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471.
Gongal'skii K. B. Pokarzhevskii A. D. Savin F. A. Filimonova Zh. V. 《Russian Journal of Ecology》2003,34(6):395-404
The mode of spatial distribution of soil animals and their trophic activity was studied in the sod-podzolic soil under a spruce forest. At the test point level, no apparent relationship between the distribution of soil animals and physicochemical characteristics of the soil was observed. The patterns of distribution of detritophages and the trophic activity (measured using the bait-lamina test) were similar. The perforation of laminae in the bait-lamina test resulted from the trophic activity of both micro- and mesofauna. 相似文献
472.
Impacts of newly added organic carbon (C) and inorganic nitrogen (N) on the microbial utilization of soil organic matter are important in determining the future C balance of terrestrial ecosystems. We examined microbial responses to cellulose and ammonium nitrate additions in three soils with very different C and N availability. These soils included an organic soil( 14.2% total organic C, with extremely high extractable N and low labile C), a forest soi1(4.7% total organic C, with high labile C and extremely low extractable N), and a grassland soil(1.6% total organic C, with low extractable N and labile C). While cellulose addition alone significantly enhanced microbial respiration and biomass C and N in the organic and grassland soils, it accelerated only the microbial respiration in the highly-N limited forest soil. These results indicated that when N was not limited, C addition enhanced soil respiration by stimulating both microbial growth and their metabolic activity, New C inputs lead to elevated C release in all three soils, and the magnitude of the enhancement was higher in the organic and grassland soils than the forest soil. The addition of cellulose plus N to the forest and grassland soils initially increased the microbial biomass and respiration rates, but decreased the rates as time progressed. Compared to cellulose addition alone, cellulose plus N additions increased the total C-released in the grassland soil, but not in the forest soil. The enhancement of total C- released induced by C and N addition was less than 50% of the added-C in the forest soil after 96 d of incubation, in contrast to 87.5% and 89.0% in the organic and grassland soils. These results indicate that indigenous soil C and N availability substantially impacts the allocation of organic C for microbial biomass growth and/or respiration, potentially regulating the turnover rates of the new organic C inputs. 相似文献
473.
474.
西部地区重大工程建设中的泥石流灾害 --兼论其与环境的互馈作用 总被引:2,自引:0,他引:2
在西部大开发过程中,许多重大工程建设涉及泥石流灾害的问题.讨论了工程活动、泥石流及山地环境之间的相互作用和影响.工程活动往往受到泥石流、山地环境的制约,同时它作为活的因素,又积极地影响着泥石流和山地环境,促使其产生次生演化,泥石流和山地环境的次生演化常会对工程活动产生次生制约.泥石流的发生会危及工程和人类的安全,破坏地表,破坏生态环境;人类工程活动若不遵守自然规律,过度向山地索取,必将导致山地环境退化和泥石流的广泛活动及频繁发生,甚至引起泥石流活动范围扩大和成灾规律改变. 相似文献
475.
476.
477.
Bioreactor landfills allow a more active landfill management that recognizes the biological, chemical and physical processes involved in a landfill environment. The laboratory-scale simulators of landfill reactors treating municipal solid wastes were studied, the effect of solid waste size, leachate recirculation, nutrient balance, pH value, moisture content and temperature on the rate of municipal solid waste (MSW) biodegradation were determined, and it indicated the optimum pH value, moisture content and temperature decomposing MSW. The results of waste biodegradation were compared with that of the leachate-recirculated landfill simulator and conservative sanitary landfill simulator. In the control experiment the antitheses of a decreasing trend of the organic load, measured as biological oxygen demand and chemical oxygen demand, was shown. An obvious enhancement of effective disposal from conservative sanitary landfill (CSL) simulator, to the leachate-recirculated landfill (LRL) simulator and to the conditioned bioreactor landfill(CBL) simulator would be noted, through displaying the compared results of solid waste settlement, heavy, metal concentration in leachate, methane production rate, biogas composition, BOD and COD as well as their ratio. 相似文献
478.
用化学还原法合成了纳米Co-B-P非晶态合金,用电感耦合等离子体光谱(ICP)、X射线粉末衍射(XRD)、透射电子显微镜(TEM)和差热分析(DSC)等手段对其进行了物性表征,并用微型催化反应装置考察了其对PH_3分解的催化作用。结果表明,非晶态合金Co-B-P对PH_3的分解具有良好的催化作用。在420℃分解率达到85%, 480℃达97%,500℃达100%,而且温度继续升高至600℃,分解率没有下降趋势,说明催化剂有比较高的热稳定性。 相似文献
479.
流化床飞灰在混凝土中大掺量替代水泥的研究 总被引:1,自引:0,他引:1
介绍了采用复合激发剂,对流化床飞灰活性进行激发,在混凝土中以流化床飞灰大掺量替代水泥的试验研究。结果表明:本研究采用的激发方法能够有效激发流化床飞灰活性,当飞灰替代水泥量为30% ̄40%时,不降低水泥的标号,所配制的混凝土强度值与100%水泥的混凝土相当,且和易性能满足施工的要求。 相似文献
480.
Effect of cerium on photosynthetic characteristics of soybean seedling exposed to supplementary ultraviolet-B radiation 总被引:2,自引:1,他引:1
Effects of cerium (Ce^3+) on photosynthetic characteristics were investigated by hydroponics under laboratory conditions when soybean seedlings were exposed to two levels of supplementary UV-B radiation. UV-B radiation badly inhibited the photosynthesis in soybean seedling, leading to a reduction in net photosynthetic rate (Pn), Hill reaction activity, light saturated photosynthetic rate (Ps) and apparent quanta yield (AQY), as well as the CO2 and light saturated photosynthetic rate (Pro) and carboxulation efficiency (CE). On the contrary, Ce obviously promoted the photosynthesis of plants by increasing Hill reaction activity, accelerating electron transport and photophosphorylation, and enhancing carboxylation efficiency. For Ce+UV-B treatments, the values of photosynthetic parameters were still lower than those of the control, but obviously higher than those of UV-B treatment. The results indicated that Ce alleviated the inhibition of UV-B radiation on the photosynthesis in soybean seedling to a certain extent. In correlating of Pn with Hill activity, AQY and CE, we found that the changes of photosynthetic rate were mainly influenced by the regulating effect of Ce on Hill activity and AQY at low level (0.15 W/m^2) of UV-B radiation, but were dominated by the regulating effect of Ce on CE at high level (0.45 W/m^2). Thus, Ce could regulate many aspects in photosynthesis of soybean seedling under UV-B stress. The regulating mechanism was close related with the dosage of UV-B radiation. 相似文献