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41.
酸性硫酸盐土酸消长的水动力机制研究   总被引:8,自引:0,他引:8  
以不同土壤湿度、不同干湿交替周期和原状土自然风干 8个处理进行酸性硫酸盐土 (简称ASS)室内模拟实验。通过对模拟过程内土壤pH、总硫化物性酸度和未氧化双氧水可氧化硫、交换性酸度、硫派生的实际酸度、KCl可提取硫等指标的动态变化过程的跟踪测定和分析显示 ,土壤水分条件是制约ASS酸度及酸形态转化的重要动力机制 ,可导致ASS酸度和酸形态的有规律变化。ASS产酸量和洗酸量受干湿交替周期制约  相似文献   
42.
氮肥形态对香蕉种植土壤中氨氧化细菌与古菌的影响   总被引:1,自引:0,他引:1  
魏天娇  魏志军  陈鹏  阮云泽  朱毅勇 《土壤》2015,47(4):690-697
氨氧化微生物通过影响氮素在土壤中的转化而间接影响作物对不同氮素形态的吸收。因此,本实验采集了海南省种植香蕉的滨海土壤,通过施用硫酸铵和硝酸钙,研究了氨氧化细菌(AOB)和氨氧化古菌(AOA)的数量与群落的变化,并测定了香蕉的生长与氮营养状况。通过构建氨氧化细菌和古菌的功能基因amo A文库后发现:施用硫酸铵的土壤中AOB的amo A基因拷贝数显著高于施用硝酸钙的土壤和不施肥的土壤,而AOA的拷贝数低于硝酸钙与不施肥处理。但是氨氧化古菌AOA的绝对数量都高于AOB。施用硫酸铵的土壤中AOB的群落多样性和丰富度明显增加,而施用硝酸钙的土壤却没有发生显著变化。施用硫酸铵和硝酸钙的土壤中AOA群落结构相似,但丰富度和多样性均高于不施肥处理。从施肥效果看,相比硫酸铵,硝酸钙显著提高了香蕉植株的生物量和全氮含量。上述结果表明,在南方酸性土壤中AOA占优势,虽然施用铵态氮肥可以促进AOB的丰度与多样性,但是很可能会抑制AOA的数量。因此,在海南滨海土中施用铵态氮肥后,通过硝化作用以满足香蕉吸收硝态氮的需求达不到理想的效果,应直接补充硝态氮肥来促进香蕉生长。  相似文献   
43.
Background, Aims and Scope   Sulfate-reducing bacteria (SRB) are known for their capacity to reduce and precipitate heavy metals (HM) as metal sulfides, offering the opportunity to create an in situ reactive zone for the treatment of heavy metal-contaminated groundwater, a process called in situ metal precipitation (ISMP). The applicability of the ISMP technology first has to be investigated at a laboratory scale before going into an on site application. The evaluation and optimization of the ISMP process is facilitated when physical/chemical analysis techniques are combined with molecular tools that specifically monitor the abundance, diversity and dynamics of the indigenous sulfate reducing microbial community. In this study, batch experiments were conducted in order to investigate the feasibility of ISMP as a groundwater remediation strategy for an industrial site contaminated with elevated levels of Zn, Cd, Co and Ni. Methods   The potential of different types of carbon source/ electron donor (lactate, acetate, methanol, ethanol, Hydrogen Release Compound?, molasses) to stimulate the sulfate reduction and metal precipitation activity of the naturally present (or indigenous) SRB community was explored. In addition, the effect of amending vitamin B12 and yeast extract was evaluated. The ISMP process was monitored by combining analytical analyzes of process parameters (SO42-concentration, heavy metal concentrations, pH, Eh) with molecular tools such as SRB subgroup and genus specific PCR, denaturing gradient gel electrophoresis (DGGE), and phylogenetic analysis of clone sequences, based on either the 16S rRNA or the dsr (dissimilatory sulfite reductase) gene. Results and Discussion   The efficiency of different carbon-sources to stimulate the ISMP process followed the order HRC 〉 molasses 〉 methanol 〉 lactate 〉 ethanol 〉 acetate. Within 10 weeks, the highest sulfate and metal removal efficiencies ranged from 85% to 99%. Addition of yeast extract boosted the ISMP process, whereas vitamin B12 negligibly affected SRB activity. Analysis of the sulfate reducing population by SRB subgroup and genus specific PCR demonstrated that members of the genus Desulfosporosinus dominated in all batch tests, while 16S rDNA DGGE profiles additionally revealed the presence in the microbial communities of non-sulfate reducing bacteria within the family Clostridium and the -proteobacteria. The dsrB-based DGGE profiles allowed us to assess the diversity and dynamics of the sulfate reducing community and added to a better understanding of the effects of different batch conditions on the ISMP process. Remarkably, all dsrB sequences affiliated with the dsrB gene sequence cluster found in Desulfotomaculum, which received their xenologous dsrB gene from the -proteobacteria. Conclusions   The batch experiments, which aimed at stimulating the activities of the indigenous SRB communities, demonstrated that these communities were present and that their activities could be used to obtain efficient in situ precipitation of the contaminating heavy metals. This opens the possibility to test this concept in the future as an on site demonstration as part of the groundwater strategy for the heavy metal contaminated site. Although batch setups are suitable for preliminary feasibility studies for ISMP, they do not reflect the in situ situation where sulfate and heavy metal and metalloid polluted groundwater are supplied continuously. A sulfate reducing strain JG32A was isolated from whose 16S rRNA gene affiliated with the genus Desulfosporosinus, while its dsrB gene sequence clustered with Desulfotomaculum dsrB gene sequences, which received their xenologous dsr genes from -proteobacteria. Therefore we hypothesize that the batch experiments enrich members of the Desulfosporosinus genus that possess a non-orthologous dsrB gene. Recommendation and Perspective   The next step towards an on site pilot test for ISMP will be the setup of a series of column experiments, with process conditions that are selected based on the above mentioned results. This will allow to define optimal ISMP process conditions and to test its long-term efficacy and sustainability before going into an on site bioremediation application. By applying the described molecular tools together with physical-chemical analyzes, it can be investigated whether the same SRB community is enriched and which type of C-source is most effective in promoting and sustaining its growth and sulfate-reduction activity.  相似文献   
44.
While the reduction of nitrate‐N, Mn(III,IV), Fe(III), and sulfate‐S in soil has been studied intensively in the laboratory, field research has received only limited attention. This study investigated the relationship between redox potential (EH) measured in bulk soil and concentrations of nitrate, Mn2+, Fe2+, and sulfate in the soil solution of two Gleysols differing in drainage status from the Marsh area of Schleswig‐Holstein, Northern Germany. The soils are silty‐sandy and developed from calcareous marine sediments. Redox potentials were monitored weekly with permanently installed Pt electrodes, and soil solution was obtained biweekly by ceramic suction cups from 10, 30, 60, and 150 cm depth over one year. Median EH at 10, 30, 60, and 150 cm depths was 470, 410, 410, and 20 mV in the drained soil and 500, 480, 30, and –170 mV in the undrained soil, respectively. A decrease in EH below critical values was accompanied in the soil solutions (pH 7.4 to 7.8) by disappearance of nitrate below 0 to 200 mV, appearance of Mn2+ below 350 mV, and Fe2+ below 0 to 50 mV. Both metals disappeared from soil solution after aeration. In the sulfide‐bearing environment of the 150 cm depth of the undrained soil, however, the sulfate concentrations were highest at such EH values at which sulfate should be unstable. This discrepancy was reflected in the fact that at this depth bulk soil EH was about 400 mV lower than soil solution EH (250 mV). When investigating the dynamics of nitrate, Mn, and Fe in soils, bulk soil EH provides semi‐quantitative information in terms of critical EH ranges. However, in sulfidic soil environments the interpretation of EH measured in bulk soil is uncertain.  相似文献   
45.
Precipitation chemistry in Japan was discussed on a wet-only sample database obtained in a nationwide survey from April 1989 to March 1993. Wet-only samples were collected at 29 stations over Japan on a biweekly basis. Commonly determined chemical parameters were measured in laboratories. The volume-weighted annual mean pH at each site ranged from 4.50 to 5.83 with a mean of 4.76. Concentration ranges and means (parenthesized) on an equivalent basis for major ions were as follows: nss-SO4 2–; 5.2–58.9 (38.6), NO3 ; 1.8–25.0 (14.1), NH4 +; 0.55–29.8 (18.3), nss-Ca2+; 2.0–34.5(14.2), Na+; 6.4–275.3 (49.1), Cl; 13.7–322.4 (63.5) eq L–1. Acid-base relationships for Phase-II records were quantitatively discussed in terms of three measures: pH, fractional acidity, and our proposed pAi.  相似文献   
46.
[目的]为了研究不同替代比例的烟杆生物质燃灰对烟叶质量的影响.[方法]设置1个对照和3个处理,对烟叶的农艺性状、常规化学成分与经济效益进行对比分析.[结果]不同代替比例的烟杆生物质燃灰对烟株生长有不同的影响,主要对烤烟的最大叶面积与项叶面积有较大影响;随着烟叶着生部位的降低,烟杆生物质燃灰的不同替代比例对化学成分的影响逐渐增强;其中,T3处理相比对照可以提高产值8 717.72 元/hm2.[结论]生产上,可以通过添加一定比例的生物质燃灰代替硫酸钾肥料以提高烟叶品质,充分提高生物质燃料的利用率.  相似文献   
47.
硫酸多粘菌素E在猪体内的药代动力学和生物利用度研究   总被引:8,自引:0,他引:8  
健康断奶仔猪 5头 ,分别进行单剂量肌注 (2 5和 5 0mg/kgb .w .)和静注 (2 5mg/kgb .w .)给药 ,并用微生物学方法对硫酸多粘菌素E在猪体内的药代动力学和绝对生物利用度进行了研究。以 3P97程序处理血药浓度—时间数据 ,结果表明 ,以 2 5和 5 0mg/kgb .w .的剂量肌注给药时 ,其血清中药物的峰浓度 (Cmax)分别为 3 73± 0 2 8μg/ml和 6 40± 0 1 8μg/ml,达峰时间分别为 32 2 2± 1 51min和 34 1 8± 1 76min ,消除半衰期 (t1 / 2 β)为 2 55 99± 1 3 65min和 2 64 0 8± 2 8 57min ;以 2 5mg/kgb .w .的剂量静注给药时 ,其消除半衰期 (t1 / 2 β)为 2 51 2 8± 1 2 53min。静注和肌注在体内的分布均为一级吸收二室模型。肌注 2 5和 5 0mg/kgb .w .剂量的注射液时 ,其平均绝对生物利用度分别为 98 30 %和 88 54 %。  相似文献   
48.
研究表明黑荆木材1—3年生密度为0.59—0.65g/cm3,5—10年生为0.72g/cm3;1—7年生木材成分变化不大,纤维素在45%以上,半纤维素在25%以下,木素在21%以下。比较6年生黑荆木材及其KP、CTMP的纤维形态,纤维长度在0.76mm以上的,木材为72.04%、Kp为72.22%、CTMP为82.58%;平均纤维长度木材为0.856mm、KP为0.845mm、CTMP为1.165mm;纤维宽度在12一24μm,木材为92.62%、KP为92.86%、CTMP为34.63%;平均纤维宽度木材为15.6μm、KP为15.8μm、CTMP为30.7μm;长宽比木材为54.9、KP为53.3、CTMP为37.9。  相似文献   
49.
超滤—离子层析法精制猪硫酸软骨素   总被引:1,自引:0,他引:1  
采用超滤—离子层析法精制猪硫酸软骨素,离子对反相高效液相色谱法测定其含量,红外吸收光谱法测定其结构.研究了超滤液温度、超滤压力、超滤液pH对猪硫酸软骨素精制时膜通量和得率的影响.结果表明:超滤—离子层析技术可应用于精制猪硫酸软骨素.猪硫酸软骨素超滤的工艺条件:以微孔滤膜处理原料液,超滤膜的截留分子量10 kD,超滤压力0.25MPa,超滤温度25℃,溶液pH为9.产物纯度为95.74%,产率为80.15%.该方法精确度和准确度都较高,可用于猪硫酸软骨素的精制.  相似文献   
50.
通过37℃恒温振荡培养含有Taq DNA聚合酶基因的E.coli菌株,并用IPTG诱导该基因表达获得TaqDNA聚合酶蛋白,利用40%硫酸铵沉淀该蛋白后溶解于storage buffer中.此法获得的Taq DNA聚合酶带负电荷,因此采用阴离子交换柱纯化蛋白.试验结果表明,此法与传统的透析方法相比能快速地去除生物小分子杂质,同时去除透析方法无法除去的杂蛋白;既能保证Taq DNA聚合酶的生物学活性,同时能缩短纯化时间、提高Taq DNA聚合酶的纯度.以土壤微生物DNA、水稻cDNA为模板进行PCR扩增并对扩增产物进行测序,结果显示纯化后的Taq DNA聚合酶具有较高的扩增效率和保真性.  相似文献   
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