Dusselier M, Mascal M, Sels BF (2014) Top Curr Chem 353:1–40
Gallezot P (2012) Chem Soc Rev 41:1538–1558
Huber GW, Iborra S, Corma A (2006) Chem Rev 106:4044
[+]
Dusselier M, Mascal M, Sels BF (2014) Top Curr Chem 353:1–40
Gallezot P (2012) Chem Soc Rev 41:1538–1558
Huber GW, Iborra S, Corma A (2006) Chem Rev 106:4044
Corma Canos A, Iborra S, Velty A (2007) Chem. Rev. 107:2411–2502
Liao Y, Koelewijn S-F, Van den Bossche G, Van Aelst J, Van den Bosch S, Renders T, Navare K, Nicolaï T, Van Aelst K, Maesen M et al (2020) Science 367(6484):1385–1390
Catalán-Martínez D, Domine ME, Serra JM (2018) Fuel 212:353–363
Bozell JJ, Petersen GR (2010) Green Chem 12:539–554
Huber GW, Corma A (2007) Angew Chem Int Ed Engl 46:7184–7201
Budge JR, Attig TG, Pedersen SE (1995) Process for the hydrogenation of maleic acid to 1,4-butanediol, US Patent 5473086
Fagan PJ, Korovessi E, Manzer LE, Mehta R, Thomas SM (2003) Preparation of levulinic acid esters and formic acid esters from biomass and olefins, US Patent 085071
Coulson DR, Manzer LE, Herron N (2001) Process for the preparation of alpha-methylene lactones, US Patent 6313318
Manzer LE (2004) Appl Catal A Gen 272:249–256
Limayem A, Ricke SC (2012) Prog Energy Combust Sci 38:449–467
Habibi Y, Lucia LA, Rojas OJ (2010) Chem Rev 110:3479–3500
El-Zawawy WK, Ibrahim MM, Abdel-Fattah YR, Soliman NA, Mahmoud MM (2011) Carbohydr Polym 84:865–871
Villandier N, Corma A (2011) Chemsuschem 4:508–513
Ventura M, Cecilia JA, Rodríguez-Castellón E, Domine ME (2020) Green Chem 22:1393–1405
Perrard A, Gallezot P, Joly J-P, Durand R, Baljou C, Coq B, Trens P (2007) Appl Catal A Gen 331:100–104
Besson PGM (2001) From fine chemicals through heterogeneous catalysis. Wiley, Weinheim
Baudel HM, de Abreu CAM, Zaror CZ (2005) J Chem Technol Biotechnol 80:230
Antal MJJ, Mok WS, Richards GN (1990) Carbohydr Res 199:91–109
Cottier GDL (1991) Trends Herecyclic Chem 2:233
Motagamwala AH, Won W, Sener C, Alonso DM, Maravelias CT, Dumesic JA (2018) Sci Adv 4:eaap9722
“BIORIZON PLATFORM” can be found under https://www.biorizon.eu/research/
Shaw PE, Tatum JH, Berry RE (1967) Carbohydr Res 5:266–273
Ventura MED, Chávez-Sifontes M (2019) Curr Catal 8:20–40
Schutyser W, Renders T, Van den Bosch S, Koelewijn S-F, Beckham GT, Sels BF (2018) Chem Soc Rev 47:852–908
Mohd Azhar SH, Abdulla R, Jambo SA, Marbawi H, Gansau JA, Mohd Faik AA, Rodrigues KF (2017) Biochem.Biophys Rep 10:52–61
Aditiya HB, Mahlia TMI, Chong WT, Nur H, Sebayang AH (2016) Renew Sustain Energy Rev 66:631–653
D’Angelo SC, Dall’Ara A, Mondelli C, Pérez-Ramírez J, Papadokonstantakis S (2018) ACS Sustain Chem Eng 6:16563–16572
Lari GM, Pastore G, Haus M, Ding Y, Papadokonstantakis S, Mondelli C, Pérez-Ramírez J (2018) Energy Environ Sci 11:1012–1029
Datta R, Henry M (2006) J Chem Technol Biotechnol 81:1119–1129
Della Pina C, Falletta E, Rossi M (2011) Green Chem 13:1624–1632
Jiang X, Meng X, Xian M (2009) Appl Microbiol Biotechnol 82:995
David Y, Oh YH, Baylon MG, Baritugo K, Joo JC (2017) Appl Microbiol 53:411–451
Ji RY, Ding Y, Shi TQ, Lin L, Huang H, Gao Z, Ji XJ (2018) Front Microbiol 9:1–7
Brossmer C, Arntz D (2000) Process for the production of 1,3-propanediol, US Patent 6140543, to E. I. du Pont de Nemours and Company
Lam KT, Powell JP, Wieder PR (1997) Process for preparing 1,3-propanediol, WO Patent 9716250
Meng X, Abraham TW, Tsobanakis P (2006) Process for preparation of 1,3-propanediol, US Patent 7126034, to Cargill Incorporated
Mine Gungormusler-Yilmaz NA, Cicek N, Levin DB (2016) Crit. Rev. Biotechnol. 36:482–494
Serrano DP, Melero JA, Morales G, Iglesias J, Pizarro P (2018) Catal Rev Eng 60:1–70
Tang T, Qi F, Liu H, Liu D (2013) Biofuels 4:651–667
Vidra A, Németh A (2018) Period Polytech Chem Eng 62:156–166
Celińska E (2015) Biotechnol J 10:242–243
Kim C, Lee JH, Baek J, Kong DS, Na JG, Lee J, Sundstrom E, Park S, Kim JR (2020) Chemsuschem 17:1–11
Karp E, Beckham G, Vardon D, Eaton T (2018),Systems and Methods for Producing Nitriles, US Patent 2018346411, to Alliance for Sustainable Energy, LLC
Li Chao TT, Zhu Q, Cui Z, Wang B, Fang Y (2018) Chem. Eng. Sci. 183:288–294
Bomgardner MM (2020) Cargill gives biobased acrylic acid one more go, Chemical & Engineering News 98. Available at https://cen.acs.org/business/biobased-chemicals/Cargill-gives-biobased-acrylic-acid/98/i20 (accessed 5 June 2020)
Haas T, Meier M, Brossmer C, Arntz D (1998) Malonic Acid or Salt Preparation, DE Patent 19629372, to Evonik Operations GmbH
Zhang D, Hillmyer MA, Tolman WB (2004) Macromolecules 37:8198
Andreeßen B, Taylor N, Steinbüchela A (2014) Appl Environ Microbiol 80:6574–6582
Pinazo JM, Domine ME, Parvulescu V, Petru F (2015) Catal Today 239:17–24
Cukalovic A, Stevens CV (2008) Biofuels. Bioprod Bioref 2:505
Delhomme C, Weuster-Botz D, Kühn FE (2009) Green Chem 11:13
Sajo Mienda B, Mohd Salleh F (2017) AIMS Bioeng 4:418–430
Agarwal L, Isar J, Meghwanshi GK, Saxena RK (2006) J Appl Microbiol 100:1348–1354
Liu YP, Zheng P, Sun ZH, Ni Y, Dong JJ, Zhu LL (2008) Bioresour Technol 99:1736
Bradfield MFA, Mohagheghi A, Salvachúa D, Smith H, Black BA, Dowe N, Beckham GT, Nicol W (2015) Biotechnol Biofuels 8:181. https://doi.org/10.1186/s13068-015-0363-3
Lee PC, Lee SY, Chang H (2010) Biosyst Eng 33:465
Mazière A, Prinsen P, Garcia A, Luque R, Len C (2017) Bioprod Biorefining 11:908–931
Grotkjær T (2015) Fundam Bioeng 5:499–546
Datta R, Glassner DA, Jain MK, Roy JV (1992) Method for producing pyrrolidones from succinates from fermentation broths, US Patent 5168055, to BASF SE
Glassner DA, Datta R (1992) Process for the Production and Purification of Succinic Acid, US Patent 5143834
Huh YS, Jun Y-S, Hong YK, Song H, Lee SY, Hong WH (2006) Process Biochem 41:1461
Bechthold I, Bretz K, Kabasci S, Kopitzky R (2008) Chem Eng Technol 31:647
Ferone M, Raganati F, Olivieri G, Marzocchella A (2019) Crit Rev Biotechnol 39:571–586
Pillai UR, Sahle-Demessie E, Young D (2003) Appl Catal B 43:131
Lancia R, Vaccari A, Fumagalli C, Armbruster E (1997) Process for the production of gamma-butyrolactone, US Patent 5698713 to Lonza SPA
Zajacek JG, Shum WP (2000) Butanediol Production, US Patent 6127584, to Arco Chemical Technology, L.P.
Tanabe Y, Toriya J, Sato M, ShiragaK (1977) Process for preparing butanediol and/or butenediol, US Patent 4062900, to Mitsubishi Chemical Industries
Turner K, Sharif M, Rathmell C, Kippax JW, Carter AB, Scarlett J, Reason AJ, Harris N (1988),Process for the production of butane-1,4-diol, US Patent 4751334
De Thomas W, Taylor PD, Tomfohrde F (1992) Process for the production of gamma butyrolactone THF in predetermined amounts, US Patent 5149836, to ISP Investments Inc.
Budge JR, Attig TG, Pedersen SE (1995) Process for the hydrogenation of maleic acid to 1,4-butanediol, US Patent 5473086, to The Standard Oil Co.
Miya B (1973) A process for the production of tetrahydrofuran, DE Patent 2332906, to Kao Corp.
Chen LF, Guo P-J, Zhu L-J, Qiao M-H, Shen W, Xu H-L, Fan K-N (2009) Appl Catal A 356:129
Wegman RW, Bryant DR (1993) Hydrogenation with Cu-Al catalysts, US Patent 5191091, to Union Carbide Chemicals & Plastics Technology Corporation
Hara Y, Kusaka H, Inagaki H, Takahashi K, Wada K (2000) J Catal 194:188
Zhang Q, Wu Z, Xu L (1998) Ind Eng Chem Res 37:3525
Castiglioni GL, Gazzano M, Stefani G, Vaccari A (1993) Stud Surf Sci Catal 78:275
Suzuki S, Ichiki T, Ueno H (1994) Process for producing 1,4-butanediol and tetrahydrofuran, US Patent 5326889, to Tonen Corporation
Araya S, Hirano S, Hirano T, Takigawa S, Yamamoto T (1989) Production of gamma-butyrolactone, JP Patent 01143865
Broecker FJ, Schwarzmann M (1977) Manufacture of butanediol and/or tetrahydrofuran from maleic acid and/or succinic anhydride via γ-butyrolactone, US Patent 4048196, to BASF Aktiengesellschaft
Jeong H, Kim TH, Kim KI (2006) Fuel Process Technol 87:497
Hong UG, Hwang S, Seo JG, Yi J (2010) Catal Lett 138:28
Takeda Y, Tamura M, Nakagawa Y, Okumura K, Tomishige K (2016) Catal. Sci Technol 6:5668–5683
Huang J, Dai W-L, Li H, Fan K (2007) J Catal 252:69
Huang J, Dai W-L, Fan J (2009) J Catal 266:228
Budroni G, Corma A (2008) J Catal 257:403
Mabry MA, Prichard WW, Ziemecki SB (1985) Process for making tetrahydrofuran and 1,4-butanediol using Pd/Re hydrogenation catalyst, US Patent 4550185, to E.I. Du Pont de Nemours and Compan.
Ly BK, Tapin B, Epron F, Pinel C, Especel C, Besson M (2019) Catal Today 0–1
Di X, Li C, Zhang B, Qi J, Li W, Su D, Liang C (2017) Ind Eng Chem Res 56:4672–4683
Tooley PA, Black JR (1999) Ru, Sn/oxide catalyst and process for hydrogenation in acidic aqueous solution, US Patent 5985789
Bhattscharyya A, Maynard A (2006), US Patent 004212.
M. Matson (1990) Preparation of 2-pyrrolidone, US Patent 4904804, to Phillips Petroleum Co.
Hollstein EB (1974), Preparation of 2-pyrrolidone, US Patent 3812149, to Sun Research Development
White JF, Holladay JE, Zacher AA, Frye JG, Werpy TA (2014) Top Catal 57:1325–1334
Fischer W, Klein D, Künkel A, Pinkos R, Scholten E (2011) Method for producing pyrrolidones from succinates from fermentation broths, US Patent 8017790 B2
Oh IC, Kim CG, Lee DY, Kim IH, Kim JS, Kim SH, Hwang CG, Noh M, Hun J, Jung JS (2009) KR Patent 010864
Luque R, Lin CSK, Du C, Macquarrie DJ, Koutinas A, Wang R, Webb C (2009) Green Chem 11:193
“Ecoflex,” can be found under https://plastics-rubber.basf.com/global/en/performance_polymers/products/ecoflex.html
Landim LB, Miranda EO, de Araújo NA, Pinto JC, Cabral-Albuquerque ECM, Cunha S, Fialho RL (2019) J Clean Prod. https://doi.org/10.1016/j.jclepro.2019.117742
Zabihi F, Koeppe H, Achazi K, Hedtrich S, Haag R (2019) Biomacromol 20:1867–1875
Hu H, Zhang R, Jiang Y, Shi L, Wang J, Bin Ying W, Zhu J (2019) ACS Sustain Chem Eng 7:4255–4265
Delaunay S, Lapujade P, Engasser JM, Goergen JL (2002) J Ind Microbiol Biotechnol 28:333
Nampoothiri KM, Pandey A (1998) Bioresour Technol 63:101
Jyothi AN, Sasikiran K, Nambisan B, Balagopalan C (2005) Process Biochem 40:3576
Suresh S, Khan NS, Srivastava VC (2009) J Chem Reac Eng 7:A89
Hirasawa T, Shimizu H (2016) Ind Biotechnol Prod Process 339–360
Alharbi NS, Kadaikunnan S, Khaled JM, Almanaa TN, Innasimuthu GM, Rajoo B, Alanzi KF, Rajaram SK (2019) J King Saud Univ Sci. https://doi.org/10.1016/j.jksus.2019.11.034
Kumar R, Vikramachakravarthi D, Pal P (2014) Chem Eng Process Process Intensif 81:59–71
Werpy T, Bozell J, Petersen G, Aden A, Holladay J, White J, Manheim A, Elliot D, Lasure L, Jones S, et al (20040 Results of screening for potential candidates from sugars and synthesis gas
Holladay JE, Werpy TA, Muzatko DS (2004) Appl Biochem Biotechnol 113–116:857
Izumi Y, Akabori S, Fukawa H, Tatsumi S, Imaida M, Fukuda T (1965) Proc Intern Congr Catal 1965(2):1364
Izumi Y, Imaida M, Fukawa H, Akabori S (1963) Bull Chem Soc Jap 1:21
Adkins H, Billica HR (1948) J Am Chem Soc 70:3121–3125
Antons S (1998) Process for the preparation of optically active alcohols, US Patent 5731479, to Bayer Aktiengesellschaf
Antons S, Beitzke B (1996) Process for preparing optically active amino alcohols, US Patent 5536879, to Bayer Aktiengesellschaft
Bhandare SG, Vaidya PD (2017) Ind Eng Chem Res 56:3797–3803
Zhang W, Rao MY, Cheng ZJ, Zhu XY, Gao K, Yang J, Yang B, Liao XL (2015) Chem Pap 69:716–721
Le Nôtre J, Scott EL, Franssen MCR, Sanders JPM (2011) Green Chem 13:807–809
Beerthuis R, Rothenberg G, Shiju NR (2015) Green Chem 17:1341–1361
Xu X, But A, Wever R, Hollmann F (2019) ChemCatChem 1:1–5
De Schouwer F, Claes L, Claes N, Bals S, Degrève J, De Vos DE (2015) Green Chem 17:2263–2270
Suganuma S, Otani A, Joka S, Asako H, Takagi R, Tsuji E, Katada N (2019) Chemsuschem 12:1381–1389
Trant AG, Baddeley CJ (2011) J Phys Chem C 115:1025–1030
Yue YN, Meng WJ, Liu L, Hu QL, Wang H, Lu JX (2018) Electrochim Acta 260:606–613
Shih I-L, Van Y-T (2001) Biores Technol 79:207
Richard A, Margaritis A (2001) Crit Rev Biotechnol 21:219
Ajayeoba TA, Dula S, Ijabadeniyi OA (2019) Front Microbiol. https://doi.org/10.3389/fmicb.2019.00771
Müslüm Altun (2019) Trak Univ J Nat Sci 20:27–34
Cao M, Feng J, Sirisansaneeyakul S, Song C, Chisti Y (2018) Biotechnol Adv 36:1424–1433
Okabe M, Lies D, Kanamasa S (2009) Appl Microbiol Biotechnol 84:597
Gowda RR, Chen EYX (2019) Chemsuschem 12:973–977
Cunha da Cruz J (2018) Machado de Castro a, Camporese Sérvulo ef, 3 Biotech 8:1–15
Nemestóthy N, Komáromy P, Bakonyi P, Tóth AL, Tóth G, Gubicza L, Bélafi-Bakó K (2019) Waste Biomass Valorization. https://doi.org/10.1007/s12649-019-00729-3
Regestein L, Klement T, Grande P, Kreyenschulte D, Heyman B, Maßmann T, Eggert A, Sengpiel R, Wang Y, Wierckx N et al (2018) Biotechnol Biofuels 11:1–11
Steiger MG, Wierckx N, Blank LM, Mattanovich D, Sauer M (2016) Ind Biotechnol Prod Process 5:453–472
Yang J, Xu H, Jiang J, Zhang N, Xie J, Wei M (2019) J Zhao 4:135–142
Yahiro K, Takahama T, Park Y, Okabe M (1995) J Ferm Bioeng 79:506
Hevekerl A, Kuenz A, Vorlop KD (2014) Appl Microbiol Biotechnol 98:10005–10012
Liu X, Wang X, Liu Q, Xu G, Li X, Mu X (2016) Catal Today 274:88–93
Park DS, Abdelrahman OA, Vinter KP, Howe PM, Bond JQ, Reineke TM, Zhang K, Dauenhauer PJ, Sustain ACS (2018) Chem Eng 6:9394–9402
Spanjers CS, Schneiderman DK, Wang JZ, Wang J, Hillmyer MA, Zhang K, Dauenhauer PJ (2016) ChemCatChem 8:3031–3035
Abdelrahman OA, Park DS, Vinter KP, Spanjers CS, Ren L, Cho HJ, Zhang K, Fan W, Tsapatsis M, Dauenhauer PJ (2017) ACS Catal 7:1428–1431
Morais ARC, Dworakowska S, Reis A, Gouveia L, Matos CT, Bogdał D, Bogel-ŁUkasik R (2015) Catal Today 239:38–43
Veerabagu U, Jaikumar G, Fushen L (2019) J Polym Environ 27:2756–2768
Huang Q, Yu W, Lu F, Lu R, Si X, Gao J, Xu J (2019) Catal Today 319:197–205
Louven Y, Schute K, Palkovits R (2019) ChemCatChem 11:439–442
Haus MO, Louven Y, Palkovits R (2019) Green Chem 21:6268–6276
Chedid R, Melder J, Dostalek R, Pastre J, Tan A (2014) Process for preparing pyrrolidine, US Patent 0018547 A1, to BASF SE
Hass H, Jasne S, Moreau R (1984) Itaconamide Compounds and Methods of Preparation, US Patent 4480125, to Polaroid Corporation
Bohre A, Hočevar B, Grilc M, Likozar B (2019) Appl Catal B Environ. https://doi.org/10.1016/j.apcatb.2019.117889
Pirmoradi M, Kastner JR, Sustain ACS (2017) Chem Eng 5:1517–1527
Di X, Zhang Y, Fu J, Yu Q, Wang Z, Yuan Z, Sustain ACS (2020) Chem Eng 8:1805–1812
Pérocheau Arnaud S, Andreou E, Pereira Köster LVG, Robert T, Sustain ACS (2019) Chem Eng 8(3):1583–1590
Wang XC, Song YJ, Huang L, Wang H, Huang CP, Li CQ (2019) Catal. Sci Technol 9:1669–1679
Xu J, Cao F, Li T, Zhang S, Gao C, Wu Y (2016) J Surf Deterg 19:373–379
Sakthivel M, Franklin DS, Sudarsan S, Chitra G, Sridharan TB, Guhanathan S, Appl SN (2019) Sci 1:146. https://doi.org/10.1007/s42452-018-0156-y
Teleky BE, Vodnar DC (2019) Polymers (Basel) 11(6):1035. https://doi.org/10.3390/polym11061035
Trotta JT, Watts A, Wong AR, Lapointe AM, Hillmyer MA, Fors BP, Sustain ACS (2019) Chem Eng 7:2691–2701
Giacobazzi G, Gioia C, Colonna M, Celli A, Sustain ACS (2019) Chem Eng 7:5553–5559
Szöllosi G, Balazsik K, Bartok M (2007) Appl Catal A 319:193
Sahoo S, Kumar P, Lefebvre F, Halligudi SB (2008) J. Catal. 91:5
Guo R, Wang Y, Shan X, Han Y, Cao Z, Zheng H (2019) Carbon N Y 152:671–679
Quadri SAI, Das TC, Malik MS, Seddigi ZS, Farooqui M (2016) ChemistrySelect 1:4602–4606
Kasar SB, Thopate SR (2019) Curr Organocatal 6:231–237
Timokhin BV, Baransky VA, Eliseeva GD (1999) Russ Chem Rev 68:73–84
Rangarajan S, Bhan A, Daoutidis P (2010) Ind Eng Chem Res 49:10459–10470
Shilling WL (1996) US Patent 32355562
Fitspatrick SW (1990) Lignocellulose degradation to furfural and levulinic acid, US Patent 4897497, to Biofine Incorporated
Fitzpatrick SW (2002) Final technical report commercialization of the biofine technology for levulinic acid production from paper sludge, BioMetics Inc., Report No DOE/CE/41178, (http://www.Osti.Gov/Bridge), US Department Of Energy: Washington DC
Manzer LE (2004) Biomass derivatives: a sustainable source of chemicals; National Science Foundation Workshop: Catalysis for Renewables Conversion, National Science Foundation: Washington, DC
Schraufnagel RA, Rase HF (1975) Ind Eng Chem Prod Res Dev 14:40
Elliott DC, Frye JG (1999), US Patent 5883266, to Battelle Memorial Institute
Luque R, Clark JH, Yoshida K (2009) Chem Commun 1:5305
Luque R, Clark JH (2010) Catal Commun 1:928
Manzer LE (2002) WO Patent 2002074760.
Manzer LE (2003) US Patent 20030055270.
Dunlop AP, Madden J (1957) US Patent 2786852
Manzer LE, Hutchenson KW (2003) US Patent 2004254384
Kopetzki D, Antonietti M (2010) Green Chem 12:656
Deng L, Li J, Lai D-M, Fu Y, Guo Q-X (2009) Angew Chem Int Ed 48:6529
Puts RD, Brandenburg C, Tarburton KR (2002) US Patent 2002143195
Coulson DR, Manzen LE, Herron N (2001) US Patent 6313318
Manzer LE (2004) Appl Catal A 272:249
Corma A, Iborra S (2007) Chem Rev 107:2411
Lourvanij K, Rorrer GL (1994) Appl Catal A 109:147
Manzer LE (2005) US Patent 0210738 A1, to DuPont
Manzer LE (2005) US Patent 0171374
Rae A, Hodgson W (2003) WO Patent 002696 A1, to AAE Technologies International PLC
Crook LR, Jansen BA, Spencer KE, Watson DH (1996) GB Patent 1036694
Manzer LE, Herkes FE (2004) US Patent 2004192933
Dunlop AP, Smith S (1955) US Patent 6743819
Sonoda N, Tsutsumi S (1963) Bull Chem Soc Jpn 36:1311
Pileidis FD, Titirici M-M (2016) Chemsuschem 9:562–582
Hayes DJ (2009) Catal. Today 1:145
Mehdi H, Fabos V, Tuba R, Bodor A, Mika LT (2008) Top Catal 48:49130
Bianchi M, Menchi G, Francalanci F, Piacenti F, Matteoli U, Frediani P (1980) J Organomet Chem 1:188
Geilen FMA, Engendahl B, Harwardt A, Marquardt W, Klankermayer J (2010) Angew Chem Int Ed 49:5510
Serrano-Ruiz JC, West RM, Dumesic JA (2010) Annu Rev Chem Biomol Eng 1:79
Simonetti DA, Dumesic JA (2009) Catal Rev 51:441
Serrano-Ruiz JC, Wang D (2010) Green Chem 12:574
Horvath IT, Mehdi H, Fabos V, Boda L (2008) Green Chem 10:238
West RM, Liu ZL, Peter M (2008) Chemsuschem 1:417
Kottke RH (1998) Kirk-Othmer Encyclopedia of Chemical Technology. In: Kroschwitz J, Howe-Grant M (eds) Organic reaction. Wiley, New York
Delbecq F, Wang Y, Muralidhara A, El Ouardi K, Marlair G, Len C (2018) Front Chem 6:146
Yamaguchi A, Mimura N, Shirai M, Sato O (2019) Acs Sustain Chem Eng 7:10445–10451
Chheda B (2016) US Patent 025673 A1
Yu SJ, Park N, Park ED, Yoo MJ (2015) J Ind Eng Chem 21:350–355
Chen H, Qin L, Yu B (2015) Biomass Bioenerg 73:77–83
Li X, Yang J, Xu R, Lu L, Kong F, Liang M, Jiang L, Nie S, Si C (2019) Ind Crops Prod 135:196–205
Bernal HG, Galletti AMR, Garbarino G, Busca G, Finocchio E (2015) Appl Catal A Gen 502:388–398
Doiseau A-C, Rataboul F, Burel L, Essayem N (2014) Catal Today 226:176–184
Zhang L, Yu H, Wang P (2013) Bioresour Technol 136:515–521
Gómez Millán G, Phiri J, Mäkelä M, Maloney T, Balu AM, Pineda A, Llorca J, Sixta H (2019) Appl Catal A Gen 585:117180
McEvoy HS, Shalit H (1964) US Patent 3374184
Zheng H-Y, Zhu Y-L, Teng B-T, Bai Z-Q, Zhang C-H, Xiang H-W, Li Y-W (2006) J Mol Catal A Chem 246:18–23
Rao RS, Baker RTK, Vannice MA (1999) Catal Lett 60:51–57
Nagaraja BM, Siva Kumar V, Shasikala V, Padmasri AH, Sreedhar B, David Raju B, Rama Rao KS (2003) Catal Commun 4:287–293
Hao X-Y, Zhou W, Wang J-W, Zhang Y-Q, Liu S (2005) Chem. Lett. 34:1000–1001
Wu J, Shen Y, Liu C, Wang H, Geng C, Zhang Z (2005) Catal Commun 6:633–637
Kijeński J, Winiarek P, Paryjczak T, Lewicki A, Mikołajska A (2002) Appl Catal A Gen 233:171–182
Frainier LJ, FinebergH (1980) DE Patent 3007139
Hinnekens H (1984) DE Patent, 3425758
De Thomas WR, Hort EV (1978) US Patent 4153578
Baijun L, Lianhai L, Bingchun W, Tianxi C (1998) Katsuyoshi Iwatani. Appl Catal A Gen 171:117–122
Li H, Luo H, Zhuang L, Dai W, Qiao M (2003) J Mol Catal A Chem 203:267–275
Chen X, Li H, Luo H, Qiao M (2002) Appl Catal A Gen 233:13–20
Corma A, Domine ME, Valencia S (2014) WO Patent 20144064318
Mori S, Hamana R, Aoki T, Ayusawa T (1984) JP Patent 61134384
Ayusawa T, Mori S, Aoki T, Hamana R (1984) JP Patent 60146885
Wilson WC (1932) Org Synth
Franckland FWAFP (1936) J Chem Soc 13:265
Isenhour LL (1936) US Patent 2041184
Dunlop AP (1946) US Patent 2407866
Verdeguer P, Merat N, Rigal L, Gaset A (1994) J Chem Technol Biotechnol 61:97–102
Verdeguer P, Merat N, Gaset A (1994) Appl Catal A Gen 112:1–11
Lecomte J, Finiels A, Geneste P, Moreau C (1998) Appl Catal A Gen 168:235–241
Boulet JSO, Emo R, Faugeras P, Jobelin I, Laport F, Lecomte J, Moreau C, Roux MC, Roux G, Simminger J (1995) FR Patent 9513829
Ventura M, Aresta M, Dibenedetto A (2016) Chemsuschem 9:1096–1100
Ventura M, Lobefaro F, de Giglio E, Distaso M, Nocito F, Dibenedetto A (2018) Chemsuschem 11:1305–1315
Cottier L, Descotes G, Lewkowski J (1994) Polish J Chem 1:68
Morikawa S, Teratake S (1977) JP Patent 54009260
Sheldon RA (1991) In: Guisnet M, Barrault J, Bouchoule C, Duprez D, Pérot G, Maurel R, Montassier R (eds), Heterog. Catal. Fine Chem. II Elsevier, New York, pp 33–54
Grushin V, Herron N (2002) Patent, 2003024947
Durand G, Faugeras P, Laporte F, Moreau C, Neau MC, Roux G, Tichit D, Toutremepuich C (1995) WO Patent 9617836
Moreau C, Durand R, Pourcheron C, Tichit D (1997) In: Blaser HU, Baiker A, Prins C (eds), Heterog. Catal. Fine Chem. IV, Elsevier, New York, pp 399–406
Vinke P, de Wit D, De Goede TJW (1992) New Developments In Selective Oxidation By Heterogeneous Catalysis. Elsevier, Amsterdam
Verdeguer P, Merat N, Gaset A (1993) J Mol Catal 85:327–344
Carlini C, Patrono P, Galletti AMR, Sbrana G, Zima V (2005) Appl Catal A Gen 289:197–204
Faury A, Gaset A (1981) Inf Chim
Smirnov VA, Kulnevich VG, Soltovets GN, Semchemko DP (1974) US Patent 3847952
Moreau C, Belgacem MN, Gandini A (2004) Top Catal 27:11–30
Ventura M, Nocito F, de Giglio E, Cometa S, Altomare A, Dibenedetto A (2018) Green Chem 20:3921–3926
Trivedi J, Bhonsle AK, Atray N (2020) In: Kumar RP, Gnansounou E, Raman JK, Baskar B (eds), Academic Press, London, pp 427–448
Si Z, Zhang X, Zuo M, Wang T, Sun Y, Tang X, Zeng X, Lin L (2020) Korean J Chem Eng 37:224–230
Yuan H, Liu H, Du J, Liu K, Wang T, Liu L (2020) Appl Microbiol Biotechnol 104:527–543
Ventura M, Dibenedetto A, Aresta M (2018) Inorg Chim Acta 470:11–21
Ribeiro ML, Schuchardt U (2003) Catal Commun 4:83–86
Bello S, Méndez-Trelles P, Rodil E, Feijoo G, Moreira MT (2020) Sep Purif Technol 233:116056
Lisuzzo L, Cavallaro G, Milioto S, Lazzara G (2020) Appl Clay Sci 185:105416
Tharani D, Ananthasubramanian M (2020), In Alam MA, Xu J-L, Wang Z (eds), Springer, Singapore, pp 373–396
Pavlovskay NE, Gorkova IV, Gagarina IN, Gavrilova AY, Conf IOP (2020) Ser Earth Environ Sci 422:12120
Silva SS, Felipe MG, Mancilha IM (1998) Appl Biochem Biotechnol 1:70–72
Delgado Arcaño Y, Valmaña García OD, Mandelli D, Carvalho WA, Magalhães Pontes LA (2020) Catal Today 344:2–14
Zhang X, Wilson K, Lee AF (2016) Chem Rev 116:12328–12368
VenkateswarRao L, Goli JK, Gentela J, Koti S (2016) Bioresour Technol 213:299–310
Sato O, Mimura N, Masuda Y, Shirai M, Yamaguchi A (2019) J Supercrit Fluids 144:14–18
Hilpmann G, Steudler S, Ayubi MM, Pospiech A, Walther T, Bley T, Lange R (2019) Catal Lett 149:69–76
Bettiga M, Hahn-Hägerdal B, Gorwa-Grauslund MF (2008) Biotechnol Biofuels 1:16
Verduyn C, Jzn JF, van Dijken JP, Scheffers WA, Microbiol FEMS (1985) Lett 30:313–317
Hoang Nguyen Tran P, Ko JK, Gong G, Um Y, Lee S-M (2020) Biotechnol Biofuels 13:12
Yin B, Jin X, Zhang G, Yan H, Zhang W, Liu X, Liu M, Yang C, Shen J, Sustain ACS (2020) Chem Eng 8:5305–5316
Murzin DY, Garcia S, Russo V, Kilpiö T, Godina LI, Tokarev AV, Kirilin AV, Simakova IL, Poulston S, Sladkovskiy DA et al (2017) Ind Eng Chem Res 56:13240–13253
Wang S-F, Fan M-H, He Y-T, Li Q-X (2019) Chinese J Chem Phys 32:513–520
Moreno J, Iglesias J, Blanco J, Montero M, Morales G, Melero JA (2020) J Clean Prod 250:119568
Zhang G, Chen T, Zhang Y, Liu T, Wang G (2020) Catal Lett. https://doi.org/10.1007/s10562-020-03129-8
Guleria A, Kumari G, Saravanamurugan S (2020) In: Saravanamurugan S, Pandey A, Li H, Riisager ABTR (eds), Biomass, Biofuels, Biochemicals, Elsevier, New York, pp 433–457
Yuan D, Li L, Li F, Wang Y, Wang F, Zhao N, Xiao F (2019) Chemsuschem 12:4986–4995
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