锂渣配料方案选择与优化
1 四川省星船城水泥股份有限公司,四川 内江 641200;
2 四川省建材工业科学研究院,四川 成都 610000;
3 宜宾瑞兴实业有限公司,四川 宜宾 644400;
4 重庆天助商品混凝土搅拌有限公司,重庆 402283;
Selection and Optimization of Lithium Slag Proportioning Scheme
1. Sichuan Xingchuancheng Cement Co., Ltd. , Neijiang Sichuan 641200, China;
2. Sichuan Research Institute of Building Materials Industry, Chengdu Sichuan 610000, China;
3. Yibin Ruixing Industrial Co., Ltd. , Yibin Suchuan 644400, China;
4. Chongqing Tianzhu Commercial Concrete Mixing Co., Ltd. , Chongqing 402283, China
摘要 锂渣是一种锂电池工业废渣,活性高达95%~110%,作为高活性水泥混合材使用,可有效提升水泥品质,降低水泥配料成本,缓解混合材供需矛盾。本文对锂渣的应用现状及化学性能进行了分析,并结合企业实际情况和实验数据,对锂渣使用方案的选择及优化提出了建议。锂渣使用方案受熟料质量、采购成本等多因素影响,需以质量及成本最优为原则进行选择。
关键词:
锂渣
高活性混合材
熟料强度
方案优化
Abstract:
Lithium slag is a kind of industrial waste residue of lithium battery, the activity is up to 95% ~ 110%. As a high-activity cement mixture, it can effectively improve the quality of cement, reduce the cost of cement ingredients, ease the contradiction between supply and demand of the mixture. In this paper, the application status and chemical properties of lithium slag are analyzed, and suggestions on the selection and optimization of lithium slag are put forward. The utilization scheme of lithium slag is influenced by many factors, such as clinker quality and purchase cost.
Key words:
lithium slag
high activity mixture
clinker strength
scheme optimization
收稿日期: 2022-10-28
修回日期: 2023-07-25
出版日期: 2023-07-25
发布日期: 2023-07-25
整期出版日期: 2023-07-25
引用本文:
邹波, 樊莉, 胡景亮, 沈炳, 邓杰. 锂渣配料方案选择与优化[J]. 水泥技术, 2023, 1(4): 93-96.
ZOU Bo, FAN Li, HU Jingliang, SHEN Bing, DENG Jie. Selection and Optimization of Lithium Slag Proportioning Scheme. Cement Technology, 2023, 1(4): 93-96.
链接本文:
http://www.cemteck.com/CN/10.19698/j.cnki.1001-6171.20234093
或
http://www.cemteck.com/CN/Y2023/V1/I4/93
[1]
. Review and Prospect of Engineering Practice of Waste Disposal in Cement Kiln in China [J]. Cement Technology, 2018, 1(1): 17
-21
.
[2]
DI Dongren, TAO Congxi, CHAI Xingteng. Revision of Cement Energy Consumption Standards and Energy Saving Technology(Ⅰ) [J]. Cement Technology, 2018, 1(1): 22
-26
.
[3]
LIU Yonggang, GAO Hongwei, XIAO Guiqing. Design Method of Road Structure Using Lean Concrete Base [J]. Cement Technology, 2018, 1(1): 27
-31
.
[4]
LIU Xu, LI Liang. Investigation of New Medium Temperature Wear-resistant Alloy Steel [J]. Cement Technology, 2018, 1(1): 32
-34
.
[5]
MA Debao. Finite Element Analysis of Inverted Cone in Raw Meal Silo [J]. Cement Technology, 2018, 1(1): 35
-38
.
[6]
HAN Zhongqi. [J]. Cement Technology, 2018, 1(1): 38
-48
.
[7]
XIE Jianzhong, LIAN Xuewen. Analysis and Solution of Segregation of the Kiln Ash in Continuous Raw Meal Homogenization Silo#br# [J]. Cement Technology, 2018, 1(1): 49
-53
.
[8]
GUAN Laiqing, HE Yongxian. [J]. Cement Technology, 2018, 1(1): 54
-59
.
[9]
WEI Can, ZHANG Yuanyuan, AI Jun. Application of Cement Intelligent Control System in Overseas Projects [J]. Cement Technology, 2018, 1(1): 60
-64
.
[10]
JIN Shuang. [J]. Cement Technology, 2018, 1(1): 72
-73
.
Viewed
Full text
Abstract
Cited
Shared
Discussed