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21.
对张八岭地区的构造特征、演化及其动力学有不同解释。通过1:5万张八岭幅、珠龙幅区域地质调查.从地层、岩石组合、岩石化学、岩浆岩、构造变形和变质等研究认为.该区从中新元古代起,经历了成谷、沉积.下沉、顺层剪切、深部熔融、塑性流动、层间褶皱.叠加折劈、宽缓褶曲、逆掩推覆,壳层滑动、熔融成浆、聚浆热隆、侵入或喷发.剥蚀夷平、堆积充填等铸成现今地貌景观.引起上述构造特征和演化的动力源自重力、热力和地球自转速率变化的惯性离心力等的结合与转化,它们在每个阶段各自所起的作用不同,就产生不同构造特征,推动区域构造演化. 相似文献
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S. O. Oikeh R. J. Carsky J. G. Kling V. O. Chude W. J. Horst 《Agriculture, ecosystems & environment》2003,100(2-3):181
Nitrate is prone to leaching in the sandy soils of the West African moist savannas. Better management of nitrogen (N) resources and maize cultivars with enhanced genetic capacity to capture and utilize soil and fertilizer N are strategies that could improve N-use efficiency. In two field experiments conducted at Zaria, northern Nigeria, five maize (Zea mays L.) cultivars planted early in the season were assessed under various N levels for differences in N uptake, soil N dynamics, and related N losses. Cultivar TZB-SR accumulated more N in the aboveground plant parts in both years than the other cultivars. All, except the semi-prolific late (SPL) variety, met about 50–60% of their N demand by the time of silking (64–69 DAP). In both years, SPL had the greatest capacity to take up N during the grain filling period, and it had the highest grain-N concentration and the least apparent N loss through leaching in the second year. There were no significant differences in soil N dynamics among cultivars in both years. At harvest, the residual N in the upper 90 cm of the profile under all the cultivars ranged from 56 to 72 kg ha−1 in the first year and from 73 to 83 kg ha−1 in the second year. Apparent N loss from 0 to 90 cm soil profile through leaching ranged from 35 to 122 kg ha−1 in both years. N application significantly increased N uptake by more than 30% at all sampling dates in the second year of the experiment, but had no effect on apparent N loss. Results indicate that the use of maize cultivars with high N uptake capacity during the grain filling period when maximum leaching losses occur could enhance N recovery and may be effective in reducing leaching losses of mineral N in the moist savanna soils. 相似文献
25.
高级氧化技术强化皮革废水生化处理效果初探 总被引:1,自引:0,他引:1
皮革废水中含大量难降解有机物,导致常规好氧生化处理速率低、效果差.实验考察了在Us(超声波)、UV(紫外光)、US/Fenton、UV/Fenton等高级氧化技术强化作用下的生化处理效果,结果表明,在相同水质和实验条件下,废水经Us、UV处理30min后可使后续生化反应速率显著提高,分别反应8h、24h后的COD去除率即可达到直接经微生物处理48h后达到的48%,但延长反应时间至48h对COD去除率没有明显提高;Fenton试剂强化US、UV的处理效果要高于单独Us、UV工艺,经30min预处理,随后在微生物作用下分别反应4h和8h即可达到45%和51%的COD去除率,同时延长反应时间也能使最终COD去除率明显提高,反应48h后,COD去除率可分别提高至64%和72%. 相似文献
26.
《环境科学学报(英文版)》2023,35(3):319-331
Oxidation-absorption technology is a key step for NOx removal from low-temperature gas. Under the condition of low O3 concentration (O3/NO molar ratio = 0.6), F-TiO2 (F-TiO2), which is cheap and environmentally friendly, has been prepared as ozonation catalysts for NO oxidation. Catalytic activity tests performed at 120°C showed that the NO oxidation efficiency of F-TiO2 samples was higher than that of TiO2 (about 43.7%), and the NO oxidation efficiency of F-TiO2-0.15 was the highest, which was 65.3%. Combined with physicochemical characteristics of catalysts and the analysis of active species, it was found that there was a synergistic effect between F sites and oxygen vacancies on F-TiO2, which could accelerate the transformation of monomolecular O3 into multi-molecule singlet oxygen (1O2), thus promoting the selective oxidation of NO to NO2. The oxidation reaction of NO on F-TiO2-0.15 follows the Eley-Rideal mechanism, that is, gaseous NO reacts with adsorbed O3 and finally form NO2. 相似文献
27.
综合分析了现代腕足类生物壳体方解石中的C、O同位素特征,以及有关古生代腕足类生物壳体方解石构造和地球化学研究成果,分析结果证明:只有那些无发光性特点、无胶结和溶蚀构造特点、有较好纤维构造特点、含高Sr、Na和低Mn、Fe(Mg)的第二层腕足类生物壳体方解石的δ18O值不受成岩作用影响;而原始层和壳体中的特殊部位如铰合轴、腕骨、茎孔、交互面、肌痕等在沉积、成岩过程中与海水处于非同位素平衡状态。 相似文献
28.
强化混凝去除黄浦江水有机物的试验研究 总被引:11,自引:0,他引:11
强化混凝去除有机物的效果与水源的分子量分布特性有着密切的关系.由于黄浦江水中低分子量的溶解性有机物占多数,因此,强化混凝处理有机物效果有限.对于<1k分子量区间的有机物.增加混凝剂投量可有效去除紫外吸光值(UV254),但去除溶解性有机碳(DOC)的效果很差.尽管增加混凝剂投量和降低pH都能有效地去除有机物,但决定强化混凝效果的主要因素是pH,去除黄浦江水有机物的最佳pH范围为6~5. 相似文献
29.
《环境科学学报(英文版)》2023,35(3):309-318
Accurate quantification of dissolved organic nitrogen (DON) has been a challenge due to the cumulative analytical errors in the conventional method via subtracting dissolved inorganic nitrogen species (DIN) from total dissolved nitrogen (TDN). Size exclusion chromatography coupled with an organic nitrogen detector (SEC-OND) has been developed as a direct method for quantification and characterization of DON. However, the applications of SEC-OND method still subject to poor separations between DON and DIN species and unsatisfied N recoveries of macromolecules. In this study, we packed a series of SEC columns with different lengths and resin materials for separation of different N species and designed an independent vacuum ultraviolet (VUV) oxidation device for complete oxidation converting N species to nitrate. To guarantee sufficient N recoveries, the operation conditions were optimized as oxidation time ≥ 30 min, injection mass (sample concentration × injection volume) < 1000 µL × mg-N/L for macromolecular proteins, and neutral pH mobile eluent. The dissolved O2 concentration in SEC mobile phase determined the upper limit of VUV oxidation at a specific oxidation time. Compared to conventional HW50S column (20 × 250 mm), HW40S column (20 × 350 mm) with mobile phase comprising of 1.5 g/L Na2HPO4·2H2O + 2.5 g/L KH2PO4 (pH = 6.85) could achieve a better separation of DON, nitrite, nitrate, and ammonia. When applied to river water, lake water, wastewater effluent, groundwater, and landfill leachate, the SEC-OND method could quantify DON as well as DIN species accurately and conveniently even the DIN/TDN ratio reached 0.98. 相似文献
30.
Yang Zhang Tianyi Zhao Yu Yan Bian Zhou Xuezhen Zhong Xiaoyu Hu Lijia Zhang Peng Huo Kang Xiao Yuanxun Zhang 《环境科学学报(英文版)》2023,35(2):835-845
Ambient particulate matter (PM) can cause adverse health effects via their ability to produce Reactive Oxygen Species (ROS). Water-Soluble Organic Compounds (WSOCs), a complex mixture of organic compounds which usually coexist with Transition Metals (TMs) in PM, have been found to contribute to ROS formation. However, the interaction between WSOCs and TMs and its effect on ROS generation are still unknown. In this study, we examined the ROS concentrations of V, Zn, Suwannee River Fulvic Acid (SRFA), Suwannee River Humic Acid (SRHA) and the mixtures of V/Zn and SRFA/SRHA by using a cell-free 2′,7′-Dichlorodihydrofluorescein (DCFH) assay. The results showed that V or Zn synergistically promoted ROS generated by SRFA, but had an antagonistic effect on ROS generated by SRHA. Fluorescence quenching experiments indicated that V and Zn were more prone to form stable complexes with aromatic humic acid-like component (C1) and fulvic acid-like component (C3) in SRFA and SRHA. Results suggested that the underlying mechanism involving the fulvic acid-like component in SRFA more tending to complex with TMs to facilitate ROS generation through π electron transfer. Our work showed that the complexing ability and complexing stability of atmospheric PM organics with metals could significantly affect ROS generation. It is recommended that the research deploying multiple analytical methods to quantify the impact of PM components on public health and environment is needed in the future. 相似文献