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利用动物骨骼进行二氧化碳的矿物碳化过程。

Mineral carbonation process of carbon dioxide using animal bone.

机构信息

School of Chemical and Metallurgical Engineering, University of the Witwatersrand, Wits, South Africa.

出版信息

Sci Prog. 2021 Apr-Jun;104(2):368504211019644. doi: 10.1177/00368504211019644.

Abstract

Carbon dioxide has been identified as one of the greenhouse gases responsible for global warming. Several carbon capture and storage technologies have been developed to mitigate the large quantities of carbon dioxide released into the atmosphere, but these are quite expensive and not easy to implement. Thus, this research analyses the technical and economic feasibility of using calcium leached from cow bone to capture and store carbon dioxide through the mineral carbonation process. The capturing process of carbon dioxide was successful using the proposed technique of leaching calcium from cow shinbone (the tibia) in the presence of HCl by reacting the calcium solution with gaseous carbon dioxide. AAS and XRF analysis were used to determine the concentration of calcium in leached solutions and the composition of calcium in cow bone respectively. The best leaching conditions were found to be 4 mole/L HCl and leaching time of 6 h. Under these conditions, a leaching efficiency of 91% and a calcium conversion of 83% in the carbonation reaction were obtained. Other factors such as carbonation time, agitation rate, and carbonation reaction temperature had little effect on the yield. A preliminary cost analysis showed that the cost to capture 1 ton of CO with the proposed technique is about US$ 268.32, which is in the acceptable range of the capturing process. However, the cost of material used and electricity should be reviewed to reduce the preliminary production cost.

摘要

二氧化碳已被确定为导致全球变暖的温室气体之一。已经开发了几种碳捕获和储存技术来减少大量释放到大气中的二氧化碳,但这些技术非常昂贵且不易实施。因此,这项研究分析了通过矿物碳化过程利用从牛骨中浸出的钙来捕获和储存二氧化碳的技术和经济可行性。通过在 HCl 存在下用牛胫骨(胫骨)中的钙溶液与气态二氧化碳反应,成功地进行了二氧化碳的捕获过程。使用原子吸收光谱法(AAS)和 X 射线荧光分析(XRF)分别来确定浸出溶液中钙的浓度和牛骨中钙的组成。发现最佳浸出条件为 4 mole/L HCl 和 6 h 的浸出时间。在这些条件下,获得了 91%的浸出效率和 83%的碳化反应中的钙转化率。其他因素,如碳化时间、搅拌速度和碳化反应温度,对产率的影响很小。初步成本分析表明,使用该技术捕获 1 吨 CO 的成本约为 268.32 美元,这在捕获过程的可接受范围内。然而,应该审查材料和电力的使用成本,以降低初步生产成本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8da3/10305823/9830f007fe7d/10.1177_00368504211019644-fig1.jpg

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