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301.
铜绿微囊藻、四尾栅藻和小环藻竞争实验培养基的选择   总被引:6,自引:2,他引:6  
杨苏文  金相灿  姜霞 《生态环境》2006,15(1):129-133
改变培养基的氮源形态和碳源浓度,研究铜绿微囊藻、小环藻和四尾栅藻的单藻增长行为,筛选适宜的培养基作为混藻竞争实验的共培养基。研究表明,铜绿微囊藻和四尾栅藻在氨氮培养基中的最大生物量K和最大比增长速率r均不及以硝态氮为氮源的培养基;添加高浓度HCO3-(NaHCO3 1.410 mmol/L)能够提高铜绿微囊藻和四尾栅藻藻细胞对氨氮的吸收能力;较低碳源浓度(NaCO3 0.0943 mmol/L)的培养基中,四尾栅藻的初始比增长速率及生物量远高于铜绿微囊藻,但其最大比增长速率r低于铜绿微囊藻,在实验的第10天左右铜绿微囊藻的生物量超过四尾栅藻;小环藻不能在较高浓度碳源(NaHCO3 1.504 mmol/L)下存活;铜绿微囊藻、四尾栅藻与小环藻均可在以氨氮(HA)或硝态氮(HN)为氮源的培养基中单独培养并达到实验所需生物量,因此,HN和HA可以作为实验室内这三种藻共培养适宜的培养基,为今后研究藻类种间资源竞争机制提供实验依据。  相似文献   
302.
立柱和柱式无土栽培系统及其在生菜栽培上的应用   总被引:7,自引:0,他引:7  
具溢水管 ,容积为 1L的 12只ABS塑料盆钵组装的水培立柱 ,其底部是底座 ,顶部是淋滴装置 ,总高 2 0 0cm ,直径为 15cm .按柱间距 80cm× 80cm排列在面积有A =5 40m2 的非自控玻璃温室内 ,然后再串联和并联成”树林”式栽培整体 .该整体含 6 36根立柱 ,每根立柱的最多种植量有 6 0株 ,总共种植 3816 0株 ,加地面原有种植数 10 314株 ,共有 48474株 ,此为地面原种植量的 4.7倍 .立柱被安装在地面水槽上 ,通过循环灌溉系统 (营养液 )将立柱无土栽培和地面无土栽培组合为一体 ,即谓柱式无土栽培系统 .柱式无土栽培系统全种生菜 ,育苗移栽 ,种后 40d(中后期 ) ,立柱区的光照E =6 80~ 86 0 μEm- 2 s- 1 ,高出生菜光合作用饱和点E =180~ 36 0 μEm- 2 s- 1 .立柱上的小栽培钵的一点底面接触水面 ,使苗的大部分根数生长于水面之上湿润的岩棉之中 ,良好的生长空间加上流动的水柱 ,生菜获得了水、气、肥协调的根部环境 .冬季最高气温平均为θ =2 0℃ ,最低气温平均有θ =3.3℃ ,RH =5 7%~ 71% .种后 5 3d(生长后期 ) ,生菜产量平均有 5 .6kg /m2 ,较CK(平均 1.5kg /m2 )提高 3.7倍 .柱式无土栽培系统是一种高产高效的工厂化生产模式 .图 7表 3参 7  相似文献   
303.
红豆杉内生真菌发酵培养基和原生质体制备酶系统的筛选   总被引:3,自引:0,他引:3  
在对红豆杉内生真菌(Ozoniumsp.)适生碳源、氮源和生长情况研究的基础上,通过正交试验筛选了其发酵培养基和原生质体制备的酶系统;用L9(34)安排了四因素三水平并考虑交互作用的正交试验,对实验结果进行了分析.结果表明,最优的发酵培养基为果糖1%、蔗糖1%、蛋白胨0.2%、酵母粉0.5%、KH2PO40.5%、MgSO4·7H2O0.3%、VB10.001%;分离原生质体的最优酶系统为1.5%溶壁酶 0.5%蜗牛酶 1.5%纤维素酶 1.0%溶菌酶;用此酶系统在30℃条件下酶解3h,原生质体的产量达6.55×107个/mL酶液;经荧光素二醋酸酯(FDA)染色评估原生质体活力,表明该条件下分离的原生质体活力较高,原生质体的再生率为2.56%.该研究为利用生物技术手段改良紫杉醇生产菌奠定了基础.图6表4参32  相似文献   
304.
随着社会的进步和生产力的发展,企业文化作为一种新的管理理念逐渐被人们所接受并越来越受到许多企业家的青睐,本文首先从企业文化中的概念入手,简单阐述企业文化的核心和根本,然后重点分析企业文化在我国旅游企业中的现状和建设过程中存在的问题、原因以及加强企业文化建设的若干对策,最后总结出企业文化的作用.  相似文献   
305.
A technique for the culture of chorionic villi for cytogenetic studies is described which is simple, reliable, rapid, and suitable for routine laboratory use. This method eliminates the need for multi-stage and time-consuming procedures inherent in previous techniques which have been developed for this tissue. Cultures suitable for analysis were obtained in an average of sixteen days and the risk of maternal cell contamination was evaluated. Results of cultures initiated from 50 chorion biopsies obtained by transcervical blind aspiration at a weekly termination clinic are presented, and the potential use of this technique as a routine procedure is discussed.  相似文献   
306.
现代学校教育中,校园文化有着重要意义.本文利用心理学、教育学、文化学的理论,用系统的方法,审视校园文化,提出优化育人环境,构建我校可行的校园文化体系.构建一个以学校不同范围的师生组织为主体,以学生在校时间为经线,以学校的不同空间为纬线,以精品、优质的各类活动为节点(核心),以先进和提高为方向和指导,广泛覆盖,涉及不同方面、不同层次内容的校园文化网络体系.  相似文献   
307.
近年来生态环境的恶化、农村能源短缺、环境污染加剧、以及人口压力增大,都对凤庆建成茶文化大县的战略构想形成了严重影响。就其生态环境现状分析了存在的问题,提出相应的措施和建议  相似文献   
308.
福建中、东部沿海主要养殖贝类体重金属的含量与评价   总被引:10,自引:1,他引:10  
根据2000年11月福建中、东部沿海养殖贝类体重金属的检测资料,分析了牡蛎、菲律宾蛤仔、缢蛏体内重金属的含量水平。结果表明;闽江口附近海域和兴化湾湾顶北部海域养殖的褶牡蛎,体内Zn和Cd的含量明显高于其他养殖区。文中对3种养殖贝类的重金属污染程度进行评价的结果表明:闽中、东沿海的养殖贝类基本未受重金属污染或属微污染水平。  相似文献   
309.
Global Biomass Energy Potential   总被引:1,自引:1,他引:1  
The intensive use of renewable energy is one of the options to stabilize CO2atmospheric concentration at levels of 350 to 550ppm. A recent evaluation of the global potential of primary renewable energy carried out by Intergovernmental Panel on Climate Change (IPCC) sets a value of at least 2800EJ/yr, which is more than the most energy-intensive SRES scenario forecast for the world energy requirement up to the year 2100. Nevertheless, what is really important to quantify is the amount of final energy since the use of renewable sources may involve conversion efficiencies, from primary to final energy, different from the ones of conventional energy sources. In reality, IPCC does not provide a complete account of the final energy from renewables, but the text claims that using several available options to mitigate climate change, and renewables is only one of them, it is possible to stabilize atmospheric carbon dioxide (CO2) concentration at a low level. In this paper, we evaluate in detail biomass primary and final energy using sugarcane crop as a proxy, since it is one of the highest energy density forms of biomass, and through afforestation/reforestation using a model presented in IPCC Second Assessment Report (SAR). The conclusion is that the primary-energy potential for biomass has been under-evaluated by many authors and by IPCC, and this under-evaluation is even larger for final energy since sugarcane allows co-production of electricity and liquid fuel. Regarding forests we reproduce IPCC results for primary energy and calculate final energy. Sugarcane is a tropical crop and cannot be grown in all the land area forecasted for biomass energy plantation in the IPCC/TAR evaluation (i.e. 1280Mha). Nevertheless, there are large expanses of unexploited land, mainly in Latin America and Africa that are subject to warm weather and convenient rainfall. With the use of 143Mha of these lands it is possible to produce 164EJ/yr (1147GJ/hayr or 3.6W/m2on average) of primary energy and 90EJ/yr of final energy in the form of liquid fuel (alcohol) and electricity, using agricultural productivities near the best ones already achievable and biomass gasification technology. More remarkable is that these results can be obtained with the operation of 4,000 production units with unitary capacity similar to the largest currently in operation. These units should be spread over the tropical land area yielding a plantation density similar to the one presently observed in the state of São Paulo, Brazil, where alcohol and electricity have been commercialized in a cost-effective way for several years. Such an amount of final energy would be sufficiently large to fulfill all the expected global increase in oil demand, as well as in electricity consumption by 2030, assuming the energy demand of such sources continues to grow at the same pace observed over the last two decades. When sugarcane crops are combined with afforestation/reforestation it is possible to show that carbon emissions decline for some IPCC SRES scenarios by 2030, 2040 and 2050. Such energy alternatives significantly reduce CO2emissions by displacing fossil fuels and promote sustainable development through the creation of millions of direct and indirect jobs. Also, it opens an opportunity for negative CO2emissions when coupled with carbon dioxide capture and storage.  相似文献   
310.
Sediments in Lake Izabal, Guatemala, contain substantial lead (Pb), zinc (Zn), and nickel (Ni). The lack of historical data for heavy metal concentrations in the sediments makes it difficult to determine the sources or evaluate whether inputs of metals to the lake have changed through time. We measured the relative abundances and concentrations of Pb, Zn, and Ni by X-Ray Fluorescence core scanning and by Inductively Coupled Plasma Optical Emission Spectrometry in three sediment cores to explore stratigraphic distributions of metals in the lake deposits. High amounts of Pb and Zn in the core taken near the Polochic Delta suggest that galena and sphalerite mining increased Pb and Zn delivery to Lake Izabal between ~1945 and 1965 CE. An up-core Ni increase in the core taken near a different mine on the north shore of Lake Izabal suggests that recent nickel mining operations led to an increase in Ni concentrations in the local sediments, but amounts in the other cores indicate that Ni is not widely distributed throughout the lake. Sediment cores from Lake Izabal are reliable recorders of heavy metal input to the lake, and were measured to establish background metal levels, which would otherwise be unavailable. Concentrations of Pb, Zn, and Ni in older, pre-20th-century Lake Izabal sediments reflect input from natural erosion of bedrock. Our results provide previously unavailable estimates of background metal concentrations in Lake Izabal before the onset of mining. These results are necessary for future monitoring related to mining contamination of the lake ecosystem.  相似文献   
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