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铬在水泥生产过程中的行为:熟料形成、水化和浸出研究。

Chromium behavior during cement-production processes: a clinkerization, hydration, and leaching study.

机构信息

Department of Environmental Engineering, Faculty of Engineering, King Mongkut's University of Technology Thonburi, Bangkok, Thailand.

出版信息

J Hazard Mater. 2011 Jul 15;191(1-3):296-305. doi: 10.1016/j.jhazmat.2011.04.077. Epub 2011 Apr 23.

Abstract

The behavior of chromium during the production of cement clinker, during the hydration of cement and during the leaching of cement mortars was investigated. The microstructures of clinker and mortar properties were investigated using free lime, XRD, SEM/EDS, and TG/DTA techniques. Chromium was found to be incorporated in the clinker phase. The formation of new chromium compounds such as Ca(6)Al(4)Cr(2)O(15), Ca(5)Cr(3)O(12), Ca(5)Cr(2)SiO(12), and CaCr(2)O(7), with chromium oxidation states of +3, +4.6, +5, and +6, respectively, was detected. After the hydration process, additional chromium compounds were identified in the mortar matrix, including Ca(5)(CrO(4))(3)OH, CaCrO(4)·2H(2)O, and Al(2)(OH)(4)CrO(4), with chromium oxidation states of +4.6, +6, and +6, respectively. Additionally, some species of chromium, such as Cr(3+) from Ca(6)Al(4)Cr(2)O(15) and Cr(6+) from CaCr(2)O(7), CaCrO(4)·2H(2)O, and Al(2)(OH)(4)CrO(4), were leached during leaching tests, whereas other species remained in the mortar. The concentrations of chromium that leached from the mortar following U.S. EPA Method 1311 and EA NEN 7375:2004 leaching tests were higher than limits set by the U.S. EPA and the Environment Agency of England and Wales related to hazardous waste disposal in landfills. Thus, waste containing chromium should not be allowed to mix with raw materials in the cement manufacturing process.

摘要

研究了铬在水泥熟料生产、水泥水化和水泥砂浆浸出过程中的行为。采用游离石灰、XRD、SEM/EDS 和 TG/DTA 技术研究了熟料和砂浆的微观结构。发现铬被掺入熟料相中。检测到形成了新的铬化合物,如 Ca(6)Al(4)Cr(2)O(15)、Ca(5)Cr(3)O(12)、Ca(5)Cr(2)SiO(12)和 CaCr(2)O(7),其铬氧化态分别为+3、+4.6、+5 和+6。水化过程后,在砂浆基质中又鉴定出其他铬化合物,包括 Ca(5)(CrO(4))(3)OH、CaCrO(4)·2H(2)O 和 Al(2)(OH)(4)CrO(4),其铬氧化态分别为+4.6、+6 和+6。此外,一些铬的形态,如 Ca(6)Al(4)Cr(2)O(15)中的 Cr(3+)和 CaCr(2)O(7)中的 Cr(6+)、CaCrO(4)·2H(2)O 和 Al(2)(OH)(4)CrO(4),在浸出试验中被浸出,而其他形态则留在砂浆中。根据美国 EPA 方法 1311 和 EA NEN 7375:2004 浸出试验,从砂浆中浸出的铬浓度高于美国 EPA 和英格兰和威尔士环境署关于危险废物在垃圾填埋场处置的限值。因此,含有铬的废物不应允许与水泥制造过程中的原材料混合。

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