{"id":17,"date":"2013-02-26T20:32:40","date_gmt":"2013-02-26T20:32:40","guid":{"rendered":"http:\/\/faculty.engineering.ucdavis.edu\/template\/?page_id=17"},"modified":"2024-04-19T06:05:04","modified_gmt":"2024-04-19T06:05:04","slug":"publications","status":"publish","type":"page","link":"https:\/\/faculty.engineering.ucdavis.edu\/jenkins\/publications\/","title":{"rendered":"Publications"},"content":{"rendered":"<h3>Selected Recent Publications<\/h3>\n<p>Li, K., S. Kirkland, B-L. Yeo, C. Tubbesing, V. Bandaru, L. Song, L. Holstege, B.R. Hartsough, A. Kendall and <strong>B.M. Jenkins<\/strong>.  2023.  Integrated economic and environmental modeling of forest biomass for renewable energy in California: Part I &#8211; Model development.  Biomass and Bioenergy 173:106774, https:\/\/doi.org\/10.1016\/j.biombioe.2023.106774.<\/p>\n<p>El Mashad, H.M., A. Edalati, R. Zhang and <strong>B.M. Jenkins<\/strong>. 2022.  Production and characterization of biochar from almond shells.  Clean Technol. 4:854-864, doi.org\/10.3390\/cleantechnol4030053. <\/p>\n<p>Barfod, G.H., R.Seiser, R. Yazdani, L. Wang, C.E. Lesher, <strong>B.M. Jenkins<\/strong> and P. Thy.  2022.  Anthropocene geochemical and technological signatures of an experimental landfill bioreactor in the Central Valley of California.  Anthropocene Science https:\/\/doi.org\/10.1007\/s44177-022-00020-6. <\/p>\n<p>Wang, K., A.M.  Hobby, Y. Chen, A. Chio, <strong>B.M. Jenkins<\/strong>, and R. Zhang. 2022. Techno-economic analysis on an industrial-scale production system of biodegradable plastics from cheese by-products by halophiles. Processes 2022, 10(1):17, https:\/\/doi.org\/10.3390\/pr10010017.<\/p>\n<p>Zhang, N., T. Walker, <strong>B.M. Jenkins<\/strong>, S. Anderson and Y. Zheng.  2021.   Bioleaching of sorghum straw in bioreactors for biomass cleaning.  Fermentation 7(4):270, https:\/\/doi.org\/10.3390\/fermentation7040270.<\/p>\n<p>Cunningham, P.C., L. Wang, P. Thy, <strong>B.M. Jenkins<\/strong> and S. Miller.  2021.  Effects of leaching method and ashing temperature of rice residues for energy production and construction materials.  ACS Sustainable Chemistry and Engineering, doi: 10.1021\/acssuschemeng.0c07919.  <\/p>\n<p>Li, Y., J. Xue, J. Peppers, N. Kado, C. Vogel, C. Alaimo, P. Green, R. Zhang, <strong>B.M. Jenkins<\/strong>, M. Kim, T. Young and M. Kleeman.  2021.  Chemical and toxicological properties of emissions from a light-duty CNG vehicle fueled with renewable natural gas.  Environmental Science and Technology 55(5):2820-2830, doi: 10.1021\/acs.est.0c04962. <\/p>\n<p>Rojo, F., R. Dhillon, S. Upadhyaya and <strong>B.M. Jenkins<\/strong>.  2020.  Development of a dynamic model to estimate canopy PAR interception.  Biosystems Engineering 198:120-136.<\/p>\n<p>Peppers, J., Y. Li, J. Xue, X. Chen, C. Alaimo, L. Wong, T. Young, P.G. Green, <strong>B. Jenkins<\/strong>, R. Zhang, M.J. Kleeman.  2019. Performance analysis of membrane separation for upgrading biogas to biomethane at small scale production sites.  Biomass and Bioenergy 128:105314, https:\/\/doi.org\/10.1016\/j.biombioe.2019.105314.<\/p>\n<p>Li, Y., C.P. Alaimo, M. Kim, N.Y. Kado, J. Peppers, J. Xue, C. Wan, P.G. Green, R. Zhang, <strong>B.M. Jenkins<\/strong>, C.F.A. Vogel, S. Wuertz, T.M. Young and M.J. Kleeman.  2019.  Composition and toxicity of biogas produced from different feedstocks in California.  Environmental Science and Technology 53:11569-11579.<\/p>\n<p>McCaffrey, Z., P. Thy, M. Long, M. Oliveira, L. Wang, L. Torres, T. Aktas, B.-S. Chiou, W. Orts and <strong>B.M. Jenkins<\/strong>.  2019.  Air and steam gasification of almond biomass.  Frontiers in Energy Research 7:84, doi: 10.3389\/fenrg.2019.00084.<\/p>\n<p><strong>Jenkins, B.M.<\/strong>, L.L. Baxter and J. Koppejan.  2019.  Biomass Combustion.  Chapter 3, R. Brown (ed.), Thermochemical processing of biomass: conversion into fuels, chemicals and power, 2nd Edition, John Wiley &amp; Sons, Hoboken, New Jersey.<\/p>\n<p>Wiryadinata, S., <strong>B. M. Jenkins<\/strong>, K. Kornbluth and P. Erickson.  2019.  Experimental and numerical study into the effects of passive flow disturbance on conversion and C7+ yield of the packed bed Fischer-Tropsch reaction.  Fuel 254 115571, https:\/\/doi.org\/10.1016\/j.fuel.2019.05.154<\/p>\n<p>Zhang, N., L. Wang, K. Zhang, T. Walker, P. Thy, <strong>B. Jenkins<\/strong> and Y. Zheng.  2019.  Pretreatment of lignocellulosic biomass using bioleaching to reduce inorganic elements.  Fuel 246:386-393.<\/p>\n<p>Zheng, YY., <strong>B.M. Jenkins<\/strong>, K. Kornbluth, A. Kendall, C. Tr\u00e6holt. 2018. Optimization of a biomass-integrated renewable energy microgrid with demand side management under uncertainty.\u00a0 Applied Energy 230:836-844.<\/p>\n<p>Merz, J., V. Bandaru, Q. Hart, N. Parker and <strong>B.M. Jenkins<\/strong>. 2018. Hybrid poplar based biorefinery siting web application (HP-BiSWA): an online decision support application for siting hybrid poplar based biorefineries. Computers and Electronics in Agriculture 155:76-83.<\/p>\n<p>Zheng, YY., <strong>B.M. Jenkins<\/strong>, K. Kornbluth, A. Kendall and C. Tr\u00e6holt. 2018. Optimal design and operating strategies for a biomass-fueled combined heat and power system with energy storage.\u00a0 Energy 155:620-629.<\/p>\n<p>Li, X., K. Li, H. Li, H. El-Mashad, <strong>B.M. Jenkins<\/strong> and W. Yin.  2018.  White poplar microwave pyrolysis: heating rate and optimization of biochar yield. Bioresources 13(1):1107-1121.<\/p>\n<p>Zheng, YY., <strong>B.M. Jenkins<\/strong>, K. Kornbluth and C. Tr\u00e6holt. 2018. Optimization under uncertainty of a biomass-integrated renewable energy microgrid with energy storage.\u00a0 Renewable Energy 123:214-217.<\/p>\n<p>Byrnes, R., V. Eviner, E. Kebreab, W.R. Horwath, L. Jackson, <strong>B.M. Jenkins<\/strong>, S. Kaffka, A. Kerr, J. Lewis, F.M. Mitloehner, J.P. Mitchell, K.M. Scow, K.L. Steenwerth and S. Wheeler. 2017. Review of research to inform California\u2019s climate scoping plan:\u00a0 Agriculture and working lands.\u00a0 California Agriculture UC Global Food Initiative Special Issue, California Agriculture 71(3):160-168.<\/p>\n<p>Thy, P., G.H. Barfod, A.M. Cole, E.L. Brown, <strong>B.M. Jenkins<\/strong> and C.E. Lesher. 2017. Trace metal release during wood pyrolysis.\u00a0 Fuel 203:548-556.<\/p>\n<p>Hiloidhari, M., D.C. Baruah, A. Singh, S. Kataki, K. Medhi, S. Kumari, T.V. Ramachandra, <strong>B.M. Jenkins<\/strong> and I.S. Thakur. 2017. Emerging role of geographical information system (GIS), life cycle assessment (LCA) and spatial LCA (GIS-LCA) in sustainable bioenergy planning.\u00a0 Bioresource Technology 242(SI):218-226.<\/p>\n<p>Liu, Z., L. Wang, <strong>B.M. Jenkins<\/strong>, Y. Li, W. Yi and Z. Li. 2017. Influence of alkali and alkaline earth metallic species on the phenolic species of pyrolysis oil.\u00a0 Bioresources 12(1):1611-1623.<\/p>\n<p>Bandaru, V., Y. Pei, Q. Hart and <strong>B.M. Jenkins<\/strong>. 2017. Impact of biases in gridded weather datasets on biomass estimates of short rotation woody cropping systems.\u00a0 Agricultural and Forest Meteorology 233:71-79.<\/p>\n<p>Karimi, M., <strong>B. M. Jenkins<\/strong> and P. Stroeve. 2016. Multi-objective optimization of transesterification in biodiesel production catalyzed by immobilized lipase.\u00a0 Biofuels, Bioproducts &amp; Biorefining 10:804\u2013818, doi:10.1002\/bbb.1706.<\/p>\n<p>Wiryadinata, S., M. Modera, <strong>B. Jenkins<\/strong> and K. Kornbluth. 2016. Technical and economic feasibility of unitary, horizontal ground-loop geothermal heat pumps for space conditioning in selected California climate zones.\u00a0 Energy and Buildings 119:164-172.<\/p>\n<p>Li Y., P.W. Tittmann, N.C. Parker and <strong>B.M. Jenkins<\/strong>. 2016.\u00a0 Economic impact of combined torrefaction and pelletization processes on forestry biomass supply.\u00a0 Global Change Biology Bioenergy, doi: 10.1111\/gcbb.12375.<\/p>\n<p>Bandaru, V., N.C. Parker, Q. Hart, M. Jenner, B-L. Yeo, J.T. Crawford, Y. Li, P.W. Tittmann, L. Rogers, S.R. Kaffka and <strong>B.M. Jenkins<\/strong>. 2015. Economic sustainability modeling provides decision support for assessing hybrid poplar-based biofuel development in California.\u00a0 California Agriculture 69(3):171-176.<\/p>\n<p>Aktas, T., P. Thy, R.B. Williams, Z. McCaffrey, R. Khatami and <strong>B.M. Jenkins<\/strong>.\u00a0 2015.\u00a0 Characterization of almond processing residues from the Central Valley of California for thermal conversion.\u00a0 Fuel Processing Technology 140:132-147.<\/p>\n<p>Hart, Q.J., P.W. Tittmann,V. Bandaru and <strong>B.M. Jenkins<\/strong>.\u00a0 2015.\u00a0 Modeling poplar growth as a short rotation woody crop for biofuels in the Pacific Northwest. Biomass and Bioenergy, 79:12-27.<\/p>\n<p>Brum, M., P. Erickson, <strong>B. Jenkins<\/strong> and K. Kornbluth. 2015. A comparative study of district and individual energy systems providing electrical-based heating, cooling, and domestic hot water to a low-energy use residential community.\u00a0 Energy and Buildings 92:306-312.<\/p>\n<p>Steenwerth, K.L., A.K. Hodson, A.J. Bloom, M.R. Carter, A. Cattaneo, C.J. Chartres, J.L. Hatfield, K. Henry, J.W. Hopmans, W.R. Horwath, <strong>B.M. Jenkins<\/strong>, E. Kebreab, R. Leemans, L. Lipper, M.N. Lubell, S. Msangi, R. Prabhu, M.P. Reynolds, S.S. Solis, W.M. Sischo, M. Springborn, P. Tittonell, S.M. Wheeler, S.J. Vermeulen, E.K. Wollenberg, L.S. Jarvis and L.E. Jackson. 2014. Climate-smart agriculture global research agenda: scientific basis for action.\u00a0 Agriculture &amp; Food Security 3:11, http:\/\/www.agricultureandfoodsecurity.com\/content\/3\/1\/11.<\/p>\n<p><strong>Jenkins, B.M.<\/strong> 2014. Global agriculture\u2014industrial feedstocks for energy and materials.\u00a0 Encyclopedia of Agriculture and Food Systems 2014:461-498, doi: 10.1016\/B978-0-444-52512-3.00156-X.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Selected Recent Publications Li, K., S. Kirkland, B-L. Yeo, C. Tubbesing, V. Bandaru, L. Song, L. Holstege, B.R. Hartsough, A. Kendall and B.M. Jenkins. 2023. Integrated economic and environmental modeling of forest biomass for renewable energy in California: Part I &#8211; Model development. Biomass and Bioenergy 173:106774, https:\/\/doi.org\/10.1016\/j.biombioe.2023.106774. El Mashad, \u2026 <a class=\"continue-reading-link\" href=\"https:\/\/faculty.engineering.ucdavis.edu\/jenkins\/publications\/\"> Continue reading <span class=\"meta-nav\">&rarr; <\/span><\/a><\/p>\n","protected":false},"author":3,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"open","template":"","meta":{"inline_featured_image":false,"ngg_post_thumbnail":0,"footnotes":""},"class_list":["post-17","page","type-page","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/faculty.engineering.ucdavis.edu\/jenkins\/wp-json\/wp\/v2\/pages\/17","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/faculty.engineering.ucdavis.edu\/jenkins\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/faculty.engineering.ucdavis.edu\/jenkins\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/faculty.engineering.ucdavis.edu\/jenkins\/wp-json\/wp\/v2\/users\/3"}],"replies":[{"embeddable":true,"href":"https:\/\/faculty.engineering.ucdavis.edu\/jenkins\/wp-json\/wp\/v2\/comments?post=17"}],"version-history":[{"count":13,"href":"https:\/\/faculty.engineering.ucdavis.edu\/jenkins\/wp-json\/wp\/v2\/pages\/17\/revisions"}],"predecessor-version":[{"id":300,"href":"https:\/\/faculty.engineering.ucdavis.edu\/jenkins\/wp-json\/wp\/v2\/pages\/17\/revisions\/300"}],"wp:attachment":[{"href":"https:\/\/faculty.engineering.ucdavis.edu\/jenkins\/wp-json\/wp\/v2\/media?parent=17"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}