Green Biorefinery systems for the production of climate-smart sustainable products from grasses, legumes and green crop residues

Biotechnology Advances - Tập 66 - Trang 108168 - 2023
James Gaffey1,2,3, Gaurav Rajauria1,2, Helena McMahon1,2, Rajeev Ravindran1,2, Carmen Dominguez1,2, Morten Ambye-Jensen4, Macella F. Souza5, Erik Meers5, Marta Macias Aragonés6, Dubravka Skunca7, Johan P.M. Sanders8,9
1Circular Bioeconomy Research Group, Shannon Applied Biotechnology Centre, Munster Technological University, Tralee V92 CX88, Ireland
2BiOrbic Bioeconomy Research Centre, University College Dublin, Belfield, Dublin 4, Ireland
3Dept. of Environmental Engineering, University of Limerick, Castletroy, Limerick V94 T9PX, Ireland
4Aarhus University, Department of Biological and Chemical Engineering, Nørregade 44, 8000 Aarhus C, Denmark
5Laboratory of Bioresource Recovery (RE-SOURCE LAB), Ghent University, Coupure Links 653, 9000 Ghent, Belgium
6Technological Corporation of Andalusia (CTA), C Albert Einstein S/N, INSUR building, 4th floor, 41092 Seville, Spain
7Faculty of Business and Law, MB University, Teodora Drajzera 27, 11040 Belgrade, Serbia
8Grassa BV, Villafloraweg 1, 5928, SZ Venlo, the Netherlands
9Valorization of Plant Production Chains, Wageningen University, Bornse Weilanden 9, 6708 WG Wageningen, the Netherlands

Tài liệu tham khảo

Abeynayake, 2015, Fructan metabolism and changes in fructan composition during cold acclimation in perennial ryegrass, Front. Plant Sci., 6, 329, 10.3389/fpls.2015.00329

Aoun, 2017, 221

Apostol, 2017, Alfalfa concentrate–a rich source of nutrients for use in food products, J. Int. Sci. Publ, 5, 66

Aufrère, 2012

Ayele, 2021, Influence of temperature and screw pressing on the quality of cassava leaf fractions, Agriculture, 12, 42, 10.3390/agriculture12010042

Bakshi, 2016, Waste to worth: vegetable wastes as animal feed, Cab. Rev., 11, 1, 10.1079/PAVSNNR201611012

Barrett, 2021

Bernaert, 2013

Biernacka, 2021, Dehydrated at different conditions and powdered leek as a concentrate of biologically active substances: antioxidant activity and phenolic compound profile, Materials, 14, 6127, 10.3390/ma14206127

BIO4AFRICA

Bishop, 2021

Blanc, 2013, Thermo-mechanical fractionation of green biomass, Dry. Technol., 31, 462, 10.1080/07373937.2012.740544

Boakye-Boaten, 2016, Uses of miscanthus press juice within a green biorefinery platform, Bioresour. Technol., 207, 285, 10.1016/j.biortech.2016.02.030

Boscher, 1981, Reproductive effort in allium porrum: relation to the length of the juvenile phase, Oikos, 328, 10.2307/3544124

Cao, 2021, Angiotensin I converting enzyme (ACE) inhibitory peptides derived from alfalfa (Medicago sativa L.) leaf protein and its membrane fractions, J. Food Process. Preserv., 45, 10.1111/jfpp.15834

Carus, 2014, GreenPremium prices along the value chain of biobased products, Ind. Biotechnol., 10, 83, 10.1089/ind.2014.1512

Cerrone, 2015, Use of a mannitol rich ensiled grass press juice (EGPJ) as a sole carbon source for polyhydroxyalkanoates (PHAs) production through high cell density cultivation, Bioresour. Technol., 191, 45, 10.1016/j.biortech.2015.04.128

Cesaro, 2015, Combined biogas and bioethanol production: opportunities and challenges for industrial application, Energies, 8, 8121, 10.3390/en8088121

Cherubini, 2009, Toward a common classification approach for biorefinery systems, Biofuels Bioprod. Biorefin., 3, 534, 10.1002/bbb.172

Clark, 2020

Cojocariu, 2008

Corona, 2018, Techno-environmental assessment of the green biorefinery concept: combining process simulation and life cycle assessment at an early design stage, Sci. Total Environ., 635, 100, 10.1016/j.scitotenv.2018.03.357

Damborg, 2020, Screw-pressed fractions from green forages as animal feed: chemical composition and mass balances, Anim. Feed Sci. Technol., 261, 10.1016/j.anifeedsci.2020.114401

De Jong, 2009, 1

De Meyer, 2021

De Visser, 2016

De Vliegher, 2007

Diekmann, 2009, Complete chloroplast genome sequence of a major allogamous forage species, perennial ryegrass (Lolium perenne L.), DNA Res., 16, 165, 10.1093/dnares/dsp008

Dien, 2018, Bioconversion of pelletized big bluestem, switchgrass, and low-diversity grass mixtures into sugars and bioethanol, Front. Energy Res., 6, 129, 10.3389/fenrg.2018.00129

DLF

Ducrocq, 2020, Rubisco: a promising plant protein to enrich wheat-based food without impairing dough viscoelasticity and protein polymerisation, Food Hydrocoll., 109, 10.1016/j.foodhyd.2020.106101

Ebadian, 2020, Biofuels policies that have encouraged their production and use: an international perspective, Energy Policy, 147, 10.1016/j.enpol.2020.111906

Einarsson, 2021, Crop production and nitrogen use in European cropland and grassland 1961–2019, Sci. Data, 8, 288, 10.1038/s41597-021-01061-z

Esposito, 2020, Synthesis and therapeutic applications of iminosugars in cystic fibrosis, Int. J. Mol. Sci., 21, 3353, 10.3390/ijms21093353

European Association of Sugar Manufacturers, 2021

European Commission, 2021

European Commission, 2022

European Commission

Eurostat, 2018

Eurostat, 2018

Eurostat, 2018

Eurostat

EuroStat, 2021

2021

EuroStat, 2021

Feeney, 2020

Feng, 2021, Pilot-scale anaerobic digestion of by-product liquid (brown juice) from grass protein extraction using an un-heated anaerobic filter, Process. Saf. Environ. Prot., 146, 886, 10.1016/j.psep.2020.12.026

Fiorentini, 1983, The proteins from leaves, Plant Foods Hum. Nutr., 32, 335, 10.1007/BF01091193

Franchi, 2020

Franchi, 2020

Gaffey, 2021, Understanding consumer perspectives of bio-based products—a comparative case study from Ireland and The Netherlands, Sustainability, 13, 6062, 10.3390/su13116062

Gebremichael, 2021, Ammonium-based compound fertilisers mitigate nitrous oxide emissions in temperate grassland, Agronomy, 11, 1712, 10.3390/agronomy11091712

German Bioeconomy Council, 2018

Ghosh, 2001, Effect of salt stress on some chemical components and yield of potato, Soil Sci. Plant Nutr., 47, 467, 10.1080/00380768.2001.10408411

Godlewska, 2020, Italian ryegrass (Lolium multiflorum Lam.) fiber fraction content and dry matter digestibility following biostimulant application against the background of varied nitrogen regime, Agronomy, 11, 39, 10.3390/agronomy11010039

Gramitherm

Grassa BV

Gursel, 2020

Haveren, 2008, Bulk chemicals from biomass, Biofuels, Bioproducts and Biorefining: Innovation for a sustainable economy, 2, 41, 10.1002/bbb.43

Hensgen, 2011, Integrated generation of solid fuel and biogas from green cut material from landscape conservation and private households, Bioresour. Technol., 102, 10441, 10.1016/j.biortech.2011.08.119

Hermansen, 2017

Heuzé

Heuzé

Heuzé

Höltinger, 2014, A spatially explicit techno-economic assessment of green biorefinery concepts, Biofuels Bioprod. Biorefin., 8, 325, 10.1002/bbb.1461

Hughes, 2014, Biomass for biorefining: resources, allocation, utilization, and policies, 37

IEA Task 37, 2020

Kamm, 2009, Biorefining of green biomass–technical and energetic considerations, CLEAN–Soil Air Water, 37, 27, 10.1002/clen.200800122

Kamm, 2010, Green biorefinery demonstration plant in Havelland (Germany), Biofuels, Bioproducts and Biorefining: Innovation for a sustainable economy, 4, 253, 10.1002/bbb.218

Keijsers, 2010

Kiskini, 2017

Kobbi, 2015, Antibacterial activity of novel peptides isolated from protein hydrolysates of RuBisCO purified from green juice alfalfa, J. Funct. Foods, 18, 703, 10.1016/j.jff.2015.09.007

Kobbi, 2018, Synthesis and antibacterial activity of new peptides from alfalfa RuBisCO protein hydrolysates and mode of action via a membrane damage mechanism against Listeria innocua, Microb. Pathog., 115, 41, 10.1016/j.micpath.2017.12.009

Kootstra, 2016

Krenz, 2022, Valorization of landscape management grass, Biomass Convers. Biorefin., 1

Kromus, 2005, Green biorefineries: the green biorefinery concept–fundamentals and potential, 253

Kudoyarova, 2018, Development of sugar beet leaves: contents of hormones, localization of abscisic acid, and the level of products of photosynthesis, Plant Signal. Behav., 13, 10.1080/15592324.2018.1482175

la Cour, 2019, Enhancing protein recovery in green biorefineries by lignosulfonate-assisted precipitation, Front. Sustain. Food Syst., 3, 112, 10.3389/fsufs.2019.00112

Lamsal, 2007, Some physicochemical and functional properties of alfalfa soluble leaf proteins, LWT-Food Sci. Technol., 40, 1520, 10.1016/j.lwt.2006.11.010

Lange, 2022, Business models, including higher value products for the new circular, resource-efficient biobased industry, Front. Sustain., 3, 10.3389/frsus.2022.789435

Larsen, 2019, Ensiling of the pulp fraction after biorefining of grass into pulp and protein juice, Ind. Crop. Prod., 139, 10.1016/j.indcrop.2019.111576

Leiß, 2010, Fermentative production of L-lysine-L-lactate with fractionated press juices from the green biorefinery, Chem. Eng. Technol., 33, 2102, 10.1002/ceat.201000314

Lesschen, 2014

Mandl, 2010, Status of green biorefining in Europe, Biofuels, Bioproducts and Biorefining: Innovation for a sustainable economy, 4, 268, 10.1002/bbb.219

McClearn, 2019, The effect of perennial ryegrass ploidy and white clover inclusion on milk production of dairy cows, Anim. Prod. Sci., 60, 143, 10.1071/AN18539

McEniry, 2012, The effect of ensiling and fractionation on the suitability for combustion of three common grassland species at sequential harvest dates, Grass Forage Sci., 67, 559, 10.1111/j.1365-2494.2012.00902.x

Meehan, 2019, 123

Meehan, 2017, Exploring the potential of grass feedstock from marginal land in Ireland: does marginal mean lower yield?, Biomass Bioenergy, 107, 361, 10.1016/j.biombioe.2017.10.014

Menon, 2020

Møller, 2021, Biorefinery of green biomass how to extract and evaluate high quality leaf protein for food?, J. Agric. Food Chem., 69, 14341, 10.1021/acs.jafc.1c04289

Monteiro, 2020

Mottet, 2017, Livestock: on our plates or eating at our table? A new analysis of the feed/food debate, Global Food Security, 14, 1, 10.1016/j.gfs.2017.01.001

Nitsche, 2017, Using grass cuttings from sports fields for anaerobic digestion and combustion, Energies, 10, 388, 10.3390/en10030388

Njakou Djomo, 2020, Green proteins: an energy-efficient solution for increased self-sufficiency in protein in Europe, Biofuels Bioprod. Biorefin., 14, 605, 10.1002/bbb.2098

Nutrition Insight

Nynäs, 2021, Protein fractionation of green leaves as an underutilized food source—protein yield and the effect of process parameters, Foods, 10, 2533, 10.3390/foods10112533

OECD, 2013

O’Keefe, 2010

Olvera-Novoa, 1990, The use of alfalfa leaf protein concentrates as a protein source in diets for tilapia (Oreochromis mossambicus), Aquaculture, 90, 291, 10.1016/0044-8486(90)90253-J

Pabbathi, 2022, Brewer’s spent grains-based biorefineries: a critical review, Fuel, 317, 10.1016/j.fuel.2022.123435

Papendiek, 2014, Cultivation and fractionation of leguminous biomass for lactic acid production, Chem. Biochem. Eng. Q., 28, 375, 10.15255/CABEQ.2013.1854

Patterson, 2021, Utilizing grass for the biological production of polyhydroxyalkanoates (PHAs) via green biorefining: material and energy flows, J. Ind. Ecol., 25, 802, 10.1111/jiec.13071

Pereira, 2011, Ethyl lactate as a solvent: properties, applications and production processes–a review, Green Chem., 13, 2658, 10.1039/c1gc15523g

Phelan, 2015, Forage legumes for grazing and conserving in ruminant production systems, Crit. Rev. Plant Sci., 34, 281, 10.1080/07352689.2014.898455

Pijlman, 2018, 25

Prade, 2021, Protein fractionation of broccoli (Brassica oleracea, var. Italica) and kale (Brassica oleracea, var. Sabellica) residual leaves—a pre-feasibility assessment and evaluation of fraction phenol and fibre content, Food Bioprod. Process., 130, 229, 10.1016/j.fbp.2021.10.004

Prieler, 2019, Life-cycle assessment of green biorefinery process options, Biofuels Bioprod. Biorefin., 13, 1391, 10.1002/bbb.2022

Ravindran, 2021, Production of green biorefinery protein concentrate derived from perennial ryegrass as an alternative feed for pigs, Clean Technol., 3, 656, 10.3390/cleantechnol3030039

Ravindran, 2022, Biogas, biomethane and digestate potential of by-products from green biorefinery systems, Clean Technol., 4, 35, 10.3390/cleantechnol4010003

Rivero, 2019, Does the “high sugar” trait of perennial ryegrass cultivars express under temperate climate conditions?, Grass Forage Sci., 74, 496, 10.1111/gfs.12406

Rudrangi, 2020, Effect of pH on xylitol production by Candida species from a prairie cordgrass hydrolysate, Z. Naturforsch. C, 75, 489, 10.1515/znc-2020-0140

Saju, 2022, Digestate-derived ammonium fertilizers and their blends as substitutes to synthetic nitrogen fertilizers, Appl. Sci., 12, 3787, 10.3390/app12083787

Sanders, 2007, Bio-refinery as the bio-inspired process to bulk chemicals, Macromol. Biosci., 7, 105, 10.1002/mabi.200600223

Sanders, 2020

Santamaría-Fernández, 2020, Production of leaf protein concentrates in green biorefineries as alternative feed for monogastric animals, Anim. Feed Sci. Technol., 268, 10.1016/j.anifeedsci.2020.114605

Santamaría-Fernández, 2018, Biogas potential of green biomass after protein extraction in an organic biorefinery concept for feed, fuel and fertilizer production, Renew. Energy, 129, 769, 10.1016/j.renene.2017.03.012

Santamaria-Fernandez, 2019, Influence of the development stage of perennial forage crops for the recovery yields of extractable proteins using lactic acid fermentation, J. Clean. Prod., 218, 1055, 10.1016/j.jclepro.2019.01.292

Santamaria-Fernandez, 2020, Potential nutrient recovery in a green biorefinery for production of feed, fuel and fertilizer for organic farming, Waste Biomass Valorization, 11, 5901, 10.1007/s12649-019-00842-3

Sari, 2021, The protein challenge: matching future demand and supply in Indonesia, Biofuels Bioprod. Biorefin., 15, 341, 10.1002/bbb.2176

Savonen, 2020, Grass silage pulp as a dietary component for high-yielding dairy cows, animal, 14, 1472, 10.1017/S1751731119002970

Serra, 2020

Sharma, 2014, Green biorefinery, 535

Sharma, 2012, Biorefining of perennial ryegrass for the production of nanofibrillated cellulose, RSC Adv., 2, 6424, 10.1039/c2ra20716h

Skunca, 2021, Rubisco protein production - LCA approach, MEST J., 9, 175, 10.12709/mest.09.09.01.20

Souza, 2020

Stødkilde, 2020, Biorefined grass-clover protein composition and effect on organic broiler performance and meat fatty acid profile, J. Anim. Physiol. Anim. Nutr., 104, 1757, 10.1111/jpn.13406

Stødkilde, 2021, Biorefined organic grass-clover protein concentrate for growing pigs: effect on growth performance and meat fatty acid profile, Anim. Feed Sci. Technol., 276, 10.1016/j.anifeedsci.2021.114943

Taube, 2014, Grassland and globalization–challenges for north-west European grass and forage research, Grass Forage Sci., 69, 2, 10.1111/gfs.12043

Thang, 2005, Detailed investigation of an electrodialytic process during the separation of lactic acid from a complex mixture, J. Membr. Sci., 249, 173, 10.1016/j.memsci.2004.08.033

Thiewes, 2019

Thomsen, 2005, 295

Thormann, 2021, Opportunities and challenges of the European green deal for the chemical industry: an approach measuring innovations in bioeconomy, Resources, 10, 91, 10.3390/resources10090091

Timma, 2020, Dynamic sustainability assessment tool: case study of green biorefineries in Danish agriculture, Sustainability, 12, 10.3390/su12187389

Togeiro de Alckmin, 2020, Retrieval of crude protein in perennial ryegrass using spectral data at the canopy level, Remote Sens., 12, 2958, 10.3390/rs12182958

Trigo, 2021

Turner, 2012, The morphological and physiological responses of perennial ryegrass (Lolium perenne L.), cocksfoot (Dactylis glomerata L.) and tall fescue (Festuca arundinacea Schreb.; syn. Schedonorus phoenix Scop.) to variable water availability, Grass Forage Sci., 67, 507, 10.1111/j.1365-2494.2012.00866.x

van Zanten, 2016, Global food supply: land use efficiency of livestock systems, Int. J. Life Cycle Assess., 21, 747, 10.1007/s11367-015-0944-1

Wróbel, 2019, Nutritional value of red clover (Trifolium pratense L.) and birdsfoot trefoil (Lotus corniculatus L.) harvested in different maturity stages, J. Res. Appl. Agric. Eng., 64

Xiu, 2015, Development of green biorefinery for biomass utilization: a review, Trends Renew. Energy, 1, 4, 10.17737/tre.2015.1.1.008

Xiu, 2017, Green biorefinery of Giant Miscanthus for growing microalgae and biofuel production, Fermentation, 3, 66, 10.3390/fermentation3040066

Yu, 2014, Enhancing volatile fatty acid (VFA) and bio-methane production from lawn grass with pretreatment, Bioresour. Technol., 162, 243, 10.1016/j.biortech.2014.03.089