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61.
采用碳化稻壳吸附-优势巨大芽孢杆菌生物氧化-活性炭除菌耦合净化严寒地区地下水中高铁锰,探究联合滤柱低温快速启动方法,基于接触氧化法与生物法对比分析成熟稻壳滤柱沿程除铁效果与反应速率,考查特定进水锰含量梯度下进水总铁浓度对生物除铁锰影响。结果表明,优势菌液全循环、低滤速运行方式使生物除铁锰活性滤膜成熟且稳定仅需34 d;稳定运行时铁、锰、残余菌平均去除率为96.28%、93.18%、75.43%,出水浓度均达国家生活饮用水卫生标准(GB5749-2006);生物法可加强总铁、Fe~(2+)去除效果,滤速提高对生物法中Fe~(2+)去除能力影响显著,进水铁含量过高或过低均会影响滤层除锰能力。  相似文献   
62.
The present study compared the capsid gene ( g23 ) of T4-type bacteriophages (phages) in Mn nodules with those in the plow layer soil and subsoils of two Japanese paddy fields by applying the primers MZIA1bis and MZIA6 to DNA extracts from the nodules and soils. The deduced amino acid sequences of the g23 genes in the Mn nodules were similar to those in the plow layer soil and in the subsoils. This result indicated that similar T4-type phage communities developed at these sites and that the diversity of T4-type phage communities was wide enough to cover those in the plow layer soil and in the subsoils. The majority of g23 clones formed several clusters with the clones and phages obtained from far-apart paddy fields, and the sequences of two clones were completely identical to a phage and a clone from other paddy fields at the nucleotide or amino acid level, indicating horizontal transfer of g23 genes between those paddy fields. A clone with a long nucleotide residue (686 bp) and a distribution remote from the other clones in the phylogenetic tree indicated that there were many uncharacterized, novel g23 genes in the paddy fields.  相似文献   
63.
本试验旨在研究日粮有机螯合锰添加水平对妊娠期水貂营养物质消化率及氮代谢的影响。试验采用单因子试验设计,选取150只健康成年雌性水貂,根据随机区组法分成5组,每组设30个重复,每个重复1只水貂。基础日粮中各组锰添加水平分别为0(Ⅰ组)、15(Ⅱ组)、50(Ⅲ组)、100(Ⅳ组)和500 mg/kg(Ⅴ组),锰以有机螯合锰形式添加。结果表明,妊娠期水貂的基础日粮中添加有机螯合锰水平为50 mg/kg时干物质表观消化率、蛋白质表观消化率最高,添加100 mg/kg时脂肪表观消化率达到最高;日粮有机螯合锰添加水平在100 mg/kg时对妊娠期水貂氮沉积、净蛋白质利用率和蛋白质生物学价值均最高,与0、500 mg/kg组相比差异显著(P<0.05)。因此,在妊娠期水貂基础日粮中添加有机螯合锰的适宜范围为50~100 mg/kg。  相似文献   
64.
锰致鸡睾丸DNA-蛋白质交联的研究   总被引:2,自引:0,他引:2  
目的:探讨锰致鸡睾丸DNA-蛋白质交联效应。方法:在饲料中添加500、800、1 700 mg/kg MnCl2建立亚慢性锰中毒模型,分别在试验30 d、60 d、90 d剖杀鸡只取睾丸组织,进行DPC(DNA-蛋白质交联)的检测,并在90 d进行生精细胞的凋亡检测。结果:与对照组相比,各染毒组睾丸组织DPC系数显著增大,凋亡指数升高。结论:锰能使睾丸组织DPC系数增大,生精细胞凋亡指数升高,导致DNA损伤,进而引起细胞凋亡。  相似文献   
65.
采用地统计学和地理信息系统(GIS)相结合的方法,对植烟前后土壤有效锰含量的空间变异规律进行研究.结果表明,植烟后土壤有效锰平均含量比植烟前有所降低,从60.10 mg·kg-1下降至49.82 mg·kg-,差异达到了显著水平;植烟前后土壤有效锰含量的分维数分别为1.929和1.853,变程分别为42.3和89.1 m,最优模型分别是指数模型和球状模型,块金系数由6.13%增至41.20%;植烟前区域土壤有效锰含量在0°,45°,90°和135°方向表现为各向异性,烟草收获后在4个方向表现为各向同性;烟草种植后,土壤有效锰含量在低值和高值范围变化最为显著,低值(小于47.61 mg· kg-1)所占面积由8.7%增加到38.9%,高值(大于60.01mg·kg-)由45.8%降低为17.1%.  相似文献   
66.
Soil micronutrients were studied on loess soil with an 18-year long-term experiment. The results indicated that total soil iron and copper contents were similar under all treatments, but total soil manganese and zinc contents were significantly greater at the surface soil in the fertilized plots than in the controls, and total manganese contents were significantly greater in the whole soil profile under manure plus inorganic fertilizers than under controls. Generally, application of inorganic fertilizers had no effects on available soil micronutrient contents. The straw plus inorganic fertilizers significantly increased available manganese content at surface soil and available iron in subsurface soils. However, manure plus inorganic fertilizers significantly augmented soil-available iron contents throughout the profile, and raised available manganese, copper, and zinc contents, respectively, at surface soil relative to controls. The results suggest that long-term input of organic amendments alter the properties of soil and increase its plant-available micronutrient contents.  相似文献   
67.
铁和锰作为土壤中重要的元素,在成土过程中因强烈迁移和积聚而形成铁锰结核。对国内外铁锰结核的研究进行总结,主要从铁锰结核的形成、理化性质、矿物组成以及元素地球化学特征等方面,提出铁锰结核研究中存在的问题和不足.展望今后铁锰结核研究趋势。  相似文献   
68.
本文研究了在非离子表面活性剂存在下,5-Br-PADN与Mn(Ⅱ)的显色反应及其应用.所拟方法能满意地用分光光度法测定钢样中的微量锰.  相似文献   
69.
The response of three-month-old rooted cuttings of the olive cultivars ‘Picual’ and ‘Koroneiki’ grown in black plastic bags containing perlite as a substrate to excess manganese (Mn) (640 μM) was studied. The rooted cuttings were irrigated with 50% modified Hoagland nutrient solution. At the end of the experimental period, which lasted 130 days, the total fresh and dry weights, as well as the shoot elongation of ‘Picual’ plants were significantly reduced under excess Mn (640 μM), compared to the control plants (2 μM), whereas the growth of ‘Koroneiki’ plants was similar in both Mn treatments. The tolerance index, which is derived from the ratios between the plant growth data of different treatments and the control one, of ‘Picual’ plants to excess Mn was about half of this of ‘Koroneiki’ plants. In both cultivars, the concentrations of Mn in various plant parts (root, basal stem, top stem, basal leaves, top leaves) were significantly increased as Mn concentration in the nutrient solution increased. Furthermore, in the 640 μM Mn treatment, 2 to 2.5-fold greater Mn concentrations were recorded in almost all plant parts of ‘Koroneiki’, than those of ‘Picual’. Similar results were recorded with regard to the total Mn content per plant (‘Koroneiki’ absorbed much more Mn from the nutrient solution than ‘Picual’). On the other hand, excess Mn negatively affected the absorption of iron (Fe), calcium (Ca), magnesium (Mg), phosphorus (P), zinc (Zn), and boron (B), depending on the olive cultivar. In both cultivars, while the Mn use efficiency was significantly decreased under excess Mn conditions, the nutrient use efficiencies of P, Ca, and Fe were significantly increased, compared to the control plants (2 μM Mn). It was also found that excess Mn resulted in a significant increase of stomatal conductance and transpiration rate of both cultivars, whereas the photosynthetic rate was significantly increased only in ‘Koroneiki’. In ‘Picual’, similar photosynthetic rates were recorded in both Mn treatments. The measurement of the various chlorophyll fluorescence parameters, Fv/Fm and Fv/F0 ratios, revealed that the functional integrity of photosystem II (PSII) of photosynthesis was not affected due to excess Mn, irrespectively of the cultivar. In conclusion, although ‘Koroneiki’ tissues had much higher Mn concentrations than those of ‘Picual’, the parameters related to the growth and photosynthetic performance of plants indicates that the internal tolerance of ‘Koroneiki’ tissues to excess Mn was higher than this of ‘Picual’.  相似文献   
70.
In growth chambers, cotton (Gossypium hirsutum L. genetic selection ‘M8') was grown in a synthetic growth medium under four light regimes: low pressure sodium (LPS), LPS + Incandescent (Inc), cool white fluorescent (CWF) and CWF + Inc lamps at 22 C under LPS lamps. Less chlorosis developed at 26 C than at 22 C and less under LPS + Inc than under LPS lamps. All plants were green under CWF and CWF + Inc light. Green and chlorotic plant tissue contained about the same concentrations of Fe. The proposed hypothesis was that chlorotic tissue’ contained less Fe2+ than green tissue. Chlorotic leaves treated with FeSO4 turned a green color. Enough CWF + Inc light passed through an intact leaf to reduce Fe3+ to Fe2+ in vitro. Also in vitro, Fe3+ was reduced by CWF, by Inc, but not by LPS light. The amount of Fe3+ reduced during an illumination period was directly proportional to the quantity of light used. In vitro, citrate and malate enhanced Fe3+ reduction, whereas phosphate, pyrophosphate, OH, Cu2+, Ni2+, Mn2+, Zn2+, and Fall inhibited Fe3+ reduction by light. Orthophosphate was about 8 times as effective as organic P in decreasing Fe3+ reduction. Citrate largely alleviated the inhibitory effects of Pi and pH (up to pH 6). The data also provide a possible explanation of a role for many of the elements known to induce or aggravate Fe chlorosis (inhibit Fe3+ reduction). Quantity and quality of light apparently play key roles in plant growth as related to reduction of Fe3+ to Fe2+ in plant tops.  相似文献   
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