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萍乐坳陷早二叠世海相海泡石矿物相转化的地质找矿意义
引用本文:杨振强,陈善庆,许俊文.萍乐坳陷早二叠世海相海泡石矿物相转化的地质找矿意义[J].沉积学报,1988,6(1):88-96.
作者姓名:杨振强  陈善庆  许俊文
作者单位:中国地质科学院宜昌地质矿产研究所
摘    要:本文以萍乐坳陷中的海泡石矿床为实例,报道海泡石的成岩相转化。在深埋条件下,早二叠世海相沉积的海泡石一般转化为滑石和史蒂文石(镁蒙脱石)。海泡石的相转化严重影响普查找矿和矿床评价。根据煤牌号与粘土矿物相转化呈线性变化的关系,笔者认为低变质煤牌号(气煤和气肥煤)对于指示海泡石的保存是可靠的标志。在趋势面分析图上表示的低变质煤区域与海泡石分布区明显地呈一致性。因此,根据低变质煤牌号分布区可预测新的海泡石产地。

关 键 词:海泡石相转化    粘土成岩作用    煤岩    滑石和史蒂文石    萍乐坳陷
收稿时间:1985-12-13

GEOLOGICAL AND PROSPECTIVE SIGNIFICANCE OF THE EARLY PERMIAN,MARINE SEPIOLITE-PHASE TRANSFORMATION IN PINGXIAN-LEPING DEPRESSION
Institution:Yichang Institute of Geology and Mineral Resources, Yichang, Hubei
Abstract:A rare type of marine sepiolite in China was first reported from Leping County, Jiangxi Province in 1947 (R. Zhang, 1947). In 1963, Peng Qirui founed the existence of talc and quartz associated with the sepiolite by means of DTA and XRD. In recent years, Professor R. Zhang considered the talc may be the result of the transformation of crystal structure of sepiolite underdeep buried condition (R.Zhan, 1981) R. Zhang and Z. Yang, 1985), In this paper the authors briefly summarized the achievement of sepiolite phasetransformation both in laboratory experiments and in field observations, which has been reported in publications. It is noticed that sepiolite is stable under hydrothermal condition at temperature below 310°. At higher temperature sepiolite undergoes the following transformation: sepiolite→ (stevensite)→hydrotalc→talc (+quartz). Since the associated minerals-talc, stevensite and quartz are major factors to influence the ore quality and evaluation in industry, it is important to deal with the sepiolite phase-transformation during the diagenesis processing. The phase-transformation of sepiolite in the early Permian in south China is an only example in the world, and also a nature example to study sedimentary diagenesis. The major factors of the transformation are palaeothermals, pressure and geological time. The most important factor for sepiolite to be transformed into talc is palaeo- temperature. It should be pointed out that the transformation can be taken place at lower palaeotemperature rather than 310°C which obtained from the artifical experiments. A sensible way to determine the palaeotemperature under buried condition is the degree of coalification of the Permian coal seams (Table 1,2). The reflectance of vitrinite is particularly useful since measurements need not be confined to coal, but can be undertaken on other sediments which contain plant fragments preserved as vitrinite. So, vitrinite reflectance in the Permian sedimentary rocks can be used as an indication of burial temperature reached by sepiolite. According to the vitrinite reflectance (Table 3), the authors suggest that the favourable diagenetic temperature for the transformation is below 120°C. Based on the regional distribution of the Permian coal rank, the authors consider that the sepiolite phase- transformation shows a synchronous relationship with coal metamorphism. It can be shown that the distibution areas of the lower rank of coal (subbituminous coal) conform evidently to those of sepiolite on the map of the trend surface analysis (Fig. 4 , ) by means of the computer VICTOR-9000. Therefore, the geological, prospective significance of the phase-transformation for sepiolite lies in the possibility for predicting the existing regions of sepiolite based on the lower rank of coal.
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