Formation mechanism of ferromagnetic minerals in loess of China: TEM investigation
- 期刊名字:科學(xué)通報(bào)
- 文件大小:
- 論文作者:Chen Tianhu,XU Huifang,JI Junf
- 作者單位:College of Resources and Environmental Engineering,Department of Earth and Planetary Sciences,Institute of Surficial Geo
- 更新時(shí)間:2023-02-27
- 下載次數(shù):次
The results of TEM investigation indicate that magnetite and maghemite are the major ferromagnetic minerals in loess-paleosol sequences. Primary magnetite has the similar morphology and surface characteristics as eolian detrital particles. The magnetite can be classified into two categories, high-titanium and low-titanium, which may be the indicators of magmatic rocks and metamorphic rocks, respectively. TEM investigation at nanometer scale shows that primary detrital magnetite of micron scale had been partially weathered to maghemite of 5~20 nanometer during the pedogenic process, which maintain the pseudomorphism of the aeolian debris. Some chlorite particles were also weathered to nanometer scale magnetite or maghemite in the pedogenic process. So weathering of the two minerals leads to formation of superparamagnetism, which may be the important mechanism of magnetic-susceptibility increase in paleosols. The magnetite or maghemite resulting from the weathering of chlorite contains a small amount of P and S, which is the signal of microbe-mineral interaction, and indicates that microbes may play a certain role in chlorite weathering and formation of superparamagnetic particles.
-
C4烯烴制丙烯催化劑 2023-02-27
-
煤基聚乙醇酸技術(shù)進(jìn)展 2023-02-27
-
生物質(zhì)能的應(yīng)用工程 2023-02-27
-
我國(guó)甲醇工業(yè)現(xiàn)狀 2023-02-27
-
石油化工設(shè)備腐蝕與防護(hù)參考書十本免費(fèi)下載,絕版珍藏 2023-02-27
-
四噴嘴水煤漿氣化爐工業(yè)應(yīng)用情況簡(jiǎn)介 2023-02-27
-
Lurgi和ICI低壓甲醇合成工藝比較 2023-02-27
-
甲醇制芳烴研究進(jìn)展 2023-02-27
-
精甲醇及MTO級(jí)甲醇精餾工藝技術(shù)進(jìn)展 2023-02-27
