Travertine Mineralogical Characteristics and Spatial Distribution in Huanglong, China, a World Natural Heritage: Derived from Late Pleistocene to Early Holocene Glacial U-Shaped Valley Carbonate Deposits.

IF 3.7 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
ACS Omega Pub Date : 2024-12-31 eCollection Date: 2025-01-14 DOI:10.1021/acsomega.4c08897
Wenhao Gao, Xinze Liu, Weizhen Zhang, Dong Sun, Zhilin Chen, Qingming Zhang, Zhipeng Zhang, Shupu Liu, Jianxing Dong, Shikuan Wang, Jing Zhang, Hao Xu, Wanting Zhang, Jie Zheng
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Abstract

In the long and complex process of geological evolution, the rise of the Himalayan movement and the strong Quaternary glacial movement 400,000 years ago have shaped the highly distinctive travertine landform landscape of Huanglong, China. The overflow of karst water in the high travertine layer has formed magnificent waterfalls and wonderful karst caves as well as the world's largest open-air travertine beaches and pools. The unique travertine landscape has entered the public's vision. The travertine landscape composed of rare geological relics such as pools, terraces, beaches, waterfalls, and karst caves is like a gorgeous garland on the eastern edge of the Qinghai-Tibet Plateau, playing a pivotal role in China and even the world. The mineralogical characteristics and development level of Huanglong travertine were studied by means of hydrogeological survey, UAV aerial survey, and rock and mineral analysis. The length of Huanglong Trench is 3.6 km, with an average thickness of 17.8 m, and the thickest part is 31.9 m at the front of Pengjing pool. Due to the strong alteration of superficial plants, the main vertical structure is diversified, with porous travertine, dense travertine, and detritus travertine. Huanglong travertine was born in the late Pleistocene to early Holocene of the Quaternary. The deep carbonate rocks were deposited on the surface through a water cycle. The mineral composition is mainly calcite, and the purity of CaCO3 is generally over 95%. The research results have initially revealed the mineralogy characteristics and landscape spatial distribution of travertine in Huanglong World Natural Heritage.

黄龙世界自然遗产钙华矿物学特征及空间分布——来自晚更新世至全新世早期冰川u型山谷碳酸盐矿床。
在漫长而复杂的地质演化过程中,喜马拉雅运动的兴起和40万年前强烈的第四纪冰川运动,塑造了中国黄龙极具特色的钙华地貌景观。高石灰华层的岩溶水溢出,形成了壮观的瀑布和奇妙的溶洞,以及世界上最大的露天石灰华海滩和水池。独特的石灰华景观进入了公众的视野。由水池、梯田、沙滩、瀑布、溶洞等稀有地质遗迹组成的石灰华景观,犹如青藏高原东部边缘的一圈绚丽的花环,在中国乃至世界都占有举足轻重的地位。通过水文地质调查、无人机航测、岩矿分析等手段,对黄龙石灰华的矿物学特征及发育程度进行了研究。黄龙沟长3.6 km,平均厚度17.8 m,最厚处彭井池前31.9 m。由于表层植物蚀变较强,主要垂直结构多样,有多孔钙华、致密钙华和碎屑钙华。黄龙钙华形成于第四纪晚更新世至全新世早期。深层碳酸盐岩通过水循环沉积在地表。矿物成分以方解石为主,CaCO3纯度一般在95%以上。研究结果初步揭示了黄龙世界自然遗产钙华的矿物学特征和景观空间分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Omega
ACS Omega Chemical Engineering-General Chemical Engineering
CiteScore
6.60
自引率
4.90%
发文量
3945
审稿时长
2.4 months
期刊介绍: ACS Omega is an open-access global publication for scientific articles that describe new findings in chemistry and interfacing areas of science, without any perceived evaluation of immediate impact.
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