125 peer-reviewed publications by Prof. Jhuma Sadhukhan and collaborators.

No. Year Reference Link
1 2026 White M., Trotter C., Lau E., Steele J., Sadhukhan J., Era Y., Law S., Gilman J., Dennis J., Johnson N., Gordon R., Wallace S. 2026. Native H2 Pathways Enable Biocompatible Hydrogenation of Metabolic Alkenes in Bacteria. Nature Chemistry, 18, 535–543. DOI
2 2014 Sadhukhan J., Ng K.S. and Martinez-Hernandez E. 2014. Biorefineries and Chemical Processes: Design, Integration and Sustainability Analysis. Wiley-Blackwell. Book
3 2026 Chalermthai B., Thanahiranya P., Assabumrungrat S., Sadhukhan J. and Charoensuppanimit P. 2026. Life Cycle Assessment of Diethyl Carbonate (DEC) and Glycerol Carbonate (GC) Coproduction from Bioethanol, CO2, and Glycerol. ACS Sustainable Chemistry & Engineering. DOI
4 2026 Hafyan R., Gadkari S. and Sadhukhan J. 2026. Multi-Objective Optimization of Bread Waste Valorization: A Framework for Integrated Food Waste Management. Resources, Conservation & Recycling, 229, 108871. DOI
5 2026 Murali R., Bywater A., Dolat M., Dekhici B., Zarei M., Hilton L., Sadhukhan J., Zhang D. and Short M. 2026. Anaerobic digestion site-wide optimisation and decision-making: An industrial perspective and review. Renewable and Sustainable Energy Reviews, 226, 116402. DOI
6 2025 Pincam T., Liu Y.Q., Short M., Guo B., Sadhukhan J. and Bywater A. 2025. Challenging conventional temperature ranges in anaerobic digestion: intermediate (45°C) as general optimum with feedstock-dependent performance differences from mesophilic (35°C) and thermophilic (55°C) conditions. Bioresource Technology, 133609. DOI
7 2025 McFall F., Guan D., Chenoweth J., Font X., Corduneanu I., Goean E. and Sadhukhan J. 2025. Aviation passenger carbon footprint calculator with comprehensive emissions, life cycle coverage, and historical adjustment. Communications Earth & Environment, 6(1), 855. DOI
8 2025 Lord J., White R., Murphy R. and Sadhukhan J. 2025. Aligning platinum recycling with hydrogen economy growth: a comparative LCA of hydrometallurgical and pyrometallurgical methods. Green Chemistry. DOI
9 2025 Heaven S., Kusch-Brandt S., Byfield L., Bywater A., Coulon F., Curtis T., Gutierrez T., Higson A. and Sadhukhan J. 2025. What Is Environmental Biotechnology? Although Widely Applied, a Clear Definition of the Term Is Still Needed. Environments, 12(10), 393. DOI
10 2025 Courtat M., Joyce P.J., Sim S. et al. 2025. Ensuring consistent data quality for environmental rating ecolabels with representative secondary datasets. International Journal of Life Cycle Assessment. DOI
11 2025 Courtat M., Joyce P.J., Sim S., Sadhukhan J., Sheffield D. and Murphy R. 2025. Environmental rating ecolabels: How does product categorization affect product ratings and potential interpretation? Journal of Industrial Ecology, 29(4), 1335–1349. DOI
12 2025 Gray S., Sadhukhan J., Druckman A. and James K. 2025. A comparison of circular business models using life cycle assessment, focusing on clothing retail, distribution and use. International Journal of Life Cycle Assessment, 1–22. DOI
13 2025 Thanahiranya P., Sadhukhan J., Charoensuppanimit P., Vacharanukrauh T., Chuetor S., Chanthanumataporn M. and Assabumrungrat S. 2025. Design and assessment of biolubricant production processes utilizing various feedstocks in palm oil-based biodiesel industry. Journal of Cleaner Production, 518, 145949. DOI
14 2025 Luo H., Yang D., Sadhukhan J., Costica V., Dorey R., Song Q. and Titirici M.M. 2025. Process Integration and Life-cycle Assessment of Moist-solid Hydrolysis of Polylactic Acid with Lactic Acid Recovery via Electrodialysis. ChemSusChem, e202500503. DOI
15 2025 Wang J., Zhang X., Daniel T., Sadhukhan J. and Liu L. 2025. Environ-economic analysis of hydrogen integration in decarbonizing the UK iron and steel industry: A comparative study of progressive and disruptive technical routes. Applied Energy, 390, 125762. DOI
16 2025 Courtat M., Joyce P.J., Sim S., Sadhukhan J. and Murphy R. 2025. Environmental rating ecolabels: Considerations for establishing a rating scale with categorical performance classes. Journal of Cleaner Production, 503, 145372. DOI
17 2025 Hafyan R.H., Sadhukhan J., Kumar V., Maity S.K. and Gadkari S. 2025. A comparative techno-economic feasibility of hydrogen production from sugarcane bagasse and bread waste. Fuel, 388, 134469. DOI
18 2025 Sadhukhan J., Fisher O.J., Cummings B. and Xuan J. 2025. Novel comprehensive life cycle assessment (LCA) of sustainable flue gas carbon capture and utilization (CCU) for surfactant and fuel via Fischer-Tropsch synthesis. Journal of CO2 Utilization, 92, 103013. DOI
19 2024 Fisher O.J., Sadhukhan J., Daniel T. and Xuan J. 2024. Techno-economic analysis and process simulation of alkoxylated surfactant production in a circular carbon economy framework. Digital Chemical Engineering, 100199. DOI
20 2024 Dolat M., Murali R., Zarei M., Zhang R., Pincam T., Liu Y.Q., Sadhukhan J., Bywater A. and Short M. 2024. Dynamic feed scheduling for optimised anaerobic digestion: An optimisation approach for better decision-making to enhance revenue and environmental benefits. Digital Chemical Engineering, 13, 100191. DOI
21 2024 Dolat M., Murali R., Zhang R., Zarei M., Zhang D., Zhang D., Sadhukhan J. and Short M. 2024. Optimal feed scheduling and co-digestion for anaerobic digestion sites with dynamic demands. Computer Aided Chemical Engineering, 53, 1705–1710. Elsevier. DOI
22 2024 Sadhukhan J., Sen S. and Randriamahefasoa T.M.S. 2024. Framework for optimal energy storage duration for maximum-reliability renewable electricity. Frontiers in Energy Research, 12, 1430413. DOI
23 2024 Goean E.R., Font X., Xiong Y., Becken S., Chenoweth J.L., Fioramonti L., Higham J., Jaiswal A.K., Sadhukhan J., Sun Y.Y. and Treiblmaier H. 2024. Using the Blockchain to Reduce Carbon Emissions in the Visitor Economy. Sustainability, 16(10), 4000. DOI
24 2024 Alabbasi A., Sadhukhan J., Leach M. and Sanduk M. 2024. Accelerating the Transition to Sustainable Energy: An intelligent decision support system for Generation Expansion Planning with renewables. Energy, 304, 131999. DOI
25 2024 Sadhukhan J. et al. 2024. Strategic navigation of world-leading biorefineries and Mexico's policy landscape: A gateway to a sustainable circular bioeconomy. Journal of Cleaner Production, 434, 140386. DOI
26 2024 Martinez-Hernandez E., Castillo-Landero A., Dominguillo-Ramírez D., Amezcua-Allieri M.A., Morse S., Murphy R., Aburto J. and Sadhukhan J. 2024. Priorities and relevance of bioenergy sustainability indicators: A participatory selection framework applied to community-based forestry in Mexico. Energy Research & Social Science, 109, 103425. DOI
27 2024 Hafyan R.H., Mohanarajan J., Uppal M., Kumar V., Narisetty V., Maity S.K., Sadhukhan J. and Gadkari S. 2024. Integrated biorefinery for bioethanol and succinic acid co-production from bread waste: Techno-economic feasibility and life cycle assessment. Energy Conversion and Management, 301, 118033. DOI
28 2024 Wang S., Li F., Sadhukhan J., Xuan J., Mao X., Xing L., Zhao X. and Wang X. 2024. Revealing the best solution simultaneously for environmental and economic performance using response surface methodology under the perspective of life cycle: A case study of sludge dewatering by the Fenton process. Journal of Cleaner Production, 434, 139846. DOI
29 2024 Hafyan R.H., Mohanarajan J., Uppal M., Kumar V., Narisetty V., Maity S.K., Sadhukhan J. and Gadkari S. 2024. Bread waste valorization: a review of sustainability aspects and challenges. Frontiers in Sustainable Food Systems. DOI
30 2023 Thanahiranya P., Sadhukhan J., Charoensuppanimit P., Soottitantawat A., Arpornwichanop A., Thongchul N. and Assabumrungrat S. 2023. Sustainability Assessment of Dihydroxyacetone (DHA) Production from Glycerol: A Comparative Study between Biological and Catalytic Oxidation Routes. ACS Sustainable Chemistry & Engineering, 11(49), 17425–17439. DOI
31 2023 Muazu R.I., Sadhukhan J., Mohan S.V. and Gadkari S. 2023. Hexavalent chromium waste removal via bioelectrochemical systems — a life cycle assessment perspective. Environmental Science: Water Research & Technology, 9(10), 2487–2500. DOI
32 2023 Courtat M., Joyce P.J., Sim S., Sadhukhan J. and Murphy R. 2023. Towards credible, evidence-based environmental rating ecolabels for consumer products: A proposed framework. Journal of Environmental Management, 336, 117684. DOI
33 2023 Wang S., Sadhukhan J., Xuan J., Yu Y., Mao X., Wang M., Chen X., Zhou X., Xing L. and Wang X. 2023. Life Cycle Assessment and Life Cycle Cost of Sludge Dewatering, Conditioned with Fe2+/H2O2, Fe2+/Ca(ClO)2, Fe2+/Na2S2O8, and Fe3+/CaO Based on Pilot-Scale Study Data. ACS Sustainable Chemistry & Engineering, 11(20), 7798–7708. DOI
34 2023 Wu M., Sadhukhan J., Murphy R., Bharadwaj U. and Cui X. 2023. A novel life cycle assessment and life cycle costing framework for carbon fibre-reinforced composite materials in the aviation industry. International Journal of Life Cycle Assessment, 28, 566–589. DOI
35 2023 Thanahiranya P., Charoensuppanimit P., Sadhukhan J., Soottitantawat A., Arpornwichanop A., Thongchul N. and Assabumrungrat S. 2023. Succinic Acid Production from Glycerol by Actinobacillus succinogenes: Techno-economic, environmental, and exergy analyses. Journal of Cleaner Production, 404, 136927. DOI
36 2023 Andries A., Morse S., Murphy R.J., Sadhukhan J., Martinez-Hernandez E., Amezcua-Allieri M.A. and Aburto J. 2023. Potential of Using Night-Time Light to Proxy Social Indicators for Sustainable Development. Remote Sensing, 15(5), 1209. DOI
37 2023 Castillo-Landero A., Dominguillo-Ramírez D., Aburto J., Sadhukhan J. and Martinez-Hernandez E. 2023. Improving the Economic, Environmental, and Safety Performance of Bio-Jet Fuel Production through Process Intensification and Integration Using a Modularity Approach. ACS Sustainable Chemistry & Engineering. DOI
38 2022 Castillo-Landero A., Aburto J., Sadhukhan J. and Martinez-Hernandez E. 2022. A process modularity approach for chemical process intensification and inherently safer design. Process Safety and Environmental Protection, 168, 54–66. DOI
39 2022 Sadhukhan J. and Sekar K. 2022. Economic Conditions to Circularize Clinical Plastics. Energies, 15(23), 8974. DOI
40 2022 HM Beigi B., Gadkari S. and Sadhukhan J. 2022. Osmotically assisted reverse osmosis, simulated to achieve high solute concentrations, at low energy consumption. Scientific Reports, 12(1), 1–12. DOI
41 2022 Sadhukhan J., Pollet B.G. and Seaman M. 2022. Hydrogen Production and Storage: Analysing Integration of Photoelectrolysis, Electron Harvesting Lignocellulose, and Atmospheric Carbon Dioxide-Fixing Biosynthesis. Energies, 15(15), 5486. DOI
42 2022 Sadhukhan J. 2022. Net-Zero Action Recommendations for Scope 3 Emission Mitigation Using Life Cycle Assessment. Energies, 15(15), 5522. DOI
43 2022 Sadhukhan J., Sen S., Randriamahefasoa T.M.S. and Gadkari S. 2022. Energy System Optimization for Net-Zero Electricity. Digital Chemical Engineering, 3, 100026. DOI
44 2022 Martinez-Hernandez E., Sadhukhan J., Aburto J., Amezcua-Allieri M.A., Morse S. and Murphy R. 2022. Modelling to analyse the process and sustainability performance of forestry-based bioenergy systems. Clean Technologies and Environmental Policy, 24(6), 1709–1725. DOI
45 2022 Alabbasi A., Sadhukhan J., Leach M. and Sanduk M. 2022. Sustainable Indicators for Integrating Renewable Energy in Bahrain's Power Generation. Sustainability, 14(11), 6535. DOI
46 2022 Ibrahim Muazu R., Gadkari S. and Sadhukhan J. 2022. Integrated Life Cycle Assessment Modelling of Densified Fuel Production from Various Biomass Species. Energies, 15(11), 3872. DOI
47 2022 Gray S., Druckman A., Sadhukhan J. and James K. 2022. Reducing the Environmental Impact of Clothing: An Exploration of the Potential of Alternative Business Models. Sustainability, 14(10), 6292. DOI
48 2022 Sadhukhan J. 2022. Net zero electricity systems in global economies by life cycle assessment (LCA) considering ecosystem, health, monetization, and soil CO2 sequestration impacts. Renewable Energy, 184, 960–974. DOI
49 2021 Sadhukhan J. and Sen S. 2021. A novel mathematical modelling platform for evaluation of a novel biorefinery design with green hydrogen recovery to produce renewable aviation fuel. Chemical Engineering Research and Design, 175, 358–379. DOI
50 2021 Sadhukhan J. and Christensen M. 2021. An In-Depth Life Cycle Assessment (LCA) of Lithium-Ion Battery for Climate Impact Mitigation Strategies. Energies, 14(17), 5555. DOI
51 2021 Black M.J., Roy A., Twinomunuji E., Kemausuor F., Oduro R., Leach M., Sadhukhan J. and Murphy R. 2021. Bottled Biogas — An Opportunity for Clean Cooking in Ghana and Uganda. Energies, 14(13), 3856. DOI
52 2021 Sadhukhan J., Sen S. and Gadkari S. 2021. The Mathematics of Life Cycle Sustainability Assessment. Journal of Cleaner Production, 309, 127457. DOI
53 2021 Gadkari S., Beigi B.H.M., Aryal N. and Sadhukhan J. 2021. Microbial electrosynthesis: is it sustainable for bioproduction of acetic acid? RSC Advances, 11(17), 9921–9932. DOI
54 2020 Gadkari S. and Sadhukhan J. 2020. A robust correlation based on dimensional analysis to characterize microbial fuel cells. Nature Scientific Reports, 10(1), 1–5. DOI
55 2020 Gadkari S., Fontmorin J.M., Yu E. and Sadhukhan J. 2020. Influence of temperature and other system parameters on microbial fuel cell performance: Numerical and experimental investigation. Chemical Engineering Journal, 388, 124176. DOI
56 2020 Sadhukhan J. et al. 2020. Perspectives on "Game Changer" Global Challenges for Sustainable 21st Century: Plant-Based Diet, Unavoidable Food Waste Biorefining, and Circular Economy. Sustainability, 12(5), 1976. DOI
57 2020 Honorato-Salazar J.A. and Sadhukhan J. 2020. Annual biomass variation of agriculture crops and forestry residues, and seasonality of crop residues for energy production in Mexico. Food and Bioproducts Processing, 119, 1–19. DOI
58 2019 Gadkari S., Gu S. and Sadhukhan J. 2019. Two-dimensional mathematical model of an air-cathode microbial fuel cell with graphite fiber brush anode. Journal of Power Sources, 441, 227145. DOI
59 2019 Sadhukhan J. et al. 2019. Novel macroalgae (seaweed) biorefinery systems for integrated chemical, protein, salt, nutrient and mineral extractions and environmental protection by green synthesis and life cycle sustainability assessments. Green Chemistry, 21(10), 2635–2655. DOI
60 2019 Gadkari S., Shemfe M., Modestra J.A., Mohan S.V. and Sadhukhan J. 2019. Understanding the interdependence of operating parameters in microbial electrosynthesis: a numerical investigation. Physical Chemistry Chemical Physics, 21(20), 10761–10772. DOI
61 2019 Gadkari S., Shemfe M. and Sadhukhan J. 2019. Microbial fuel cells: A fast converging dynamic model for assessing system performance based on bioanode kinetics. International Journal of Hydrogen Energy, 44(29), 15377–15386. DOI
62 2019 Kaur A., Boghani H.C., Milner E.M., Kimber R.L., Michie I.S., Daalmans R., Dinsdale R.M., Guwy A.J., Head I.M., Lloyd J.R., Eileen H.Y. and Sadhukhan J. 2019. Journal of Hazardous Materials, 371, 18–26. DOI
63 2019 Sadhukhan J., Martinez-Hernandez E., Amezcua-Allieri M.A. and Aburto J. 2019. Economic and environmental impact evaluation of various biomass feedstock for bioethanol production and correlations to lignocellulosic composition. Bioresource Technology Reports, 7, 100230. DOI
64 2018 Shemfe M., Gadkari S., Yu E., Rasul S., Scott K., Head I., Gu S. and Sadhukhan J. 2018. Life cycle, techno-economic and dynamic simulation assessment of bioelectrochemical systems: A case of formic acid synthesis. Bioresource Technology, 255, 39–49. DOI
65 2018 Sadhukhan J. et al. 2018. Role of bioenergy, biorefinery and bioeconomy in sustainable development: Strategic pathways for Malaysia. Renewable & Sustainable Energy Reviews, 81(2), 1966–1987. DOI
66 2018 Shemfe M., Gadkari S. and Sadhukhan J. 2018. Social Hotspot Analysis and Trade Policy Implications of the Use of Bioelectrochemical Systems for Resource Recovery from Wastewater. Sustainability, 10(9), 3193. DOI
67 2018 Miah J.H., Griffiths A., McNeill R., Halvorson S., Schenker U., Espinoza-Orias N., Morse S., Yang A. and Sadhukhan J. 2018. A framework for increasing the availability of life cycle inventory data based on the role of multinational companies. International Journal of Life Cycle Assessment, 23(9), 1744–1760. DOI
68 2018 Gear M., Sadhukhan J., Thorpe R., Clift R., Seville J. and Keast M. 2018. A life cycle assessment data analysis toolkit for the design of novel processes — A case study for a thermal cracking process for mixed plastic waste. Journal of Cleaner Production, 180, 735–747. DOI
69 2018 Miah J.H., Griffiths A., McNeill R., Halvorson S., Schenker U., Espinoza-Orias N.D., Morse S., Yang A. and Sadhukhan J. 2018. Environmental management of confectionery products: Life cycle impacts and improvement strategies. Journal of Cleaner Production, 177, 732–751. DOI
70 2018 Joshi N., Filip J., Coker V., Sadhukhan J., Safarik I., Bagshaw H. and Lloyd J.R. 2018. Microbial reduction of natural Fe(III) minerals; towards the sustainable production of functional magnetic nanoparticles. Frontiers in Environmental Science, 6, 127. DOI
71 2017 Sadhukhan J. et al. 2017. Life cycle assessment of sustainable raw material acquisition for functional magnetite bionanoparticle production. Journal of Environmental Management, 199, 116–125. DOI
72 2017 Galano A., Aburto J., Sadhukhan J. and Torres-García E. 2017. A combined theoretical-experimental investigation on the mechanism of lignin pyrolysis: Role of heating rates and residence times. Journal of Analytical and Applied Pyrolysis, 128, 208–216. DOI
73 2017 Pask F., Lake P., Yang A., Tokos H. and Sadhukhan J. 2017. Sustainability indicators for industrial ovens and assessment using Fuzzy set theory and Monte Carlo simulation. Journal of Cleaner Production, 140, 1217–1225. DOI
74 2017 Pask F., Lake P., Yang A., Tokos H. and Sadhukhan J. 2017. Industrial oven improvement for energy reduction and enhanced process performance. Clean Technologies and Environmental Policy, 19(1), 215–224. DOI
75 2017 Sadhukhan J. and Martinez-Hernandez E. 2017. Material flow and sustainability analyses of biorefining of municipal solid waste. Bioresource Technology, 243, 135–146. DOI
76 2016 Sadhukhan J., Ng K.S. and Martinez-Hernandez E. 2016. Novel integrated mechanical biological chemical treatment (MBCT) systems for the production of levulinic acid from fraction of municipal solid waste: A comprehensive techno-economic analysis. Bioresource Technology, 215, 131–143. DOI
77 2016 Ng K.S., Head I., Premier G.C., Scott K., Yu E., Lloyd J. and Sadhukhan J. 2016. A multilevel sustainability analysis of zinc recovery from wastes. Resources, Conservation and Recycling, 113, 88–105. DOI
78 2016 Sadhukhan J., Lloyd J.R., Scott K., Premier G.C., Eileen H.Y., Curtis T. and Head I.M. 2016. A critical review of integration analysis of microbial electrosynthesis (MES) systems with waste biorefineries for the production of biofuel and chemical from reuse of CO2. Renewable and Sustainable Energy Reviews, 56, 116–132. DOI
79 2016 Sadhukhan J., Martinez-Hernandez E. and Ng K.S. 2016. Biorefinery value chain creation. Chemical Engineering Research and Design, 107, 1–3. DOI
80 2016 Black M.J., Sadhukhan J., Day K., Drage G. and Murphy R.J. 2016. Developing database criteria for the assessment of biomass supply chains for biorefinery development. Chemical Engineering Research and Design, 107, 253–262. DOI
81 2016 Wan Y.K., Sadhukhan J., Ng K.S. and Ng D.K. 2016. Techno-economic evaluations for feasibility of sago-based biorefinery, Part 1: Alternative energy systems. Chemical Engineering Research and Design, 107, 263–279. DOI
82 2016 Wan Y.K., Sadhukhan J. and Ng D.K. 2016. Techno-economic evaluations for feasibility of sago-based biorefinery, Part 2: Integrated bioethanol production and energy systems. Chemical Engineering Research and Design, 107, 102–116. DOI
83 2016 Niekamp S., Bharadwaj U., Sadhukhan J. and Chryssanthopoulos M. 2016. A framework for multi-criteria decision support in sustainable through-life management of industrial assets. InImpact: The Journal of Innovation Impact, 7(2), 444. Link
84 2016 Jaye I.F.M., Sadhukhan J. and Murphy R.J. 2016. Renewable, local electricity generation from palm oil mills: a case study from Peninsular Malaysia. International Journal of Smart Grid and Clean Energy, 44, 106–111.
85 2016 Pask F., Lake P., Yang A., Tokos H. and Sadhukhan J. 2016. Generic Approach to Sustainability Improvements in Manufacturing Ovens. In Sustainable Design and Manufacturing 2016 (pp. 99–109). Springer International Publishing. DOI
86 2015 Sadhukhan J., Ng K.S. and Martinez-Hernandez E. 2015. Process systems engineering tools for biomass polygeneration systems with carbon capture and reuse. In Process Design Strategies for Biomass Conversion Systems, pp. 215–245.
87 2015 Miah J.H., Griffiths A., McNeill R., Poonaji I., Martin R., Leiser A., Morse S., Yang A. and Sadhukhan J. 2015. Maximising the recovery of low grade heat: An integrated heat integration framework incorporating heat pump intervention for simple and complex factories. Applied Energy, 160, 172–184. DOI
88 2015 Miah J.H., Griffiths A., McNeill R., Poonaji I., Martin R., Morse S., Yang A. and Sadhukhan J. 2015. A small-scale transdisciplinary process to maximising the energy efficiency of food factories: insights and recommendations from the development of a novel heat integration framework. Sustainability Science, 10, 621–637. DOI
89 2015 Niekamp S., Bharadwaj U.R., Sadhukhan J. and Chryssanthopoulos M.K. 2015. A multi-criteria decision support framework for sustainable asset management and challenges in its application. Journal of Industrial and Production Engineering, 32(1), 23–36. DOI
90 2015 Miah J.H., Griffiths A., McNeill R., Poonaji I., Martin R., Morse S., Yang A. and Sadhukhan J. 2015. Creating an environmentally sustainable food factory: A case study of the Lighthouse project at Nestlé. Procedia CIRP, 26, 229–234. DOI
91 2014 Pask F., Sadhukhan J., Lake P., McKenna S., Perez E.B. and Yang A. 2014. Systematic approach to industrial oven optimisation for energy saving. Applied Thermal Engineering, 71(1), 72–77. DOI
92 2014 Martinez-Hernandez E., Campbell G.M. and Sadhukhan J. 2014. Economic and environmental impact marginal analysis of biorefinery products for policy targets. Journal of Cleaner Production, 74, 74–85. DOI
93 2014 Sadhukhan J. 2014. Distributed and micro-generation from biogas and agricultural application of sewage sludge: Comparative environmental performance analysis using life cycle approaches. Applied Energy, 122, 196–206. DOI
94 2014 Martinez-Hernandez E., Martinez-Herrera J., Campbell G.M. and Sadhukhan J. 2014. Process integration, energy and GHG emission analyses of Jatropha-based biorefinery systems. Biomass Conversion and Biorefinery, 4, 105–124. DOI
95 2013 Martinez-Hernandez E., Campbell G. and Sadhukhan J. 2013. Economic value and environmental impact (EVEI) analysis of biorefinery systems. Chemical Engineering Research and Design, 91(8), 1418–1426. DOI
96 2013 Martinez-Hernandez E., Sadhukhan J. and Campbell G.M. 2013. Integration of bioethanol as an in-process material in biorefineries using mass pinch analysis. Applied Energy, 104, 517–526. DOI
97 2013 Ng K.S., Zhang N. and Sadhukhan J. 2013. Techno-economic analysis of polygeneration systems with carbon capture and storage and CO2 reuse. Chemical Engineering Journal, 219, 96–108. DOI
98 2013 Martinez-Hernandez E., Ibrahim M.H., Leach M., Sinclair P., Campbell G.M. and Sadhukhan J. 2013. Environmental sustainability analysis of UK whole-wheat bioethanol and CHP systems. Biomass and Bioenergy, 50, 52–64. DOI
99 2013 Mateos-Salvador F., Sadhukhan J. and Campbell G.M. 2013. Extending the normalised Kumaraswamy breakage function for roller milling of wheat flour stocks to second break. Powder Technology, 237, 107–116. DOI
100 2013 Davison T.J., Okoli C., Wilson K., Lee A.F., Harvey A., Woodford J. and Sadhukhan J. 2013. Multiscale modelling of heterogeneously catalysed transesterification reaction process: an overview. RSC Advances, 3(18), 6226–6240. DOI
101 2012 Ng K.S., Zhang N. and Sadhukhan J. 2012. A graphical CO2 emission treatment intensity assessment for energy and economic analyses of integrated decarbonised production systems. Computers & Chemical Engineering, 45, 1–14. DOI
102 2012 Ng K.S., Zhang N. and Sadhukhan J. 2012. Decarbonised coal energy system advancement through CO2 utilisation and polygeneration. Clean Technologies and Environmental Policy, 14, 443–451. DOI
103 2011 Zhao Y., Sadhukhan J., Lanzini A., Brandon N. and Shah N. 2011. Optimal integration strategies for a syngas fuelled SOFC and gas turbine hybrid. Journal of Power Sources, 196(22), 9516–9527. DOI
104 2011 Ng K.S. and Sadhukhan J. 2011. Techno-economic performance analysis of bio-oil based Fischer-Tropsch and CHP synthesis platform. Biomass and Bioenergy, 35(7), 3218–3234. DOI
105 2011 Sadhukhan J. and Ng K.S. 2011. Economic and European union environmental sustainability criteria assessment of bio-oil-based biofuel systems: refinery integration cases. Industrial & Engineering Chemistry Research, 50(11), 6794–6808. DOI
106 2011 Kapil A., Wilson K., Lee A.F. and Sadhukhan J. 2011. Kinetic modeling studies of heterogeneously catalyzed biodiesel synthesis reactions. Industrial & Engineering Chemistry Research, 50(9), 4818–4830. DOI
107 2011 Mateos-Salvador F., Sadhukhan J. and Campbell G.M. 2011. The normalised Kumaraswamy breakage function: A simple model for wheat roller milling. Powder Technology, 208(1), 144–157. DOI
108 2011 Ng K.S. and Sadhukhan J. 2011. Process integration and economic analysis of bio-oil platform for the production of methanol and combined heat and power. Biomass and Bioenergy, 35(3), 1153–1169. DOI
109 2010 Sadhukhan J., Zhao Y., Leach M., Brandon N.P. and Shah N. 2010. Energy integration and analysis of solid oxide fuel cell based microcombined heat and power systems and other renewable systems using biomass waste derived syngas. Industrial & Engineering Chemistry Research, 49(22), 11506–11516. DOI
110 2010 Sadhukhan J., Zhao Y., Shah N. and Brandon N.P. 2010. Performance analysis of integrated biomass gasification fuel cell (BGFC) and biomass gasification combined cycle (BGCC) systems. Chemical Engineering Science, 65(6), 1942–1954. DOI
111 2010 Kapil A., Bhat S.A. and Sadhukhan J. 2010. Dynamic simulation of sorption enhanced reaction processes for biodiesel production. Industrial & Engineering Chemistry Research, 49(5), 2326–2335. DOI
112 2010 Ng K.S., Lopez Y., Campbell G.M. and Sadhukhan J. 2010. Heat integration and analysis of decarbonised IGCC sites. Chemical Engineering Research and Design, 88(2), 170–188. DOI
113 2009 Sadhukhan J., Ng K.S., Shah N. and Simons H.J. 2009. Heat integration strategy for economic production of combined heat and power from biomass waste. Energy & Fuels, 23(10), 5106–5120. DOI
114 2009 Xu M., Bhat S., Smith R., Stephens G. and Sadhukhan J. 2009. Multi-objective optimisation of metabolic productivity and thermodynamic performance. Computers & Chemical Engineering, 33(9), 1438–1450. DOI
115 2009 Misailidis N., Campbell G.M., Du C., Sadhukhan J., Mustafa M., Mateos-Salvador F. and Weightman R.M. 2009. Evaluating the feasibility of commercial arabinoxylan production in the context of a wheat biorefinery principally producing ethanol: Part 2. Process simulation and economic analysis. Chemical Engineering Research and Design, 87(9), 1239–1250. DOI
116 2009 Du C., Campbell G.M., Misailidis N., Mateos-Salvador F., Sadhukhan J., Mustafa M. and Weightman R.M. 2009. Evaluating the feasibility of commercial arabinoxylan production in the context of a wheat biorefinery principally producing ethanol. Part 1. Experimental studies of arabinoxylan extraction from wheat bran. Chemical Engineering Research and Design, 87(9), 1232–1238. DOI
117 2009 Bhat S.A. and Sadhukhan J. 2009. Process intensification aspects for steam methane reforming: An overview. AIChE Journal, 55(2), 408–422. DOI
118 2008 Xu M., Smith R. and Sadhukhan J. 2008. Optimization of productivity and thermodynamic performance of metabolic pathways. Industrial & Engineering Chemistry Research, 47(15), 5669–5679. DOI
119 2008 Kapil A., Bhat S.A. and Sadhukhan J. 2008. Multiscale characterization framework for sorption enhanced reaction processes. AIChE Journal, 54(4), 1025–1036. DOI
120 2008 Sadhukhan J., Mustafa M.A., Misailidis N., Mateos-Salvador F., Du C. and Campbell G.M. 2008. Value analysis tool for feasibility studies of biorefineries integrated with value added production. Chemical Engineering Science, 63(2), 503–519. DOI
121 2007 Sadhukhan J. and Smith R. 2007. Synthesis of industrial systems based on value analysis. Computers & Chemical Engineering, 31(5–6), 535–551. DOI
122 2006 Campbell G.M., Koutinas A.A., Wang R., Sadhukhan J. and Webb C. 2006. Cereal potential. The Chemical Engineer, 781, 26–28. PDF
123 2004 Sadhukhan J., Zhang N. and Zhu X.X. 2004. Analytical optimisation of industrial systems and applications to refineries, petrochemicals. Chemical Engineering Science, 59(20), 4169–4192. DOI
124 2003 Sadhukhan J., Zhang N. and Zhu X.X. 2003. Value analysis of complex systems and industrial application to refineries. Industrial & Engineering Chemistry Research, 42(21), 5165–5181. DOI
125 2002 Sadhukhan J. and Zhu X.X. 2002. Integration strategy of gasification technology: A gateway to future refining. Industrial & Engineering Chemistry Research, 41(6), 1528–1544. DOI