The total PGE amount (σPGE) of mantle peridotite in the Jiding ophiolite is slightly higher than that of the primitive mantle,
but the PGE contents of basalt are higher than those of the mid-ocean ridge basalt (MORB), with obviously lower Pd/Ir ratios.
The accumulates, dyke swarm and basalts show remarkable negative Pt and positive Rh anomalies, resulting in the special N-type
PGE patterns. Mantle peridotite and crustal rocks have similar distribution patterns. It is proposed that the PGE distribution
patterns in the Jiding ophiolite are closely related with a higher degree of partial melting of the mantle in this region.
Magmatic crystallization-differentiation led to PGE fractionation, thus making the contents of PGE in the accumulates decrease
in the ascending direction. The higher content of Au in the Jiding ophiolite is the result of metasomatic alteration at later
stages. Pt-Pd fractionation indicates that both the PGEs are controlled by their alloy and sulfide phases. Positive Rh anomalies
seem to be related with higher oxygen fugacity in the melts. 相似文献
The reaction rate and composition of calcite and aragonite overgrowths precipitated from seawater solutions of various salinities (i.e. S=5, 15, 25, 35, 44) were determined at 25°C and 10−2.5-atm. CO2 partial pressure using a constant disequilibrium seeded technique. The rate data were fitted to an empirical rate law of the form:
logR=n(ωc(or a)-1)+logk
where n is the empirical reaction order; and k is the rate constant. Calcite precipitation rates in seawater solutions do not vary appreciably as a result of salinity variations over the range investigated, while those for aragonite show an increase in going from the higher (i.e. S=35, 44) to the lower (i.e. S=5, 15, 25) salinity range. This study also confirms previously published findings that above a given saturation state (i.e. Ωc>/2.6) aragonite precipitates more rapidly than calcite at 25°C.
The incorporation of Sr2+ in aragonite and Mg2+ in calcite overgrowths are independent of the precipitation rate. The partition coefficient of Sr2+ in aragonite is approximately equal to unity and is unaffected by salinity variations between 5 and 44. However, the Mg2+ partition coefficient in calcite, increases with decreasing salinity of the parent seawater solutions, possibly as a result of variations in the sulfate content of the solutions and solids.
The experimental results were discussed in the context of a number of geological environments. 相似文献
Systematic morphological changes of the coastline of the outer Yangtze River mouth in response to storms versus calm weather
were documented by daily surveys of tidal marshes and flats between April 1999 and May 2001 and by boat surveys offshore during
this and earlier periods. The largest single event during 1999 to 2001 was Typhoon Paibaian, which eroded the unvegetated
tidal flat and lower marsh and led to accretion on the middle-to-upper marsh and in the subtidal channel. The greatest erosion
of 21 cm occurred at the border between the marsh and the unvegetated flat due to the landward retreat of the marsh edge during
the storm. Strong waves on the flats increased suspended sediment concentration by 10–20 times. On the upper marsh, where
the frequency of submergence by astronomical tides is only 3%, Typhoon Paibian led to 4 cm of accretion, accounting for 57%
of the net accretion observed over the 2-yr study. Typhoon Paibian led to 4 cm of accretion, accounting for 57% of the net
accretion observed over the 2-yr study. Typhoon Paibian and other large storms in the 1990s caused over 50 cm of accretion
along the deep axis of the river mouth outlet channel. During calm weather, when hydrodynamic energy was dominated by tides,
deposition was centered on the unvegetated flats and lower, marsh with little deposition on the high marsh and erosion in
the subtidal channel. Depositional recovery of the tidal flat from typhoon-induced erosion took only several days, whereas
recovery of the subtidal channel by erosion took several weeks. A conceptual model for the morphological responses of tidal
marshes, flats, and subtidal channels to storms and calm weather is proposed such that sediment continually moves from regions
of highest near-bed energy towards areas of lower energy. 相似文献
With deep mining of coal mines, prospecting multilayer water-filled goaf has become a new content that results from geophysical exploration in coalfields. The central loop transient electromagnetic (TEM) method is favorable for prospecting conductive layers because of the coupling relationship between its field structure and formation. However, the shielding effect of conductive overburden would not only require a longer observation time when prospecting the same depth but also weaken the anomalous response of underlying layers. Through direct time domain numerical simulation and horizontal layered earth forward modeling, this paper estimates the length of observation time required to prospect the target, and the distinguishable criterion of multilayer water-filled goaf is presented with observation error according to the effect of noise on observation data. The observed emf curves from Dazigou Coal Mine, Shanxi Province can distinguish multilayer water-filled goaf. In quantitative inversion interpretation of observed curves, using electric logging data as initial parameters restrains the equivalence caused by coal formation thin layers. The deduced three-layer and two-layer water-filled goafs are confirmed by the drilling hole. The result suggests that when observation time is long enough and with the anomalous situation of underlying layers being greater than the observation error, the use of the central loop TEM method to prospect a multilayer water-filled goaf is feasible. 相似文献