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941.
围栏禁牧对川西北亚高山高寒草甸群落结构的影响 总被引:2,自引:0,他引:2
围栏禁牧4a后,与放牧草地相比较:1)围栏草地物种数量有所下降,群落内出现物种27种,而长期放牧草地为33种.2)围栏草地物种平均高度较高,为20.23cm,群落分层现象明显;放牧草地物种平均高度仅为8.14cm,群落无分层现象.3)围栏草地内,杂草类的盖度(98%)大于禾草类的盖度(14%);放牧草地上,杂草类的盖度(53%)小于禾草类的盖度(56%)。4)围栏草地以禾草为主的优良牧草的生产能力(35.24g/m2)低于放牧草地的生产能力(75.47g/m2).5)围栏草地的地上生物量(272.64g/m2)和地下0~30cm生物量(801.61g/m3)都高于放牧草地的地上生物量(184.84g/m2)和地下0~30cm生物量(683.82g/m3).研究结果表明,围栏草地具有比放牧草地更复杂的群落结构,但其物种组成和优良牧草的生产能力,都低于放牧草地. 相似文献
942.
邻苯二甲酸丁基苄酯对小鼠睾丸能量代谢相关酶的影响 总被引:1,自引:0,他引:1
为了从生殖细胞能量代谢角度探讨邻苯二甲酸丁基苄酯(BBP)对雄性小鼠生殖损伤的机制,以昆明系雄性小白鼠为实验对象,研究了BBP对小鼠睾丸组织能量代谢相关酶的影响.实验设0、125、250、500、1000mg·kg-1(质量分数)5组浓度梯度,连续灌胃染毒30d后,采用分光光度法检测小鼠睾丸组织匀浆中乳酸脱氢酶(LDH)、琥珀酸脱氢酶(SDH)、Ca-Mg-ATPase酶的活性以及睾丸脏器系数.结果发现,1)与对照组相比,高浓度染毒组(500、1000mg·kg-1)LDH、SDH和Ca-Mg-ATPase活性均极显著降低(p<0.01);而低浓度染毒组(125mg·kg-1)3种酶活性均无显著变化(p>0.05);中浓度染毒组(250mg·kg-1)LDH没有显著变化(p>0.05),而SDH、Ca-Mg-ATPase均显著降低(p<0.05,p<0.01).2)染毒30d后,各染毒组睾丸脏器系数略有下降,但与对照组相比,差异均未达到显著水平(p>0.05).以上结果表明,较高水平的BBP不仅可以干扰睾丸组织有氧代谢及无氧代谢的产能过程,还可以干扰生殖细胞对能量的利用,提示能量代谢的障碍可能是BBP对雄性生殖细胞产生损伤的原因之一. 相似文献
943.
运用SCI-GROW模型预测农药对地下水的污染风险 总被引:6,自引:0,他引:6
在对美国环境保护局开发的地下水暴露评价模型进行比较的基础上,选择SCI-GROW模型预测我国福建省甘蔗种植区5种常用农药对地下水的污染风险,并将模型预测结果与该地区地下水中农药的实测结果进行比较,对模型进行验证.结果表明,模型预测结果与实测结果之间具有很好的相关性,SCI-GROW模型能较好地用于我国东南沿海等地下水位较高、降水量较大、土壤砂性等地下水易受污染地区农药的筛选评价.最后,运用SCI-GROW模型预测涕灭威等17种我国常用农药对地下水的污染风险,为这些农药的科学使用提供参考. 相似文献
944.
河北省曲周县盐渍土区土壤养分含量的动态变化 总被引:1,自引:0,他引:1
对华北盐渍土区河北省曲周县 79个土壤样点 1 980年和 1 999年土壤养分含量进行了分析 ,结果表明 :1 999年与 1 980年相比 ,土壤有机质含量增加了 41 % ,土壤全氮和速效磷含量分别增加了 1 0 2 %和 351 % ,而土壤速效钾含量则下降了 38% ;土壤有机质含量增加的原因是秸秆还田量增加 ,土壤中全氮、速效磷含量增加的直接原因是土壤中氮肥、磷肥投入量增加 ,而土壤速效钾下降的原因则是钾肥的施入量不足。对不同质地土壤养分含量变化分析表明 ,质地可控制养分的空间分配 ,但人为干预促进了土壤养分含量向均一化方向发展。对不同质地土壤有机质含量与表层含盐量进行相关分析表明 ,表层为轻壤时 ,土壤有机质含量与表层含盐量具有明显的负相关性。 相似文献
945.
分别研究了纳米TiO2 在主波长为 364nm的汞灯光照下催化氧化i C3H7OH和CH3COCH3水溶液的反应速率 .通过XRD ,TEM ,BET和FT IR PAS对催化剂进行表征 ,粉末的晶型主要为锐钛矿型 .平均粒径在 1 5nm左右 ,比表面积为 1 0 1 0± 0 2m2 ·g- 1 ,FT IR PAS的检测结果表明 ,CH3COCH3是i C3H7OH光催化氧化的中间产物 ,其光催化氧化反应为 :i C3H7OH [O]CH3COCH3[O]CH3COOH[O]…[O]CO2 H2 O 相似文献
946.
施肥与设施栽培措施对土壤微生物区系的影响 总被引:19,自引:1,他引:19
微生物肥料的施用能显著增加土壤中放线菌的数量,而降低细菌和霉菌的数量;施用有机肥对土壤微生物有较大的影响,其中,有机肥与无机肥,有机肥与生物肥配合施用的影响尤为明显,与对照相比,土壤中细菌数量分别增加109.8%和405.0%,放线菌数量分别增加320.3%和215.0%,而真菌数量分别降低44.0%和47.2%。大棚栽培条件下土壤微生物数量高于露地;在大棚中,种植年限长的土壤微生物数量低于种植年限短的。 相似文献
947.
948.
André Chiaradia Yan Ropert-Coudert Akiko Kato Thomas Mattern Julija Yorke 《Marine Biology》2007,151(4):1535-1542
Little Penguins, Eudyptula minor, breed in several small colonies in New Zealand and Australia. In this study, we compare the birds’ diving performances at
different sites situated throughout their breeding range. Environmental conditions and breeding success vary drastically amongst
colonies, but all birds feed on similar types of prey and face similar limitations on their foraging range. We examined several
diving parameters and calculated the proportion of foraging zone available during breeding to examine whether oceanographic
and geographic factors in the foraging zone can explain variations in diving behaviour and fledging success among the different
colonies. In colonies with high fledging success, Penguin Island and Oamaru, penguins made shallow dives <50 m depth and had
lower diving effort. More than 90% of the foraging zone was in waters <50 m depth in these colonies. Motuara Island also has
shallow waters with 95% <50 m depth, but the fledging success was low. Phillip Island has only 42% of waters <50 m and comparatively
low fledging success. Thus, penguins dived deeper and showed a higher diving effort in colonies with lower fledging success
(Motuara Island and Phillip Island), indicating that they were disadvantaged compared to conspecifics from other colonies
that dived shallower and with a lesser diving effort. We concluded that bathymetry is an important factor, but not the only
one, which influences fledging success. 相似文献
949.
Information about foraging speeds is particularly valuable when the impact of a predator species upon a community of prey has to be defined, as in the case of great cormorants. We measured the swim speed of 12 (six males and six females) free-ranging great cormorants Phalacrocorax carbo, foraging off the Greenland coast during the summer of 2003, using miniaturized data-loggers. Although mean body mass of males was 27% greater than that of females, and mean swim speed of males were 29–57% higher than that of females during foraging phases (but not descent phases) of dives, these differences in speeds were not significant due to high variances. Birds descended to the mean maximum depth of 4.7 m at an average speed of 1.6±0.5 m s−1, a speed similar to that measured in captive cormorants in previous studies. Although bursts of up to 4 m s−1 were recorded, speed usually decreased during the deepest (foraging) phase of dives, being on average 0.8±0.6 m s−1. Speeds measured here should be taken with caution, because the large propeller loggers used to measure speed directly decreased descent speeds by up to 0.5 m s−1 when compared to smaller depth-only loggers. Cormorants in Greenland seem to combine two searching strategies, one requiring low speed to scan the water column or benthos, and one requiring high speed to pursue prey. These two strategies depend on the two main habitats of their prey: pelagic or demersal. 相似文献
950.
Weiguo Luo Shihe Wang Juan Huang Lu Yan Jun Huang 《Frontiers of Environmental Science & Engineering》2007,1(3):316-319
To determine the impact of photosynthesis and transpiration on nitrogen removal in wetlands, an artificial wetland planted with reeds was constructed to treat highly concentrated domestic wastewater. Under different meteorological and hydraulic conditions, the daily changes of photosynthesis and transpiration of reeds, as well as nitrogen removal efficiency were measured. It was found that net photosynthesis rate per unit leaf area was maintained on a high level (average 19.0 μmol CO2/(m2·s)) from 10:00 to 14:00 in July 2004 and reached a peak of 21.1 μmol CO2/(m2·s) when Photon Flux Density was high during the day. Meanwhile, TN and NH4 +-N removal efficiency rose to 79.6% and 89.6%, respectively—the maximum values observed in the test. Correlation coefficient analysis demonstrated a positive correlation among photon flux density, net photosynthetic rate, transpiration rate, and TN and NH4 +-N removal efficiency. In contrast, there was a negative correlation between stomatal conductance and TN and NH4 +-N removal efficiency. Results suggest that the photosynthesis and transpiration of wetland plants have a great impact on nitrogen removal efficiency of wetlands, which can be enhanced by an increase in the photosynthesis and transpiration rate. In addition, the efficiency of water usage by reeds and nitrogen removal efficiency could be affected by the water level in wetlands; a higher level boosts nitrogen removal efficiency. 相似文献