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741.
以某电子企业的低C/S值乳化液废水为原水,经过40 d后HABR(混合式厌氧折流板反应器)启动完成,试验结果表明,在进水C/S值为2.5~1.5,p H为9.0,HRT为36 h,进水碱度为3 500 mg/L,温度为(35±1)℃条件下,SO2-4、COD去除率分别稳定在98%、65%左右。此时经污泥特性分析,发现后面4个格室已形成1套以硫酸盐还原菌为优势菌种的微生物体系,较高的进水碱度、反应器中填料的加入、含硫启动方式,是保证系统在低C/S值进水条件下仍取得高SO2-4去除率的关键。 相似文献
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《环境科学与技术》2016,(9)
研究零价铁(ZVI)与奥奈达希瓦氏菌(S.oneidensis)协同还原去除水相中U(Ⅵ)时,共存离子Cr~(6+)、Fe~(3+)、Cu~(2+)、Mn~(2+)、Zn~(2+)、NO_3~-和SO_4~(2-)分别存在时对U(Ⅵ)还原效果的影响。结果表明:溶液中共存的Cr~(6+)和溶解态的Fe~(3+)对ZVI与微生物协同还原U(Ⅵ)均存在显著的抑制作用,且当溶液中共存Cr~(6+)的含量超过10.0 mg/L时,U(Ⅵ)的还原几乎被完全抑制。在共存金属浓度为20 mg/L时,Cu~(2+)、Zn~(2+)对U(Ⅵ)的还原均具有抑制作用,且Cu~(2+)的影响大于Zn~(2+);Mn~(2+)对U(Ⅵ)的还原有微弱的促进作用。共存阴离子SO_4~(2-)对U(Ⅵ)的还原有微弱的促进作用,且作用大小与其浓度成正相关;在0.5~5.0 mmol/L浓度范围内,12 h时,共存阴离子NO_3~-对U(Ⅵ)的还原有明显的抑制作用。 相似文献
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Zhangli Cai George A. Sorial Kai Zhang Pascal Saikaly Maher M. Zein Daniel B. Oerther 《Water, Air, & Soil Pollution: Focus》2008,8(3-4):311-321
Microbial communities in trickle bed air biofilters (TBABs) were evaluated under conditions of interchanging the feed volatile
organic compounds (VOCs) and VOC mixtures. Three independent TBABs (Biofilter “A,” “B,” and “C”) were run under interchanging
VOCs conditions with different initial VOCs. Two aromatic compounds (toluene and styrene) and two oxygenated compounds (methyl
ethyl ketone (MEK) and methyl isobutyl ketone (MIBK)) were interchanged as single solutes. Two other TBABs “D” and “E” were
run for two VOC mixtures. Biofilter “D” had a VOC mixture with equal molar ratio of the four components and Biofilter “E”
received a VOC mixture with its composition based on EPA 2003 emission report. Denaturing gradient gel electrophoresis (DGGE)
analysis of 16S rRNA genes was used to assess the microbial richness in TBABs for treating the VOC mixtures and the impact
of interchanging VOCs on the bacterial community structure in the biofilters. The results from DGGE indicated that the microbial
community structure in the biofilter was different after each interchange of VOCs. Some bands of microbial species faded and
some bands were strengthened. For the two TBABs treating VOC mixtures, the microbial species did not show significant difference,
but the richness among these species was different from each other. 相似文献
744.
Squaliobarbus curriculus is one of the most economically important edible freshwater fish in the Pearl River. To assess the level of genetic diversity and genetic variation of S. curriculus populations w ithin t he Pearl R iver, samples were collected from six geographical populations from six drainages. 978 base pairs of the D-loop sequence were obtained as a molecular marker. 106 haplotypes were defined among 170 S. curriculus individuals. Populations of S. curriculus in the Pearl River displayed a high haplotypic diversity index (h = 0.9820) and high nucleotide diversity index (π = 0.01353). T he results of genetic distance and genetic differentiation index show that genetic differentiation among S. curriculus populations is not significant. The neighbor-joining tree shows two clades. Clade A is composed of most haplotypes of S. curriculus. Clade B includes two private haplotypes from the Xijiang River. Haplotype network analysis is consistent with the results of genetic distance and genetic differentiation. The results of AMOVA analysis showed that most variation was found within populations (99.36%). Neutral test analysis explained that there was population expansion in the history of S. curriculus in the Pearl River. Xijiang River could be the center of origin, as supported by all the results. © 2018 Science Press. All rights reserved. 相似文献
745.
Roger F. Auch George Xian Christopher R. Laingen Kristi L. Sayler Ryan R. Reker 《Journal of Land Use Science》2018,13(1-2):32-58
Grassland to cropland conversion in the northern prairie of the United States has been a topic of recent land use change studies. Within this region more corn and soybeans are grown now (2017) than in the past, but most studies to date have not examined multi-decadal trends and the synergistic web of socio-ecological driving forces involved, opting instead for short-term analyses and easily targeted agents of change. This paper examines the coalescing of biophysical and socioeconomic driving forces that have brought change to the agricultural landscape of this region between 1980 and 2013. While land conversion has occurred, most of the region’s cropland in 2013 had been previously cropped by the early 1980s. Furthermore, the agricultural conditions in which crops were grown during those three decades have changed considerably because of non-biophysical alterations to production practices and changing agricultural markets. Findings revealed that human drivers played more of a role in crop change than biophysical changes, that blending quantitative and qualitative methods to tell a more complete story of crop change in this region was difficult because of the synergistic characteristics of the drivers involved, and that more research is needed to understand how farmers make crop choice decisions. 相似文献
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