-
1
-
-
85092209816
-
Liquid-fuel synthesis using nuclear power in a mobile energy depot system
-
Beller, M., Steinberg, M., Liquid-fuel synthesis using nuclear power in a mobile energy depot system. Trans. Am. Nucl. Soc., 8, 1965.
-
(1965)
Trans. Am. Nucl. Soc.
, vol.8
-
-
Beller, M.1
Steinberg, M.2
-
2
-
-
0003906662
-
Carbon Dioxide Extraction from Air: Is it an Option? Technical Report LA-UR-99–583
-
Los Alamos National Laboratory
-
Lackner, K.S., Ziock, H.-J., Grimes, P., Carbon Dioxide Extraction from Air: Is it an Option? Technical Report LA-UR-99–583. 1999, Los Alamos National Laboratory.
-
(1999)
-
-
Lackner, K.S.1
Ziock, H.-J.2
Grimes, P.3
-
3
-
-
84994491900
-
The promise of negative emissions
-
Lackner, K.S., The promise of negative emissions. Science, 354, 2016, 714.
-
(2016)
Science
, vol.354
, pp. 714
-
-
Lackner, K.S.1
-
4
-
-
84855995404
-
2 with Chemicals: A Technology Assessment for the APS Panel on Public Affairs
-
American Physical Society
-
2 with Chemicals: A Technology Assessment for the APS Panel on Public Affairs. 2011, American Physical Society.
-
(2011)
-
-
Socolow, R.1
Desmond, M.2
Aines, R.3
Blackstock, J.4
Bolland, O.5
Kaarsberg, T.6
Lewis, N.7
Mazzotti, M.8
Pfeffer, A.9
Sawyer, K.10
-
7
-
-
85049771328
-
Carbon Dioxide Removal Options: A Literature Review Identifying Carbon Removal Potentials and Costs
-
University of Michigan Energy Institute Available at:
-
Martin, D., Johnson, K., Stolberg, A., Zhang, X., De Young, C., Carbon Dioxide Removal Options: A Literature Review Identifying Carbon Removal Potentials and Costs. 2018, University of Michigan Energy Institute Available at: http://energy.umich.edu/research/publications/carbon-dioxide-removal-options-literature-review-identifying-carbon-removal.
-
(2018)
-
-
Martin, D.1
Johnson, K.2
Stolberg, A.3
Zhang, X.4
De Young, C.5
-
9
-
-
35948973258
-
2 from the Air
-
Mass. Inst. Technol. Lab. Energy Environ. Publ. No LFEE 2
-
2 from the Air. 2003, Mass. Inst. Technol. Lab. Energy Environ. Publ. No LFEE 2.
-
(2003)
-
-
Herzog, H.1
-
10
-
-
84861537580
-
Carbon dioxide capture from air: a simple analysis
-
Brandani, S., Carbon dioxide capture from air: a simple analysis. Energy Environ. 23 (2012), 319–328.
-
(2012)
Energy Environ.
, vol.23
, pp. 319-328
-
-
Brandani, S.1
-
11
-
-
85021266448
-
Assessment of reasonable opportunities for direct air capture
-
Wilcox, J., Psarras, P.C., Liguori, S., Assessment of reasonable opportunities for direct air capture. Environ. Res. Lett., 12, 2017, 065001.
-
(2017)
Environ. Res. Lett.
, vol.12
, pp. 065001
-
-
Wilcox, J.1
Psarras, P.C.2
Liguori, S.3
-
12
-
-
64049094848
-
An idealized assessment of the economics of air capture of carbon dioxide in mitigation policy
-
Pielke, R.A., An idealized assessment of the economics of air capture of carbon dioxide in mitigation policy. Environ. Sci. Policy 12 (2009), 216–225.
-
(2009)
Environ. Sci. Policy
, vol.12
, pp. 216-225
-
-
Pielke, R.A.1
-
13
-
-
79955364585
-
Feasibility of Air Capture
-
Massachusetts Institute of Technology
-
Ranjan, M., Feasibility of Air Capture. 2010, Massachusetts Institute of Technology.
-
(2010)
-
-
Ranjan, M.1
-
14
-
-
84876681590
-
2 with chemicals: optimization of a two-loop hydroxide carbonate system using a countercurrent air-liquid contactor
-
2 with chemicals: optimization of a two-loop hydroxide carbonate system using a countercurrent air-liquid contactor. Clim. Change 118 (2013), 119–135.
-
(2013)
Clim. Change
, vol.118
, pp. 119-135
-
-
Mazzotti, M.1
Baciocchi, R.2
Desmond, M.J.3
Socolow, R.H.4
-
15
-
-
42149139391
-
Carbon dioxide capture from atmospheric air using sodium hydroxide spray
-
Stolaroff, J.K., Keith, D.W., Lowry, G.V., Carbon dioxide capture from atmospheric air using sodium hydroxide spray. Environ. Sci. Technol. 42 (2008), 2728–2735.
-
(2008)
Environ. Sci. Technol.
, vol.42
, pp. 2728-2735
-
-
Stolaroff, J.K.1
Keith, D.W.2
Lowry, G.V.3
-
19
-
-
84864220099
-
2 from the atmosphere: rationale and process design considerations
-
B. Launder J.M.T. Thompson Cambridge University Press
-
2 from the atmosphere: rationale and process design considerations. Launder, B., Thompson, J.M.T., (eds.) Geo-Engineering Climate Change: Environmental Necessity or Pandora's Box?, 2010, Cambridge University Press, 107–126.
-
(2010)
Geo-Engineering Climate Change: Environmental Necessity or Pandora's Box?
, pp. 107-126
-
-
Keith, D.1
Heidel, K.2
Cherry, R.3
-
20
-
-
79960963821
-
Moisture swing sorbent for carbon dioxide capture from ambient air
-
Wang, T., Lackner, K.S., Wright, A., Moisture swing sorbent for carbon dioxide capture from ambient air. Environ. Sci. Technol. 45 (2011), 6670–6675.
-
(2011)
Environ. Sci. Technol.
, vol.45
, pp. 6670-6675
-
-
Wang, T.1
Lackner, K.S.2
Wright, A.3
-
21
-
-
70349297250
-
Capture of carbon dioxide from ambient air
-
Lackner, K.S., Capture of carbon dioxide from ambient air. Eur. Phys. J. Spec. Top. 176 (2009), 93–106.
-
(2009)
Eur. Phys. J. Spec. Top.
, vol.176
, pp. 93-106
-
-
Lackner, K.S.1
-
22
-
-
33645337734
-
Capturing carbon dioxide directly from the atmosphere
-
Zeman, F.S., Lackner, K.S., Capturing carbon dioxide directly from the atmosphere. World Resour. Rev. 16 (2004), 157–172.
-
(2004)
World Resour. Rev.
, vol.16
, pp. 157-172
-
-
Zeman, F.S.1
Lackner, K.S.2
-
24
-
-
85092208938
-
-
(1953). Letter. Available at: Accessed 10 January.
-
Rickover, H. (1953). Letter. Available at: http://ecolo.org/documents/documents_in_english/Rickover.pdf. Accessed 10 January, 2018.
-
(2018)
-
-
Rickover, H.1
-
25
-
-
33748788805
-
Process design and energy requirements for the capture of carbon dioxide from air
-
Baciocchi, R., Storti, G., Mazzotti, M., Process design and energy requirements for the capture of carbon dioxide from air. Chem. Eng. Process. Process Intensif. 45 (2006), 1047–1058.
-
(2006)
Chem. Eng. Process. Process Intensif.
, vol.45
, pp. 1047-1058
-
-
Baciocchi, R.1
Storti, G.2
Mazzotti, M.3
-
26
-
-
85092209900
-
-
Keith, D.W. (2014). United States Patent: 8728428-Recovering a caustic solution via calcium carbonate crystal aggregates. Filed March 13, 2013, and issued May 20.
-
Heidel, K.R., Ritchie, J.A., Kainth, A.P.S., and Keith, D.W. (2014). United States Patent: 8728428-Recovering a caustic solution via calcium carbonate crystal aggregates. Filed March 13, 2013, and issued May 20, 2014.
-
(2014)
-
-
Heidel, K.R.1
Ritchie, J.A.2
Kainth, A.P.S.3
-
27
-
-
85092210043
-
-
(2017). United States Patent: 9637393-Recovering a caustic solution via calcium carbonate crystal aggregates. Filed May 19, 2014, and issued May 2.
-
Heidel, K.R., Keith, D.W., Ritchie, J.A., Vollendorf, N., and Fessler, E. (2017). United States Patent: 9637393-Recovering a caustic solution via calcium carbonate crystal aggregates. Filed May 19, 2014, and issued May 2, 2017.
-
(2017)
-
-
Heidel, K.R.1
Keith, D.W.2
Ritchie, J.A.3
Vollendorf, N.4
Fessler, E.5
-
28
-
-
85092210009
-
A Carbon Dioxide Absorption Performance Evaluation for Capture from Ambient Air
-
University of Calgary
-
Holmes, G., A Carbon Dioxide Absorption Performance Evaluation for Capture from Ambient Air. 2010, University of Calgary.
-
(2010)
-
-
Holmes, G.1
-
29
-
-
7444265781
-
Absorption of carbon dioxide by sodium hydroxide solutions in a packed column
-
Tepe, J.B., Dodge, B.F., Absorption of carbon dioxide by sodium hydroxide solutions in a packed column. Trans. Am. Inst. Chem. Eng. 39 (1943), 255–276.
-
(1943)
Trans. Am. Inst. Chem. Eng.
, vol.39
, pp. 255-276
-
-
Tepe, J.B.1
Dodge, B.F.2
-
30
-
-
0006594144
-
Removal of carbon dioxide from atmospheric air
-
Spector, N.A., Dodge, B.F., Removal of carbon dioxide from atmospheric air. Trans. Am. Inst. Chem. Eng. 42 (1946), 827–848.
-
(1946)
Trans. Am. Inst. Chem. Eng.
, vol.42
, pp. 827-848
-
-
Spector, N.A.1
Dodge, B.F.2
-
31
-
-
0001967928
-
2 absorption in alkaline solutions—II: absorption in a packed column and tests of surface-renewal models
-
2 absorption in alkaline solutions—II: absorption in a packed column and tests of surface-renewal models. Chem. Eng. Sci. 18 (1963), 63–72.
-
(1963)
Chem. Eng. Sci.
, vol.18
, pp. 63-72
-
-
Danckwerts, P.V.1
Kennedy, A.M.2
Roberts, D.3
-
32
-
-
84880880044
-
Regimes of mass transfer with chemical reaction
-
Astarita, G., Regimes of mass transfer with chemical reaction. Ind. Eng. Chem. 58 (1966), 18–26.
-
(1966)
Ind. Eng. Chem.
, vol.58
, pp. 18-26
-
-
Astarita, G.1
-
33
-
-
35949001184
-
2 capture from ambient air
-
2 capture from ambient air. Environ. Sci. Technol. 41 (2007), 7558–7563.
-
(2007)
Environ. Sci. Technol.
, vol.41
, pp. 7558-7563
-
-
Zeman, F.1
-
34
-
-
85092210603
-
-
(2015). United States Patent: 9095813. Carbon dioxide capture method and facility. Filed August 21, 2009, and issued August 4.
-
Keith, D., Mahmoudkhani, M., Biglioli, A., Hart, B., Heidel, K., and Foniok, M. (2015). United States Patent: 9095813. Carbon dioxide capture method and facility. Filed August 21, 2009, and issued August 4, 2015.
-
(2015)
-
-
Keith, D.1
Mahmoudkhani, M.2
Biglioli, A.3
Hart, B.4
Heidel, K.5
Foniok, M.6
-
35
-
-
0004239042
-
Chemistry of Water Treatment
-
Second Edition CRC Press
-
Faust, S.D., Aly, O.M., Chemistry of Water Treatment. Second Edition, 1998, CRC Press.
-
(1998)
-
-
Faust, S.D.1
Aly, O.M.2
-
36
-
-
85092211392
-
Carbon Engineering
-
Harvard Business School
-
Lassiter, J., Misra, S., Carbon Engineering. 2013, Harvard Business School.
-
(2013)
-
-
Lassiter, J.1
Misra, S.2
-
37
-
-
65549085359
-
Cold flow model study on a dual circulating fluidized bed (DCFB) system for chemical looping processes
-
Pröll, T., Rupanovits, K., Kolbitsch, P., Bolhàr-Nordenkampf, J., Hofbauer, H., Cold flow model study on a dual circulating fluidized bed (DCFB) system for chemical looping processes. Chem. Eng. Technol. 32 (2009), 418–424.
-
(2009)
Chem. Eng. Technol.
, vol.32
, pp. 418-424
-
-
Pröll, T.1
Rupanovits, K.2
Kolbitsch, P.3
Bolhàr-Nordenkampf, J.4
Hofbauer, H.5
-
38
-
-
85092209415
-
-
Rossi, R.A. United States Patent application: 0170327421. High Temperature Hydrator (A1). Filed May 10 and issued A1.
-
Heidel, K.R. and Rossi, R.A. United States Patent application: 0170327421. High Temperature Hydrator (A1). Filed May 10, 2017, and issued A1.
-
(2017)
-
-
Heidel, K.R.1
-
40
-
-
84898736130
-
Outdoor prototype results for direct atmospheric capture of carbon dioxide
-
Holmes, G., Nold, K., Walsh, T., Heidel, K., Henderson, M.A., Ritchie, J., Klavins, P., Singh, A., Keith, D.W., Outdoor prototype results for direct atmospheric capture of carbon dioxide. Energy Procedia, 2013, 6079–6095, 10.1016/j.egypro.2013.06.537.
-
(2013)
Energy Procedia
, pp. 6079-6095
-
-
Holmes, G.1
Nold, K.2
Walsh, T.3
Heidel, K.4
Henderson, M.A.5
Ritchie, J.6
Klavins, P.7
Singh, A.8
Keith, D.W.9
-
41
-
-
85092211283
-
-
CDC - NIOSH pocket guide to chemical hazards—potassium hydroxide. Available at:
-
CDC - NIOSH pocket guide to chemical hazards—potassium hydroxide. Available at: https://www.cdc.gov/niosh/npg/npgd0523.html.
-
-
-
-
43
-
-
85092209894
-
-
KBR. Front end loading process. Available at:
-
KBR. Front end loading process. Available at: https://www.kbr.com/Documents/Onshore%20Refining%20Handouts/FrontEndLoadingProcessAndDeliverables_final.pdf.
-
-
-
-
44
-
-
84880346279
-
2 capture and storage cost estimates
-
2 capture and storage cost estimates. Int. J. Greenh. Gas Control 17 (2013), 488–503.
-
(2013)
Int. J. Greenh. Gas Control
, vol.17
, pp. 488-503
-
-
Rubin, E.S.1
Short, C.2
Booras, G.3
Davison, J.4
Ekstrom, C.5
Matuszewski, M.6
McCoy, S.7
-
45
-
-
84951335151
-
2 emissions
-
2 emissions. Nat. Clim. Change 6 (2016), 42–50.
-
(2016)
Nat. Clim. Change
, vol.6
, pp. 42-50
-
-
Smith, P.1
Davis, S.J.2
Creutzig, F.3
Fuss, S.4
Minx, J.5
Gabrielle, B.6
Kato, E.7
Jackson, R.B.8
Cowie, A.9
Kriegler, E.10
-
46
-
-
0023859585
-
Kinetics of reaction between carbon dioxide and hydroxyl ions in aqueous electrolyte solutions
-
Pohorecki, R., Moniuk, W., Kinetics of reaction between carbon dioxide and hydroxyl ions in aqueous electrolyte solutions. Chem. Eng. Sci. 43 (1988), 1677–1684.
-
(1988)
Chem. Eng. Sci.
, vol.43
, pp. 1677-1684
-
-
Pohorecki, R.1
Moniuk, W.2
-
47
-
-
84962183977
-
Carbon emission intensity in electricity production: a global analysis
-
Ang, B.W., Su, B., Carbon emission intensity in electricity production: a global analysis. Energy Policy 94 (2016), 56–63.
-
(2016)
Energy Policy
, vol.94
, pp. 56-63
-
-
Ang, B.W.1
Su, B.2
-
48
-
-
85092210987
-
-
CMU. US Power Sector Emissions. CMU Power Sector Carbon Index. Available at:
-
CMU. US Power Sector Emissions. CMU Power Sector Carbon Index (2018). Available at: https://emissionsindex.org/.
-
(2018)
-
-
-
49
-
-
85092209723
-
-
Carnegie Mellon University Green Design Institute. Economic Input-Output Life Cycle Assessment (EIO-LCA), US 1997 Industry Benchmark model. Available at:
-
Carnegie Mellon University Green Design Institute. Economic Input-Output Life Cycle Assessment (EIO-LCA), US 1997 Industry Benchmark model. (2008). Available at: http://www.eiolca.net/.
-
(2008)
-
-
-
50
-
-
85092211281
-
-
Ritchie, J.A. (2014). United States Patent: 8871008. Target gas capture. Filed September 7, 2012, and issued October 28
-
Henderson, M.A., Keith, D.W., Kainth, A.P.S., Heidel,K.R., and Ritchie, J.A. (2014). United States Patent: 8871008. Target gas capture. Filed September 7, 2012, and issued October 28,2014.
-
(2014)
-
-
Henderson, M.A.1
Keith, D.W.2
Kainth, A.P.S.3
Heidel, K.R.4
|