Calcium carbonate synthesis from waste concrete for carbon dioxide capture: From laboratory to pilot scale

被引:23
作者
Park, Sanghyun [1 ,2 ]
Ahn, Yongtae [1 ]
Lee, Sunjae [1 ,2 ]
Choi, Jaeyoung [1 ,2 ]
机构
[1] Korea Inst Sci & Technol, Ctr Environm Hlth & Welf Res, Hwarang Ro 14, Seoul 02792, South Korea
[2] Korea Univ, Grad Sch Energy & Environm, KU KIST GREEN SCH, 145 Anam Ro, Seoul 02841, South Korea
关键词
Inorganic carbonation; Waste concrete; Calcium carbonate; CO2; capture; Pilot-scale; MINERAL CARBONATION; CO2; STEEL; WATER; TECHNOLOGY; CA(OH)(2); FIXATION; CEMENT; CACO3; IRON;
D O I
10.1016/j.jhazmat.2020.123862
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This research article explains the synthesis and scale-up of calcium carbonate (CaCO3) from waste concrete as calcium-rich material by an inorganic carbonation process. The operating parameters include S/L ratio, HCl concentration, contact time, and extraction pH were investigated. The calcium hydroxide (Ca(OH)(2)) was synthesized by reaction between calcium chloride (CaCl2) and sodium hydroxide (NaOH), which induced the spontaneous reaction of CaCO3 without additional energy consumption. The productivity of CaCO3 was 1 kg/d in the laboratory scale experiment, and the CaCO3 productivity was scale-up to 20 kg/d through pilot scale process by same way as the laboratory scale. The approximately 4800 g of CaCO3 was produced and 2112 g of CO2 was captured per each cycle operation. Consequently, considered power consumption, the estimated amount of reduced CO2 was 465 g of CO2 in the pilot-scale reactor per cycle and produced CaCO3 with a purity of 99.0 %.
引用
收藏
页数:6
相关论文
共 28 条
[1]   A review on carbon dioxide mineral carbonation through pH-swing process [J].
Azdarpour, Amin ;
Asadullah, Mohammad ;
Mohammadian, Erfan ;
Hamidi, Hossein ;
Junin, Radzuan ;
Karaei, Mohammad Afkhami .
CHEMICAL ENGINEERING JOURNAL, 2015, 279 :615-630
[2]   Reaction of Ca(OH)2 with HCl in the presence of water vapour at low temperatures [J].
Bausach, M ;
Krammer, G ;
Cunill, F .
THERMOCHIMICA ACTA, 2004, 421 (1-2) :217-223
[3]  
Bui M, 2018, ENERG ENVIRON SCI, V11, P1062, DOI [10.1039/C7EE02342A, 10.1039/c7ee02342a]
[4]   EFFECT OF CYSTEINE AND MANGANESE ON THE CRYSTALLIZATION OF NONCRYSTALLINE IRON(III) HYDROXIDE AT PH-8 [J].
CORNELL, RM ;
GIOVANOLI, R ;
SCHNEIDER, W .
CLAYS AND CLAY MINERALS, 1990, 38 (01) :21-28
[5]   Carbonation of Ca-bearing silicates, the case of wollastonite: Experimental investigations and kinetic modeling [J].
Daval, Damien ;
Martinez, Isabelle ;
Corvisier, Jerome ;
Findling, Nathaniel ;
Goffe, Bruno ;
Guyot, Francois .
CHEMICAL GEOLOGY, 2009, 265 (1-2) :63-78
[6]   Analysis and the understanding of fluoride removal mechanisms by an electrocoagulation/flotation (ECF) process [J].
Emamjomeh, Mohammad M. ;
Sivakumar, Muttucumaru ;
Varyani, Ali Safari .
DESALINATION, 2011, 275 (1-3) :102-106
[7]  
Finozenok O, 2011, CIV ENG-JELGAVA, V3, P7
[8]   CALCIUM SILICATE CARBONATION PRODUCTS [J].
GOTO, S ;
SUENAGA, K ;
KADO, T ;
FUKUHARA, M .
JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 1995, 78 (11) :2867-2872
[9]  
박수환, 2017, [Journal of Korean Society of Environmental Engineers, 대한환경공학회지], V39, P356, DOI 10.4491/KSEE.2017.39.6.356
[10]  
Hart PW, 2011, J-FOR, V1, P67