Maheshwari, N., Kumar, M., Thakur, I. S., & Srivastava, S. (2017).
Recycling of carbon dioxide by free air CO 2 enriched (FACE)
Bacillus sp. SS105 for enhanced production and optimization of
biosurfactant. Bioresource Technology, 242, 2–6.
Messner, P., & Sleytr, U. B. (1992). Crystalline bacterial cell-surface
layers. Advances in Microbial Physiology, 33, 213–275. ( Elsevier).
Miscione, G. P., Stenta, M., Spinelli, D., Anders, E., & Bottoni, A.
(2007). New computational evidence for the catalytic mechanism of
carbonic anhydrase. Theoretical Chemistry Accounts, 118, 193–201.
Mondal, B., Song, J., Neese, F., & Ye, S. (2015). Bio-inspired
mechanistic insights into CO 2 reduction. Current Opinion in
Chemical Biology, 25, 103–109.
More, T., Yadav, J. S. S., Yan, S., Tyagi, R. D., & Surampalli, R. Y.
(2014). Extracellular polymeric substances of bacteria and their
potential environmental applications. Journal of Environmental
Management, 144, 1–25.
Moura, J. J., Brondino, C. D., Trincão, J., & Romao, M. J. (2004). Mo
and W bis-MGD enzymes: Nitrate reductases and formate dehydrogenases. JBIC Journal of Biological Inorganic Chemistry, 9,
791–799.
Mushtaq, M., Tan, I. M., Ismail, L., Nadeem, M., Sagir, M., Azam, R.,
& Hashmet, R. (2014a). Influence of PZC (point of zero charge) on
the static adsorption of anionic surfactants on a Malaysian
sandstone. Journal of Dispersion Science and Technology, 35(3),
343–349.
Mushtaq, M., Tan, I. M., Ismail, L., Lee, S. Y. C., Nadeem, M., &
Sagir, M. (2014b). Oleate ester-derived nonionic surfactants:
Synthesis and cloud point behavior studies. Journal of Dispersion
Science and Technology, 35(3), 322–328.
Mushtaq, M., Tan, I. M., Nadeem, M., Devi, C., Lee, S. Y. C., & Sagir,
M. (2014c). A convenient route for the alkoxylation of biodiesel
and its influence on cold flow properties. International Journal of
Green Energy, 11(3), 267–279.
Mushtaq, M., Tan, I. M., Rashid, U., Sagir, M., & Mumtaz, M. (2015).
Effect of pH on the static adsorption of foaming surfactants on
Malaysian sandstone Arabian. Journal of Geosciences, 8(10),
8539–8548.
Obert, R., & Dave, B. C. (1999). Enzymatic conversion of carbon
dioxide to methanol: Enhanced methanol production in silica sol
−gel matrices. Journal of the American Chemical Society, 121,
12192–12193.
Olivier, J. G., Janssens-Maenhout, G., Muntean, M., & Peters,
J. (2012). Trends in global CO2 emissions; 2015 report the hague:
PBL Netherlands environmental assessment agency. Ispra: Joint
Research Centre.
Pachauri, R. K., Allen, M. R., Barros, V. R., Broome, J., Cramer, W.,
Christ, R., et al. (2014). Climate change 2014: Synthesis report.
Contribution of Working Groups I, II and III to the fifth assessment
report of the intergovernmental panel on climate change: Ipcc.
Peters, M., Koehler, B., Kuckshinrichs, W., Leitner, W., Markewitz, P.,
& Müller, T. E. (2011). Chemical technologies for exploiting and
recycling carbon dioxide into the value chain. Chemsuschem, 4,
1216–1240.
Ramanan, R., Kannan, K., Vinayagamoorthy, N., Ramkumar, K. M.,
Sivanesan, S. D., & Chakrabarti, T. (2009). Purification and characterization of a novel plant-type carbonic anhydrase from Bacillus
subtilis. Biotechnology and Bioprocess Engineering, 14, 32–37.
Reda, T., Plugge, C. M., Abram, N. J., & Hirst, J. (2008). Reversible
interconversion of carbon dioxide and formate by an electroactive
enzyme. Proceedings of the National Academy of Sciences, 105,
10654–10658.
Rittmann, S., Seifert, A., & Herwig, C. (2015). Essential prerequisites
for successful bioprocess development of biological CH4 production
from CO 2 and H2. Critical Reviews in Biotechnology, 35, 141–151.
Rosenberg, M. (1984). Bacterial adherence to hydrocarbons: A useful
technique for studying cell surface hydrophobicity. FEMS Microbiology Letters, 22, 289–295.
Sagir, M., & Talebian, S. H. (2020). Screening of CO 2 -philic
surfactants morphology for high temperature-pressure sandstone
reservoir conditions. Journal of Petroleum Science and Engineering, 186, 106789.
Sagir, M., Tan, I. M., Mushtaq, M., Ismail, L., Nadeem, M., Azam, M.,
& Hashmet, R. (2014a). Synthesis of a new CO 2 philic surfactant
for enhanced oil recovery applications. Journal of Dispersion
Science and Technology, 35(5), 647–654.
Sagir, M., Tan, I. M., Mushtaq, M., Ismail, L., Nadeem, M., Azam, M.,
Hashmet, R., & Rehan, M. (2014b). Novel surfactant for the
reduction of CO 2 /brine interfacial tension. Journal of Dispersion
Science and Technology, 35(3), 463–470.
Sagir, M., Tan, I. M., Mushtaq, M., & Nadeem, M. (2014c). CO 2
mobility and CO 2 /brine interfacial tension reduction by using a new
surfactant for EOR applications. Journal of Dispersion Science and
Technology, 35(11), 1512–1519. (Taylor & Francis Group).
Sagir, M., Tan, I. M., Mushtaq, M., & Talebian, S. H. (2014d). FAWAG
using CO 2 philic surfactants for CO 2 mobility control for enhanced
oil recovery applications SPE Saudi Arabia section technical
symposium and exhibition. Society of Petroleum Engineers.
Sagir, M., Tan, I. M., Mushtaq, M., Pervaiz, M., Tahir, M. S., &
Shahzad, K. (2016). CO 2 mobility control using CO 2 philic
surfactant for enhanced oil recovery. Journal of Petroleum Exploration and Production Technology, 6(3), 401–407.
Sagir, M., Mushtaq, M., Tahir, M. B., Tahir, M. S., Ullah, S., Shahzad,
K., & Rashid, U. (2018). CO 2 foam for enhanced oil recovery
(EOR) applications using low adsorption surfactant structure
Arabian. Journal of Geosciences, 11(24), 789.
Sagir, M., Mushtaq, M., Tahir, M. S., Tahir, M. B., & Shaik, A. R.
(2020). CO 2 Philic surfactants, switchable amine-based surfactants
and wettability alteration for EOR. Applications Surfactants for
Enhanced Oil Recovery Applications, 89–102.
Sahoo, P. C., Kumar, M., Puri, S., & Ramakumar, S. (2018). Enzyme
inspired complexes for industrial CO 2 capture: opportunities and
challenges. Journal of CO2 Utilization, 24, 419–429.
Schütte, H., Flossdorf, J., Sahm, H., & Kula, M. R. (1976). Purification
and properties of formaldehyde dehydrogenase and formate dehydrogenase from Candida boidinii. European Journal of Biochemistry, 62, 151–160.
Shahzad, K., Čuček, L., Sagir, M., Ali, N., Rashid, M. I., Nazir, R.,
Nizami, A. S., Al-Turaif, H. A., & Ismail, I. M. I. (2018). An
ecological feasibility study for developing sustainable street lighting
system. Journal of Cleaner Production, 175, 683–695.
Sharma, A., Bhattacharya, A., & Singh, S. (2009). Purification and
characterization of an extracellular carbonic anhydrase from
Pseudomonas fragi. Process Biochemistry, 44, 1293–1297.
Sharma, T., Sharma, S., Kamyab, H., & Kumar, A. (2020). Energizing
the CO 2 utilization by chemo-enzymatic approaches and potentiality
of carbonic anhydrases: A review. Journal of Cleaner Production,
247, 119138.
Sheikh, A. Q., Skinder, B. M., Ashok, K., & Ganai, B. A. (2014).
Terrestrial carbon sequestration as a climate change mitigation
activity. Journal of Pollution Effects & Control, 1–8.
Shen, J.-W., Shi, C.-W., & Xu, C.-P. (2013). Exopolysaccharides from
Pleurotus pulmonarius: Fermentation optimization, characterization
and antioxidant activity. Food Technology and Biotechnology, 51,
520–527.
Shi, J., Wang, X., Jiang, Z., Liang, Y., Zhu, Y., & Zhang, C. (2012).
Constructing spatially separated multienzyme system through
bioadhesion-assisted bio-inspired mineralization for efficient carbon
dioxide conversion. Bioresource Technology, 118, 359–366.
176
S. Saqib et al.
Recycling of carbon dioxide by free air CO 2 enriched (FACE)
Bacillus sp. SS105 for enhanced production and optimization of
biosurfactant. Bioresource Technology, 242, 2–6.
Messner, P., & Sleytr, U. B. (1992). Crystalline bacterial cell-surface
layers. Advances in Microbial Physiology, 33, 213–275. ( Elsevier).
Miscione, G. P., Stenta, M., Spinelli, D., Anders, E., & Bottoni, A.
(2007). New computational evidence for the catalytic mechanism of
carbonic anhydrase. Theoretical Chemistry Accounts, 118, 193–201.
Mondal, B., Song, J., Neese, F., & Ye, S. (2015). Bio-inspired
mechanistic insights into CO 2 reduction. Current Opinion in
Chemical Biology, 25, 103–109.
More, T., Yadav, J. S. S., Yan, S., Tyagi, R. D., & Surampalli, R. Y.
(2014). Extracellular polymeric substances of bacteria and their
potential environmental applications. Journal of Environmental
Management, 144, 1–25.
Moura, J. J., Brondino, C. D., Trincão, J., & Romao, M. J. (2004). Mo
and W bis-MGD enzymes: Nitrate reductases and formate dehydrogenases. JBIC Journal of Biological Inorganic Chemistry, 9,
791–799.
Mushtaq, M., Tan, I. M., Ismail, L., Nadeem, M., Sagir, M., Azam, R.,
& Hashmet, R. (2014a). Influence of PZC (point of zero charge) on
the static adsorption of anionic surfactants on a Malaysian
sandstone. Journal of Dispersion Science and Technology, 35(3),
343–349.
Mushtaq, M., Tan, I. M., Ismail, L., Lee, S. Y. C., Nadeem, M., &
Sagir, M. (2014b). Oleate ester-derived nonionic surfactants:
Synthesis and cloud point behavior studies. Journal of Dispersion
Science and Technology, 35(3), 322–328.
Mushtaq, M., Tan, I. M., Nadeem, M., Devi, C., Lee, S. Y. C., & Sagir,
M. (2014c). A convenient route for the alkoxylation of biodiesel
and its influence on cold flow properties. International Journal of
Green Energy, 11(3), 267–279.
Mushtaq, M., Tan, I. M., Rashid, U., Sagir, M., & Mumtaz, M. (2015).
Effect of pH on the static adsorption of foaming surfactants on
Malaysian sandstone Arabian. Journal of Geosciences, 8(10),
8539–8548.
Obert, R., & Dave, B. C. (1999). Enzymatic conversion of carbon
dioxide to methanol: Enhanced methanol production in silica sol
−gel matrices. Journal of the American Chemical Society, 121,
12192–12193.
Olivier, J. G., Janssens-Maenhout, G., Muntean, M., & Peters,
J. (2012). Trends in global CO2 emissions; 2015 report the hague:
PBL Netherlands environmental assessment agency. Ispra: Joint
Research Centre.
Pachauri, R. K., Allen, M. R., Barros, V. R., Broome, J., Cramer, W.,
Christ, R., et al. (2014). Climate change 2014: Synthesis report.
Contribution of Working Groups I, II and III to the fifth assessment
report of the intergovernmental panel on climate change: Ipcc.
Peters, M., Koehler, B., Kuckshinrichs, W., Leitner, W., Markewitz, P.,
& Müller, T. E. (2011). Chemical technologies for exploiting and
recycling carbon dioxide into the value chain. Chemsuschem, 4,
1216–1240.
Ramanan, R., Kannan, K., Vinayagamoorthy, N., Ramkumar, K. M.,
Sivanesan, S. D., & Chakrabarti, T. (2009). Purification and characterization of a novel plant-type carbonic anhydrase from Bacillus
subtilis. Biotechnology and Bioprocess Engineering, 14, 32–37.
Reda, T., Plugge, C. M., Abram, N. J., & Hirst, J. (2008). Reversible
interconversion of carbon dioxide and formate by an electroactive
enzyme. Proceedings of the National Academy of Sciences, 105,
10654–10658.
Rittmann, S., Seifert, A., & Herwig, C. (2015). Essential prerequisites
for successful bioprocess development of biological CH4 production
from CO 2 and H2. Critical Reviews in Biotechnology, 35, 141–151.
Rosenberg, M. (1984). Bacterial adherence to hydrocarbons: A useful
technique for studying cell surface hydrophobicity. FEMS Microbiology Letters, 22, 289–295.
Sagir, M., & Talebian, S. H. (2020). Screening of CO 2 -philic
surfactants morphology for high temperature-pressure sandstone
reservoir conditions. Journal of Petroleum Science and Engineering, 186, 106789.
Sagir, M., Tan, I. M., Mushtaq, M., Ismail, L., Nadeem, M., Azam, M.,
& Hashmet, R. (2014a). Synthesis of a new CO 2 philic surfactant
for enhanced oil recovery applications. Journal of Dispersion
Science and Technology, 35(5), 647–654.
Sagir, M., Tan, I. M., Mushtaq, M., Ismail, L., Nadeem, M., Azam, M.,
Hashmet, R., & Rehan, M. (2014b). Novel surfactant for the
reduction of CO 2 /brine interfacial tension. Journal of Dispersion
Science and Technology, 35(3), 463–470.
Sagir, M., Tan, I. M., Mushtaq, M., & Nadeem, M. (2014c). CO 2
mobility and CO 2 /brine interfacial tension reduction by using a new
surfactant for EOR applications. Journal of Dispersion Science and
Technology, 35(11), 1512–1519. (Taylor & Francis Group).
Sagir, M., Tan, I. M., Mushtaq, M., & Talebian, S. H. (2014d). FAWAG
using CO 2 philic surfactants for CO 2 mobility control for enhanced
oil recovery applications SPE Saudi Arabia section technical
symposium and exhibition. Society of Petroleum Engineers.
Sagir, M., Tan, I. M., Mushtaq, M., Pervaiz, M., Tahir, M. S., &
Shahzad, K. (2016). CO 2 mobility control using CO 2 philic
surfactant for enhanced oil recovery. Journal of Petroleum Exploration and Production Technology, 6(3), 401–407.
Sagir, M., Mushtaq, M., Tahir, M. B., Tahir, M. S., Ullah, S., Shahzad,
K., & Rashid, U. (2018). CO 2 foam for enhanced oil recovery
(EOR) applications using low adsorption surfactant structure
Arabian. Journal of Geosciences, 11(24), 789.
Sagir, M., Mushtaq, M., Tahir, M. S., Tahir, M. B., & Shaik, A. R.
(2020). CO 2 Philic surfactants, switchable amine-based surfactants
and wettability alteration for EOR. Applications Surfactants for
Enhanced Oil Recovery Applications, 89–102.
Sahoo, P. C., Kumar, M., Puri, S., & Ramakumar, S. (2018). Enzyme
inspired complexes for industrial CO 2 capture: opportunities and
challenges. Journal of CO2 Utilization, 24, 419–429.
Schütte, H., Flossdorf, J., Sahm, H., & Kula, M. R. (1976). Purification
and properties of formaldehyde dehydrogenase and formate dehydrogenase from Candida boidinii. European Journal of Biochemistry, 62, 151–160.
Shahzad, K., Čuček, L., Sagir, M., Ali, N., Rashid, M. I., Nazir, R.,
Nizami, A. S., Al-Turaif, H. A., & Ismail, I. M. I. (2018). An
ecological feasibility study for developing sustainable street lighting
system. Journal of Cleaner Production, 175, 683–695.
Sharma, A., Bhattacharya, A., & Singh, S. (2009). Purification and
characterization of an extracellular carbonic anhydrase from
Pseudomonas fragi. Process Biochemistry, 44, 1293–1297.
Sharma, T., Sharma, S., Kamyab, H., & Kumar, A. (2020). Energizing
the CO 2 utilization by chemo-enzymatic approaches and potentiality
of carbonic anhydrases: A review. Journal of Cleaner Production,
247, 119138.
Sheikh, A. Q., Skinder, B. M., Ashok, K., & Ganai, B. A. (2014).
Terrestrial carbon sequestration as a climate change mitigation
activity. Journal of Pollution Effects & Control, 1–8.
Shen, J.-W., Shi, C.-W., & Xu, C.-P. (2013). Exopolysaccharides from
Pleurotus pulmonarius: Fermentation optimization, characterization
and antioxidant activity. Food Technology and Biotechnology, 51,
520–527.
Shi, J., Wang, X., Jiang, Z., Liang, Y., Zhu, Y., & Zhang, C. (2012).
Constructing spatially separated multienzyme system through
bioadhesion-assisted bio-inspired mineralization for efficient carbon
dioxide conversion. Bioresource Technology, 118, 359–366.
176
S. Saqib et al.
