Suppr超能文献

通过石墨成型法一步制备用于可再生二氧化碳捕集的锆负载氧化钙基颗粒。

One-step fabricated Zr-supported, CaO-based pellets via graphite-moulding method for regenerable CO capture.

作者信息

Long Yun, Sun Jian, Mo Changnian, She Xiangyao, Zeng Pengxin, Xia Hongqiang, Zhang Jubing, Zhou Zijian, Nie Xinming, Zhao Chuanwen

机构信息

Jiangsu Provincial Key Laboratory of Materials Cycling and Pollution Control, School of Energy and Mechanical Engineering, Nanjing Normal University, Nanjing 210042, China.

Jiangsu Provincial Key Laboratory of Materials Cycling and Pollution Control, School of Energy and Mechanical Engineering, Nanjing Normal University, Nanjing 210042, China.

出版信息

Sci Total Environ. 2022 Dec 10;851(Pt 1):158357. doi: 10.1016/j.scitotenv.2022.158357. Epub 2022 Aug 28.

Abstract

Calcium looping (CaL) belongs to a promising high-temperature CO capture technology because of adopting cheap and extensive source CaO-based sorbents. However, CaO-based sorbents are prone to occur the issues of sintering and elutriation in the fluidized-bed reactors. To further enhance the practicability, the Zr-supported, CaO-based sorbent pellets were produced using the graphite-moulding method. Different synthesis modes (i.e., sol-gel, hydration-mixing, and wet-mixing) were compared for preparing CaO-based composite slurry before pelletization. Sol-gel is the promising synthesis mode to prepare Zr-supported, CaO-based pellets with outstanding CO capture performance due to achieving a more uniform distribution of inert CaZrO spacer. Moreover, the Zr-based stabilizer content within sorbent pellets produced by the combined method of sol-gel and graphite-moulding was further studied. The higher content of Zr-based stabilizer promotes the enhancement of cyclic stability and mechanical strength of Zr-supported, CaO-based pellets. After 17 cycles, the sorbent pellets containing 20 wt% of Zr-based stabilizer display a high CaO carbonation conversion of 74.1 %. Moreover, CaO-based pellets with 20 wt% of Zr-based stabilizer possess a higher compression strength of 4.84 ± 1.08 MPa, which is as high as 1.8 times that of the pellets with 5 wt% of Zr-based stabilizer.

摘要

钙循环(CaL)由于采用廉价且来源广泛的基于CaO的吸附剂,属于一种很有前景的高温CO捕集技术。然而,基于CaO的吸附剂在流化床反应器中容易出现烧结和淘析问题。为了进一步提高实用性,采用石墨成型法制备了负载Zr的CaO基吸附剂颗粒。在造粒前,比较了不同的合成方式(即溶胶 - 凝胶法、水合混合法和湿混合法)来制备CaO基复合浆料。溶胶 - 凝胶法是制备具有优异CO捕集性能的负载Zr的CaO基颗粒的有前景的合成方式,因为它能使惰性CaZrO间隔物分布更均匀。此外,还进一步研究了通过溶胶 - 凝胶法和石墨成型法相结合制备的吸附剂颗粒中Zr基稳定剂的含量。较高含量的Zr基稳定剂促进了负载Zr的CaO基颗粒的循环稳定性和机械强度的提高。经过17次循环后,含有20 wt%Zr基稳定剂的吸附剂颗粒显示出74.1%的高CaO碳酸化转化率。此外,含有20 wt%Zr基稳定剂的CaO基颗粒具有4.84±1.08 MPa的较高抗压强度,这是含有5 wt%Zr基稳定剂颗粒抗压强度的1.8倍。

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