帮助 关于我们

返回检索结果

粤北碳酸盐岩化学风化过程中的元素地球化学行为
Mobilization and re-distribution of major and trace elements during the process of moderate weathering of carbonates in northern Guangdong, South China

查看参考文献56篇

虎贵朋 1   韦刚健 1 *   马金龙 1   曾提 2   刘志锋 2  
文摘 碳酸盐岩化学风化对于大型水系以及海水的化学组成具有重要的影响。然而,当前对碳酸盐岩化学风化过程中元素的迁移特征及其控制机制的认识尚存一些争议。本文通过报道粤北地区的一个典型碳酸盐岩风化剖面的矿物组成和主元素、微量元素含量的变化特征,试图探讨碳酸盐岩化学风化过程的元素地球化学行为。结果显示,碱土金属Ca、Sr大量迁出剖面,这与碳酸钙的溶解直接相关;而其他碱金属-碱土金属元素则发生了不同程度的富集,可能归因于黏土矿物对这些元素的吸附;过渡金属元素也存在明显的富集现象,可能与Fe、A1的氧化物/氢氧化物对其的吸附有关。平均上地壳(UCC)标准化的稀土元素(REE)图解显示,相对新鲜的母岩,风化产物中的稀土元素发生了显著的富集与分异,同时伴随着Ce的显著负异常(δCe= 0.30~ 0.84)。本剖面上REE的迁移和再分配主要受控于介质pH值的变化:在近中性的条件下,碳酸根离子可以和REE形成稳定的络合物,显著提高了REE迁移能力,并在碱性较强的层位之上富集和再分配。然而,由于重稀土元素(HREE)的原子半径小于轻稀土元素(LREE),造成HREE与碳酸根络合物的稳定性显著大于LREE,最终导致碳酸盐岩风化过程中HREE的富集程度明显超过LREE。
其他语种文摘 Weathering of carbonate plays an important role in influencing the budgets of many elements to rivers and oceans. However, the mobilization and re-distribution of major and trace elements during weathering of carbonate and their mechanism, are still a matter of debate. We here report the variation characteristics of major and trace elements, and mineral compositions of saprolites from a weathering profile developed on argillaceous carbonate rocks in northern Guangdong, South China, to investigate this issue. The results indicate that almost all of Sr and Ca were removed from the profile by aqueous solutions during moderate chemical weathering of carbonate, due to the high solubility of calcite. However, other alkaline earth metals, such as Mg, and Ba and alkali metals, are relatively enriched in the upper profile, mainly due to the adsorption of those elements by clay minerals. As for the transition metals, their enrichment was observed in the upper profile, which is likely to have been caused by the adsorption of transition metals by oxides/hydroxyls of Fe and Al. It is worth noting that the UCC-normalized rare-earth element (REE) patterns of saprolites in the profile are characterized by a strong enrichment in HREE (heavy REE) relative to LREE (light REE). Ce anomalies are all negative, and show large variations in the upper profile (0-1.5 m) with δCe changing from 0.30 to 0.84, but limited variations in the lower profile (> 1.5 m), around 0.8. The mobilization and re-distribution of the REEs in this profile were controlled by the variation of pH values. In the nearly neutral aqueous solution, the REEs tend to form complexes with carbonate ions. As a result, their capacity of transferring is significantly improved. At the sections under basic conditions, the carbonate complexes decompose, and the REEs are deposited and enriched. Given that the HREEs were preferentially combined with carbonate ions compared to the LREEs, the HREEs are likely to be transported more easily. As a result, more HREEs will be enriched in the lower sections than the LREEs, showing a significant HREE-enriched fractionation pattern of this profile.
来源 地球化学 ,2017,46(1):33-45 【核心库】
关键词 碳酸盐岩风化 ; 主元素 ; 微量元素 ; 矿物组成
地址

1. 中国科学院广州地球化学研究所, 同位素地球化学国家重点实验室, 广东, 广州, 510640  

2. 中国科学院广州地球化学研究所, 中国科学院边缘海地质重点实验室, 广东, 广州, 510640

语种 中文
文献类型 研究性论文
ISSN 0379-1726
学科 地质学
基金 国家自然科学基金
文献收藏号 CSCD:5900188

参考文献 共 56 共3页

1.  Li G J. Evolution of carbon cycle over the past 100 million years. Geochim Cosmochim Acta,2013,103:11-25 被引 3    
2.  Cox G M. Continental flood basalt weathering as a trigger for Neoproterozoic Snowball Earth. Earth Planet Sci Lett,2016,446:89-99 被引 12    
3.  Ma J L. Mobilization and re-distribution of major and trace elements during extreme weathering of basalt in Hainan Island, South China. Geochim Cosmochim Acta,2007,71(13):3223-3237 被引 40    
4.  Anderson S P. Controls on chemical weathering: Small- and large-scale perspectives. Chem Geol,2003,202(3):191-193 被引 4    
5.  Hill I G. Yttrium: The immobilitymobility transition during basaltic weathering. Geology,2000,28(10):923-926 被引 16    
6.  Liu W J. Deep weathering along a granite ridgeline in a subtropical climate. Chem Geol,2016,427:17-34 被引 1    
7.  Yusoff Z M. Mobility and fractionation of REEs during deep weathering of geochemically contrasting granites in a tropical setting, Malaysia. Chem Geol,2013,349/350:71-86 被引 12    
8.  White A F. Effects of Climate on chemical-weathering in watersheds. Geochim Cosmochim Acta,1995,59(9):1729-1747 被引 64    
9.  Bluth G J S. Lithologic and climatologic controls of river chemistry. Geochim Cosmochim Acta,1994,58(10):2341-2359 被引 26    
10.  Eyrolle F. The distributions of colloidal and dissolved organic carbon, major elements, and trace elements in small tropical catchments. Geochim Cosmochim Acta,1996,60(19):3643-3656 被引 3    
11.  Gislason S R. Direct evidence of the feedback between climate and weathering. Earth Planet Sci Lett,2009,277(1):213-222 被引 26    
12.  Dessert C. Basalt weathering laws and the impact of basalt weathering on the global carbon cycle. Chem Geol,2003,202(3):257-273 被引 38    
13.  Kump L R. Chemical weathering, atmospheric CO_2, and climate. Annu Rev Earth Planet Sci,2000,28(1):611-667 被引 65    
14.  Li G. Temperature dependence of basalt weathering. Earth Planet Sci Lett,2016,443:59-69 被引 5    
15.  朱立军. 碳酸盐岩风化成土作用及其环境效应,2004:80-110 被引 5    
16.  刘丛强. 西南喀斯特流域碳酸盐岩的硫酸侵蚀与碳循环. 地球化学,2008,37(4):404-414 被引 115    
17.  Szramek K. Relative weathering intensity of calcite versus dolomite in carbonate-bearing temperate zone watersheds: Carbonate geochemistry and fluxes from catchments within the St. Lawrence and Danube river basins. Geochem Geophys Geosyst,2007,8(4):1-26 被引 1    
18.  Wei G J. Seasonal changes in the radiogenic and stable strontium isotopic composition of Xijiang River water: Implications for chemical weathering. Chem Geol,2013,343(3):67-75 被引 13    
19.  Jacobson A D. Silicate versus carbonate weathering in Iceland: New insights from Ca isotopes. Earth Planet Sci Lett,2015,416:132-142 被引 19    
20.  Wei X. The formation of representative lateritic weathering covers in south-central Guangxi (southern China). Catena,2014,118:55-72 被引 8    
引证文献 9

1 徐畅 甘肃阿干煤矸石的矿物组成与演变 矿物岩石,2018,38(2):114-119
被引 0 次

2 虎贵朋 粤北石灰岩化学风化过程中的Sr-Nd同位素 地球化学,2018,47(4):415-422
被引 1

显示所有9篇文献

论文科学数据集

1. 华北北缘及其邻区燕山期中酸性岩年代学及地球化学数据集

2. 贵州织金和瓮安磷矿化学成分数据集

3. 佛子冲矿区微量元素、主量元素、U-Pb测年数据及部分矿物的电子探针数据集

数据来源:
国家青藏高原科学数据中心

1. 辽南石槽剖面红色风化壳地球化学特征数据集

数据来源:
国家对地观测科学数据中心
PlumX Metrics
相关文献

 作者相关
 关键词相关
 参考文献相关

版权所有 ©2008 中国科学院文献情报中心 制作维护:中国科学院文献情报中心
地址:北京中关村北四环西路33号 邮政编码:100190 联系电话:(010)82627496 E-mail:cscd@mail.las.ac.cn 京ICP备05002861号-4 | 京公网安备11010802043238号