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991.
采用涡度相关法对青海湖东北岸地区草甸化草原生态系统的CO2 通量进行了观测,结果表明:
在生长季节(5~9 月),就日变化,08:00~19:00 为CO2 净吸收,20:00~07:00 为CO2 净排放,CO2 通量
净吸收峰值一般出现在12:00 时,7 月份12:00 时CO2 净吸收峰值为1.41 g·(m2·h)-1;就月变化,7 月
是生长季CO2 净吸收最高月份,月CO2 净吸收量达到162.70 g·m-2,整个生长季CO2 净吸收的总量达
468.07 g·m-2。非生长季节(1~4 月及10~12 月),CO2 通量日变化振幅极小,最大CO2 净排放通量出现
在3 月,为0.29 g·(m2·h)-1,除12 月和1 月各时段CO2 通量接近于零,其余月份各时段CO2 净排放在
0.02~0.29 g·(m2·h)-1;3 月是全年CO2 净排放的最高月份,全月CO2 净排放量为72.33 g·m-2,整个非生
长季CO2 净排放为319.78 g·m-2。结果表明,无放牧条件下青海湖东北岸地区草甸化草原,全年CO2
净吸收量达148.30 g·m-2,是显著的CO2 汇。 相似文献
992.
Combined fluorescence and electrochemical investigation on the binding
interaction between organic acid and human serum albumin 总被引:1,自引:1,他引:0
Human serum albumin (HSA) is a plasma protein responsible for the binding and transport of fatty acids and a variety of exogenous chemicals such as drugs and environmental pollutants. Such binding plays a crucial role in determining the ADME (absorption, distribution, metabolism, and excretion) and bioavailability of the pollutants. We report investigation on the binding interaction between HSA and acetic acid (C2), octanoic acid (C8) and dodecanoic acid (C12) by the combination of site-specific fluorescent probe, tryptophan intrinsic fluorescence and tyrosine electrochemistry. Two fluorescent probes, dansylamide and dansyl-L-proline, were employed in the displacement measurement to study fatty acid interaction with the two drug-binding sites on HSA. Intrinsic fluorescence of tryptophan in HSA was monitored upon addition of the fatty acids into HSA. Electrocatalyzed response of the tyrosine residues in HSA by a redox mediator was used to investigate the binding interaction. Qualitatively, observations made by the three approaches are very similar. HSA did not show any change in either fluorescence or electrochemistry after mixing with C2, suggesting there is no significant interaction with the short-chain fatty acid. For C8, the measured signal dropped in a single-exponential fashion, indicative of independent and non-cooperative binding. The calculated association constant and binding ratio is 3.1×106 L/mol and 1 with drug binding Site I, 1.1×107 L/mol and 1 with Site II, and 7.0×104 L/mol and 4 with the tryptophan site. The measurement with C12 displayed multiple phases of fluorescence change, suggesting cooperativity and allosteric effect of C12 binding. These results correlate well with those obtained by the established methods, and validate the new approach as a viable tool to study the interactions of environmental pollutants with biological molecules. 相似文献
993.
Water soluble organic carbon (WSOC) in sediments plays an important role in transference and transformation of aquatic pollutants. This article investigated the inherent mechanisms of how sediemnt grain size affect the partitioning coeffcient (k) of WSOC. Influences of NaOH extracted humic substances were particularly focused on. Sediments were sampled from two cross-sections of the middle Yellow River and sieved into three size fractions (< 63 μm, 63-100 μm, and 100--300 μm). The total concentration of WSOC in sediments (CWSOC) and k were estimated using multiple water-sediment ratio experiments. Results show that CWSOC ranges from 0.012 to 0.022 mg/g, while k ranges from 0.8 to 3.9 L/kg. Correlations between the spectrum characteristics of NaOH extracted humic substances and k were analyzed. Strong positive correlations are determined between k and the aromaticity indicators of NaOH extracted humic substances in different sediment size fractions. Comparing with finer fractions (< 63 μm), k is higher in larger size fractions (63--100 and 100--300 μm) related to higher aromaticity degree of NaOH extracted humic substances mostly. While negative relationship between k and the area ratio of fourier transform infrared spectroscopy (FT-IR) at 3400 and 1430 cm-1 implied that the lowest k was related to the highest concentration of the acidic humic groups in particles < 63 μm. WSOC in finer fractions (< 63 μm) is likely to enter into pore water, which may further accelerate the transportation of aquatic contaminants from sediment to water. 相似文献
994.
The equivalence between multilayered barriers regarding diffusion and adsorption is analyzed by means of an analytical method. The bottom boundary of the liner system is defined by assuming concentration continuous and flux continuous conditions of the contaminant between the bottom liner layer and the underlying soil. Five different liner systems were compared in terms of solute breakthrough time. The results of the analysis show that breakthrough time of the hydrophobic organic compounds for a 2-meter-thick compacted clay liner (CCL) can be 3-4 orders of magnitude greater than the breakthrough time for a geosynthetic clay liner (GCL) composite liner. The GM/GCL and GM/CCL composite liner systems provide a better diffusion barrier for the hydrophilic organic compounds than that for the hydrophobic compounds due to their different Henry's coefficient. The calculated breakthrough times of the organic contaminants for the Chinese standard liner systems were found to be generally greater than those for the GCL alternatives, for the specific conditions examined. If the distribution coefficient increases to 2.8 for the hydrophobic compounds or 1.0 for the hydrophilic compounds, the thickness of the attenuation layer needed to achieve the same breakthrough time as the standard liner systems can be reduced by a factor of about 1.9-2.4. As far as diffusive and adsorption contaminant transport are concerned, GM or GCL is less effective than CCL. 相似文献
995.
SAIDI Neyla KOUKI Soulwene M' HIRI Fadhel JEDIDI Naceur MAHROUK Meriam HASSEN Abdennaceur OUZARI Hadda 《环境科学学报(英文版)》2009,21(10):1452-1458
The aim of this study was to characterize the biological stability and maturity degree of compost during a controlled pile-composting trial of mixed vegetable residues (VR) collected from markets of Tunis City with residues of Posidonia oceanica (PoR), collected from Tunis beaches. The accumulation in beaches (as well as their removal) constitutes a serious environmental problem in all Mediterranean countries particularly in Tunisia. Aerobic-thermophilic composting is the most reasonable way to profit highly-valuable content of organic matter in these wastes for agricultural purposes. The physical, chemical, and biological parameters were monitored during composting over 150 d. The most appropriate parameters were selected to establish the maturity degree. The main result of this research was the deduction of the following maturity criterion: (a) C/N ratio < 15; (b) NH4+-N < 400 mg/kg; (c) CO2-C < 2000 mg CO2-C/kg; (d) dehydrogenase activity < 1 mg TPF/g dry matter; (e) germination index (GI) > 80%. These five parameters, considered jointly are indicative of a high maturity degree and thus of a high-quality organic amendment which employed in a rational way, may improve soil fertility and soil quality. The mature compost was relatively rich in N (13.0 g/kg), P (4.74 g/kg) and MgO (15.80 g/kg). Thus composting definitively constitutes the most optimal option to exploit these wastes. 相似文献
996.
ZHANG Peng SONG Jinming FANG Jie LIU Zhigang LI Xuegang YUAN Huamao 《环境科学学报(英文版)》2009,21(8):1080-1088
Sixteen polycyclic aromatic hydrocarbons (PAHs) and 28 polychlorinated biphenyls (PCBs) were measured at a 2-cm interval in a core sample from the middle of the southern Yellow Sea for elucidating their historical variations in inflow and sources. The chronology was obtained using the 210Pb method. PAHs concentrations decreased generally with depth and two climax values occurred in 14–16 cm and 20–22 cm layers, demonstrating that the production and usage of PAHs might reach peaks in the periods of 1956–1962... 相似文献
997.
Characterization of organic matter in total suspended particles by
thermodesorption and pyrolysis-gas chromatography-mass spectrometry 总被引:1,自引:0,他引:1
ZHAO Jinping PENG Ping’an SONG Jianzhong MA Shexi SHENG Guoying FU Jiamo 《环境科学学报(英文版)》2009,21(12):1658-1666
The organic matter in tropospheric aerosol plays an important role in atmospheric physical and chemical processes. The bulk of
organic matter, representing a significant proportion of the total suspended particulate (TSP) mass, is bound to polymeric material
whose structure and properties are largely unknown. Here we used thermodesorption gas chromatography/mass spectrometry (Td-
GC/MS) to study organic compounds of low molecular mass and pyrolysis gas chromatography/mass spectrometry (Py-GC/MS) to
characterize the chemical structure of macromolecules in TSP samples collected in di erent seasons from di erent sites in Guangzhou.
n-Alkanes, fatty acids and nitriles were the predominant compounds in the thermodesorption products, whereas aromatics, fatty acids,
nitriles and n-alkanes/alkenes were the major compounds in the pyrolysates. The results indicated that aromatics were main units in
macromolecules. The fatty acids and nitriles formed from carboxylic ammonium salts were detected in both thermodesorption products
and pyrolysates at a certain concentration, indicating the importance of these compounds in TSP formation. The TSP source mainly
determined the occurrence of compounds in samples from urban, suburban and forest sites, whereas the TSP source and formation
process maybe controlled the seasonal variation in compounds detected. High levels of nitriles in summer samples from suburban and
forest sites coincide with the release of ammonium from the land and of fatty acids from vegetation at these sites. 相似文献
998.
In this study, chlorine decay experiments were conducted for the raw water from Nakdong River that is treated by Chilseo Water
Treatment Plant (CWTP) situated in Haman, Korea as well as the e uents from sand and granular activated carbon (GAC) filters of
CWTP and fitted using a chlorine decay model. The model estimated the fast and slow reacting nitrogenous as well as organic/inorganic
compounds that were present in the water. It was found that the chlorine demand due to fast and slow reacting (FRA and SRA)
organic/inorganic substances was not reduced significantly by sand as well as GAC filters. However, the treated e uents from those
filters contained FRA and SRA that are less reactive and had small reaction rate constants. For the e uents from microfiltration,
ultrafiltration, and nanofiltration the chlorine demand because FRA and SRA were further reduced but the reaction rate constants were
larger compared to those of sand and GAC filter e uents. This has implications in the formation of disinfection by products (DBPs).
If DBPs are assumed to form due to the interactions between chlorine and SRA, then it is possible that the DBP formation potential in
the e uents from membrane filtrations could be higher than that in the e uents from granular media filters. 相似文献
999.
Water soluble organic carbon (WSOC) is considered the most mobile and reactive soil carbon source and its characterization is an
important issue for soil ecology study. A biodegradability test was set up to study WSOC extracted from 7 soils di erently managed.
WSOC was extracted from soil with water (soil/water ratio of 1:2, W/V) for 30 min, and then tested for biodegradability by a liquid state
respirometric test. Result obtained confirmed the finding that WSOC biodegradability depended on the both land use and management
practice. These results suggested the biodegradability test as suitable method to characterize WSOC, and provided useful information
to soil fertility. 相似文献
1000.