reaction, dehydroxy group and ring-opening reaction.
  相似文献   
866.
867.
Environmental Geochemistry and Health - MicroRNAs (miRNAs) are a class of small, noncoding RNA species that play crucial roles across many biological processes and in the pathogenesis of major...  相似文献   
868.
Microbial compositions showed high differences in two study areas. COD was the key anthropogenic indicator in the coastal wastewater disposal area. Distinctive microbes capable of degrading toxic pollutants were screened. Microbial communities in effluent-receiving areas followed “niche theory”. Microbial community structure is affected by both natural processes and human activities. In coastal area, anthropegenetic activity can usually lead to the discharge of the effluent from wastewater treatment plant (WWTP) to sea, and thus the water quality chronically turns worse and marine ecosystem becomes unhealthy. Microorganisms play key roles in pollutants degradation and ecological restoration; however, there are few studies about how the WWTP effluent disposal influences coastal microbial communities. In this study, sediment samples were collected from two WWTP effluent-receiving areas (abbreviated as JX and SY) in Hangzhou Bay. First, based on the high-throughput sequencing of 16S rRNA gene, microbial community structure was analyzed. Secondly, several statistical analyses were conducted to reveal the microbial community characteristics in response to the effluent disposal. Using PCoA, the significant difference of in microbial community structure was determined between JX and SY; using RDA, water COD and temperature, and sediment available phosphate and ammonia nitrogen were identified as the key environmental factors for the community difference; using LDA effect size analysis, the most distinctive microbes were found and their correlations with environmental factors were investigated; and according to detrended beta-nearest-taxon-index, the sediment microbial communities were found to follow “niche theory”. An interesting and important finding was that in SY that received more and toxic COD, many distinctive microbes were related to the groups that were capable of degrading toxic organic pollutants. This study provides a clear illustration of eco-environmental deterioration under the long-term human pressure from the view of microbial ecology.  相似文献   
869.
Ethanol-type sludge fermentation has recently attracted much attention because it can enhance direct interspecies electron transfer and thus improve the anaerobic digestion of waste activated sludge(WAS). In this paper, the enhancement of short-term ethanol-type fermentation of WAS via adding Saccharomyces was investigated. The experimental results show that the maximum ethanol production of 1030.8 ± 20.6 mg/L was achieved, with the optimum fermentation conditions of a p H of 5.1, temperature of...  相似文献   
870.
底质耗氧行为探讨   总被引:2,自引:0,他引:2  
庄源益  戴树桂 《环境化学》1995,14(6):537-540
本文介绍了底质耗氧速率方程,速率常数k值比较及温度对k值的影响等,对南排污河等底质的研究表明:k值大,污染严重,故可用k值估计底质污染的轻重。另外,温度升高,底质耗氧速率常数增大。  相似文献   
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