Study of the NaOH(s)–CO2(g) reaction creating value for industry: green natrite production, energy, and its potential in different sustainable scenarios
文献情報
Claudia Ruiz, Jorge Almarza
In this work, we present a comprehensive analysis of a solid-based NaOH technology for CO2 capture. After CO2 capture, high purity γ-Na2CO3 synthetic natrite is formed as demonstrated through exhaustive characterization using several chemical techniques (XRD, XPS, 13C and 23Na MAS-NMR, ATR-FTIR, and TGA), and additionally a DFTB computational analysis was performed. The use of solid NaOH could offer some technical advantages such as high exothermicity (3445 MJ per tCO2) and the production of high value carbonates (natrite). Furthermore, we consider either carbonate commercialization or regeneration of NaOH in our model. This novel technology has important advantages over currently available technologies regarding efficiency in capture and potential for heat exploitation. Additionally, environmental analysis reveals a negative LCA index (life cycle assessment index) for flue gas capture and the lowest operative costs for CO2 capture. Two sustainable models are proposed that not only focus on CO2 capture, but also on the sustainability of time. One model is based on sale of natrite, because the projections in the global market for carbonates will continue to increase, due to their non-traditional applications, e.g., in molten carbonate fuel cells, batteries and other technologies for generation and storage of energy. The second model considered NaOH-raw material regeneration, and pure CO2 released can be used in obtaining of synthetic fuel, food packaging, and other industrial chemical procedures, and in this respect the current global demand for CO2 is around 140 Mt per year.
おすすめジャーナル
関連文献
Astrochemistry of transition metals? The selected cases of [FeN]+, [FeNH]+ and [(CO)2FeN]+: pathways toward CH3NH2 and HNCO
DOI: 10.1039/C4CP03218G
Three-dimensional attosecond resonant stimulated X-ray Raman spectroscopy of electronic excitations in core-ionized glycine
Yu Zhang, Jason D. Biggs, Weijie Hua, Konstantin E. Dorfman, Shaul Mukamel
DOI: 10.1039/C4CP03361B
Mn-modified Bi2Ti2O7 photocatalysts: bandgap engineered multifunctional photocatalysts for hydrogen generation
Satyajit Gupta, Luis De Leon, Vaidyanathan (Ravi) Subramanian
DOI: 10.1039/C3CP55439B
Why the photocatalytic activity of Mo-doped BiVO4 is enhanced: a comprehensive density functional study
Kaining Ding, Bin Chen, Zhenxing Fang, Zhongfang Chen
DOI: 10.1039/C4CP01350F
Photoconversion of 6,13-α-diketopentacene in the crystalline phase
Katsuki Tanaka, Mariko Oe
DOI: 10.1039/C4CP01607F
Imaging and quantification of trans-membrane protein diffusion in living bacteria
Ernst L. M. Bank
DOI: 10.1039/C4CP00299G
Effects of hydrogen bonding interactions on the redox potential and molecular vibrations of plastoquinone as studied using density functional theory calculations
Ryota Ashizawa, Takumi Noguchi
DOI: 10.1039/C3CP54742F
Tin doping speeds up hole transfer during light-driven water oxidation at hematite photoanodes
Halina K. Dunn, Johann M. Feckl, Alexander Müller, Dina Fattakhova-Rohlfing, Samuel G. Morehead, Julian Roos, Laurence M. Peter, Christina Scheu, Thomas Bein
DOI: 10.1039/C4CP03946G
Unexpected effects of the alteration of structure and stability of myoglobin and hemoglobin in ammonium-based ionic liquids
Indrani Jha, Pankaj Attri, Pannuru Venkatesu
DOI: 10.1039/C3CP54398F
こちらもおすすめ
1-{3-[5-(エチルカルボンイル)-2,4-ジメチル-1H-ピロロール-3-基]プロパニル}ピペリジン-4-カルボン酸について、適用される法規ガイドラインは何ですか?
この化合物はCAS番号1142209-81-1であり、GHS分類では corrosive (腐食性物質) と classified (分類物質) として指定され...
2,2-二氟-1,3-ベンゾジオキサン-5-カルボキシlic酸とは何ですか?
2,2-二氟-1,3-ベンゾジオキサン-5-カルボキシlic酸は、CAS番号656-46-2の化合物で、化学式はC8H4F2O4です。この化合物は白色の結晶性粉...
8-氯-4-色原酮の代替品はありますか?
8-氯-4-色原酮(CAS番号: 49701-11-3)の代替品には、他の色原酮類似物や、構造が似ている化合物があります。例えば、8-メチル-4-色原酮や、他の...
エチル6,6-ジメチル-4,5,6,7-テトラヒドロ-1H-インドアゼー-3-カルボキシレートとは何ですか?
エチル6,6-ジメチル-4,5,6,7-テトラヒドロ-1H-インドアゼー-3-カルボキシレートは、CAS番号1233243-56-5を有する化合物です。これは有...
4-叔丁基-6-氯-嘧啶に適用される法規ガイドラインは何ですか?
4-叔丁基-6-氯-嘧啶はCAS番号3435-24-3で、GHS分類では毒性物質とみなし、GHSの危険性分類が適用されます。REACH規則では登録が必要で、Eu...
維库溴铵杂质Bはどのように合成されますか?
維库溴铵杂质Bは、アンドロステンデンから始まり、一連の合成反応、包括的な選択性と高い収率で合成されます。具体的には、ブロミド化、酸化、ジマーゼ反応、アミド化など...
2-(4-氟苄基)-吡咯烷の物理化学的性質は何ですか?
CAS番号350017-04-8の2-(4-氟苄基)-吡咯烷は、結晶性の白色粉末です。分子量は199.17 g/molで、水に溶けにくいです。化学反応では比較的...
3-喹啉甲醛(2-チロール-8-エチル)は安全ですか?
3-喹啉甲醛(2-チロール-8-エチル)は一定の毒性を持つため、取扱には注意が必要です。使用する際は適切な防護具を着用し、密閉容器で保管・搬送し、直接的な接触を...
エチル3-(ヒドロキシメチル)-1H-ピロール-2-カルボキシレートはどのように保存すればよいですか?
エチル3-(ヒドロキシメチル)-1H-ピロール-2-カルボキシレートは、室温(25℃)以下で保存し、直射日光を避け、乾燥した環境で保管することが推奨されます。ま...















