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    蛋壳源有机钙复合材料循环储能特性研究

    Preliminary study on energy release characteristics of eggshell derived organic CaO combined materials

    • 摘要: CaCO3/CaO资源丰富、价格低廉、储/释能容量大,是一种具有发展潜力的热化学储能材料,但多次循环后其储能容量快速衰减。基于废弃鸡蛋壳,经过提纯及净化处理,分别采用醋酸、柠檬酸和葡萄糖酸3种有机酸与提纯蛋壳制备相应的醋酸钙(DCA)、柠檬酸钙(DCCi)及葡萄糖酸钙(DCG),对其储能特性和释热效率及多次循环储能时结构特性和形貌特征的演化加以详细的研究,发现DCG煅烧形成的DCG-CaO有着最高的储能容量和放热效率,但其循环稳定性较差。为了提高DCG-CaO抗烧结性能和循环放热性能,采用溶胶−凝胶燃烧合成法(SGCS)掺杂不同质量比的Al2O3,对其循环释能特性研究显示,DCG-CaO/Al2O3质量比9∶1时循环储能容量和放热效率相对于无Al2O3负载的DCG-CaO有显著提高,但随着循环次数的增加,稍有降低且Al2O3与CaO交互作用也会损失部分CaO的储能容量。因此,基于9∶1质量比的DCG-CaO/Al2O3并进一步引入热容量更高的MgO,分别采用三步SGCS法制得DCG-CaO/MgO/Al2O3复合吸收剂,发现三步法制得的CaO复合吸收剂储能容量和放热效率分别稳定在2.59 kJ/g和90.55%,不仅具有更突出的储能容量和循环稳定性且避免了CaO与A2O3的交互作用,还具有极大的应用潜力和发展前景。

       

      Abstract: CaCO3/CaO is rich in resources, low in price, and has large energy storage/release capacity. It is a potential thermochemical energy storage material, but its energy storage capacity decays rapidly after multiple cycles. Based on the separation and purification treatment of egg shell waste, three organic acids (including acetic acid, citric acid and gluconic acid) and purified egg shells were used to prepare the corresponding calcium acetate (DCA), calcium citrate (DCCi) and calcium gluconate (DCG). A detailed study was conducted on its energy storage and heat release efficiency as well as the evolution of its structural and morphological characteristics during multiple cycles. It was found that DCG-CaO has the highest energy storage capacity and heat release efficiency, but its cycle stability is poor. In order to improve the sintering resistance and cyclic exothermic performance of DCG-CaO, the sol-gel combustion synthesis method (SGCS) was used to dope Al2O3 with different mass ratios. Research on its cyclic energy release showed that the optimized DCG-CaO/Al2O3 mass ratio was 9∶1, the cyclic energy storage capacity and heat release efficiency are significantly improved compared to DCG-CaO without Al2O3 load, but as the number of cycles increases, they decrease slightly and the interaction between Al2O3 and CaO will also lose part of the energy storage capacity of CaO. Therefore, based on the mass ratio of DCG-CaO/ Al2O3 as 9∶1 and further introduction of MgO with higher heat capacity, the DCG-CaO/MgO/Al2O3 composite was prepared by the wet mixing method of DCG and the three-step SGCS method with the corresponding nitrates. It was found that the energy storage capacity and heat release efficiency of the CaO composite absorbent prepared by the three-step method were stable at 2.59 kJ/g and 90.55% respectively. It not only has more outstanding energy storage capacity and cycle stability but also avoids the interaction between CaO and Al2O3. Therefore, it has great application potential and development prospect.

       

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