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淤泥质海岸防护林的降盐改土功能 被引量:11
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作者 胡海波 梁珍海 《东北林业大学学报》 CAS CSCD 北大核心 2001年第5期34-34,共1页
研究了淤泥质海岸防护林降盐改土的功能 ,结果表明 ,淤泥质海岸防护林表土已脱盐 ,土壤中可溶性离子成份发生了很大变化 ,不具有典型盐渍土的特性 ,土壤含盐量与潜水矿化度密切相关 (r =0 .9940 ) ,并随季节变化表现出不同的变化规律 。
关键词 土壤含 淤泥质海岸 防护林 改土功能 降盐功能
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Impacts of Alkalinity Drops on Shifting of Functional Sulfate-Reducers in a Sulfate-Reducing Bioreactor Characterized by FISH 被引量:2
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作者 赵阳国 王爱杰 +2 位作者 任南琪 赵秋实 ZADSAR Maryam 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2007年第2期276-280,共5页
Alkalinity is one of the most important parameters that influence microbial metabolism and activity during sulfate-laden wastewater biological treatment. To comprehensively understand the structure and dynamics of fun... Alkalinity is one of the most important parameters that influence microbial metabolism and activity during sulfate-laden wastewater biological treatment. To comprehensively understand the structure and dynamics of functional microbial community under alkalinity changes in sulfate-reducing continuous stirred tank reactor (CSTR), fluorescent in situ hybridization (FISH) technique was selected for qualitative and semi-quantitative analysis of functional microbial compositions in activated sludge. During 93d of bioreactor operation, the influent alkalinity was adjusted by adding sodium bicarbonate from 4000mg·L^-1 down to 3000mg·L^-1, then to 1500mg·L^-1, whereas other parameters, such as the loading rates of chenucal oxygen demand (COD) and sulfate (SO4^2-), hydraulic retention time (HRT), and pH value, were continuously maintained at 24g·L^-1·d^-1 and 4.8g·L^-1·d^-1, 10h,and about 6.7, respectively. Sludge samples were collected during diflerent alkalinity levels, and total Bacteria, tlae sulfate-reducing bacteria (SRB), and four SRB genera were demonstrated with 16S ribosomal .RNA-targeted oligonucleotide probes. The results indicated that bioreactor started-up successfully in 30d. The two instances ot drop in alkalinity resulted in the fluctuation of sulfate removal rate. The diversity of SRB community showed significant shift, and the alteration of microbial community directly resulted in the corresponding statuses of bioreactor. The dominant genera during the bioreactor start-up and alkalinity drops were Desulfovibrio, Desulfobacter, Desulfovibrio, Desulfobacter, and Desulfovibrio, respectively. In addition, the acetotrophic SRB sutterecl more trom me reduction of alkalinity than the non-acetotrophic SRB. This strategy can present the functional microbial community structure during start-up and alkalinity drop stages, and provides a powerful theoretical guideline for optimization and adjustment of bioreactor, as well. 展开更多
关键词 ALKALINITY sulfate-reducing bacterium fluorescent in situ hybridization
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