{"id":14461,"date":"2019-02-20T09:40:57","date_gmt":"2019-02-20T14:40:57","guid":{"rendered":"https:\/\/cnr.ncsu.edu\/fb\/news\/2019\/02\/emerging-opportunities-and-jobs-in-the-bioeconomy\/"},"modified":"2024-05-13T20:09:19","modified_gmt":"2024-05-14T00:09:19","slug":"opportunities-jobs-in-bioeconomy","status":"publish","type":"post","link":"https:\/\/cnr.ncsu.edu\/fb\/news\/2019\/02\/opportunities-jobs-in-bioeconomy\/","title":{"rendered":"Emerging Opportunities and Jobs in the Bioeconomy"},"content":{"rendered":"\n
The next wave of world economic activity will require\nan infusion of new talent \u2013 young people interested in the STEM disciplines of\nscience, technology, engineering and math \u2013 but not necessarily those taking a\ntraditional path in higher education. <\/p>\n\n\n
That\u2019s the conclusion NC State University\u2019s Marko Hakovirta, head of the Department of Forest Biomaterials<\/a>, and Lucian Lucia, associate professor in the College of Natural Resources<\/a>, reached in a recent op-ed article for Nature Biotechnology<\/em>. We asked them to expand on their ideas for The Abstract<\/em>.<\/p>\n\n\n The\nAbstract (TA)<\/strong>: You describe the bioeconomy as the next\nwave in world economic cycles. What is it and how is it taking shape? <\/p>\n\n\n Hakovirta\/Lucia<\/strong>:\nThe bioeconomy is a type of sustainable economy based on biology and the\nbiosciences that is on the rise. For instance, it\u2019s probably not apparent to\nreaders that over $2 trillion of products in agriculture and forestry, food,\nbioenergy, biotechnology and green chemistry were exported worldwide in 2014,\namounting to 13 percent of world trade, up from 10 percent in 2007. <\/p>\n\n\n When we talk about a Kondratieff Wave, what we\u2019re referring to is a longterm economic cycle resulting from technological innovation that produces a long period of global prosperity, based on work by Nikolai Kondratieff, a famed economist, who noticed agricultural commodity and copper prices experienced long-term cycles<\/a>. His theory was that these periods are cyclical and involve evolution and self-correction. Therefore, what we are seeing now based on this observation is the nascent bioeconomy, the next so-called economic wave of human history. It could not come at a more propitious time given the environmental challenges we see with plastic waste especially in the oceans, regulations on plastic straws used on both sides of the Atlantic, and heightened sustainability consciousness in consumers and companies.<\/p>\n\n\n TA<\/strong>:\nAre we prepared for the bioeconomy?<\/p>\n\n\n Hakovirta\/Lucia<\/strong>: In some ways, yes, and in some ways, no. The bioeconomy is a complex system not currently as integrated as we would like that involves consumers, businesses (suppliers\/vendors, producers, supply chains), policy makers, and the federal and local governments. It\u2019s going to take a long time to evolve because the bioeconomy is highly systemic. There are several companies in the U.S. that are advancing the bioeconomy agenda, and consumer awareness has increased and is driving change. We are very optimistic about the direction we see at the moment.<\/p>\n\n\n TA<\/strong>:\nYou write that we need to step up training for STEM careers but that the higher\neducation pipeline alone cannot produce enough qualified workers for the\nbioeconomy. What other approaches can we use to prepare workers?<\/p>\n\n\n Hakovirta\/Lucia<\/strong>:\nIt\u2019s really a question of exciting students to the possibilities and\nopportunities in this emerging system. As we discuss in our article, we need to\ntarget students outside of the formal classroom or else it becomes more of an\nacademic or formalized exercise that relies more on aptitude than interest. If\nwe can capture students\u2019 interest through self-motivated but organized settings\n(cultural centers, museums, etc.), we have a chance to spark a curiosity and\nlifelong passion for learning the concepts intrinsic to the bioeconomy without\nit being overtly academic or scholastic and creating a sense of grading and\nrankings in school.<\/p>\n\n\n This mode of informal learning can lead to great\nsuccess but has not been as widely implemented as it ought to be. We don\u2019t\nthink about it, but when we do something outside of the classroom, like\nreplacing a car part or building a clubhouse, we invoke the principles of\ninformal learning. Gaming is a good example of an opportunity for informal\neducation and there are several new gaming platforms that are driving this type\nof learning. The key to this kind of learning is curiosity and an experimental\napproach. When given the right environment and support, we can begin to connect\nto the material in a deep and visceral way that goes beyond simple rote or\ntraditional classroom-based learning. We envision developing summer camps, for\nexample, where student teams are given problems within the bioeconomy to solve \u2013\nfor example, make a biobased material or energy product for practical everyday\napplication.<\/p>\n\n\n TA<\/strong>:\nHow can we ensure that the bioeconomy will benefit underrepresented groups and\nrural residents? <\/p>\n\n\n Hakovirta\/Lucia<\/strong>:\nWe envision engaging rural community students who tend to be from\nunderprivileged and underrepresented populations. In point of fact, most of the\nmanufacturing sites and biorefineries in the bioeconomy are located in rural\nAmerica. In addition to this, rural areas produce the feedstock used in\nbiofuels, such as woody biomass and agricultural residues. What we really want\nto do is to ensure that youth in rural areas realize that lignocellulosic\nbiomass is the new petroleum for the economy of the future.<\/p>\n\n\n TA<\/strong>:\nAre there any major initiatives underway to invest in new informal education\nprograms? <\/p>\n\n\n Hakovirta\/Lucia<\/strong>: We take our cues from the example of the Advancing Informal STEM Learning (AISL)<\/a> program of the U.S. National Science Foundation\u2019s Directorate of Education which seeks to \u2018advance new approaches to and evidence-based understanding of the design and development of STEM learning opportunities for the public in informal environments; provide multiple pathways for broadening access to and engagement in STEM learning experiences; advance innovative research on and assessment of STEM learning in informal environments; and engage the public of all ages in learning STEM in informal environments.\u2019 Typically, such efforts are multimillion-dollar and multi-year in scope.<\/p>\n\n\n Read Hakovirta and Lucia’s related Nature Biotechnology<\/a><\/em> article<\/a>.<\/p>\n","protected":false,"raw":"\n The next wave of world economic activity will require\nan infusion of new talent \u2013 young people interested in the STEM disciplines of\nscience, technology, engineering and math \u2013 but not necessarily those taking a\ntraditional path in higher education. <\/p>\n\n\n That\u2019s the conclusion NC State University\u2019s Marko Hakovirta, head of the Department of Forest Biomaterials<\/a>, and Lucian Lucia, associate professor in the College of Natural Resources<\/a>, reached in a recent op-ed article for Nature Biotechnology<\/em>. We asked them to expand on their ideas for The Abstract<\/em>.<\/p>\n\n\n The\nAbstract (TA)<\/strong>: You describe the bioeconomy as the next\nwave in world economic cycles. What is it and how is it taking shape? <\/p>\n\n\n Hakovirta\/Lucia<\/strong>:\nThe bioeconomy is a type of sustainable economy based on biology and the\nbiosciences that is on the rise. For instance, it\u2019s probably not apparent to\nreaders that over $2 trillion of products in agriculture and forestry, food,\nbioenergy, biotechnology and green chemistry were exported worldwide in 2014,\namounting to 13 percent of world trade, up from 10 percent in 2007. <\/p>\n\n\n When we talk about a Kondratieff Wave, what we\u2019re referring to is a longterm economic cycle resulting from technological innovation that produces a long period of global prosperity, based on work by Nikolai Kondratieff, a famed economist, who noticed agricultural commodity and copper prices experienced long-term cycles<\/a>. His theory was that these periods are cyclical and involve evolution and self-correction. Therefore, what we are seeing now based on this observation is the nascent bioeconomy, the next so-called economic wave of human history. It could not come at a more propitious time given the environmental challenges we see with plastic waste especially in the oceans, regulations on plastic straws used on both sides of the Atlantic, and heightened sustainability consciousness in consumers and companies.<\/p>\n\n\n TA<\/strong>:\nAre we prepared for the bioeconomy?<\/p>\n\n\n Hakovirta\/Lucia<\/strong>: In some ways, yes, and in some ways, no. The bioeconomy is a complex system not currently as integrated as we would like that involves consumers, businesses (suppliers\/vendors, producers, supply chains), policy makers, and the federal and local governments. It\u2019s going to take a long time to evolve because the bioeconomy is highly systemic. There are several companies in the U.S. that are advancing the bioeconomy agenda, and consumer awareness has increased and is driving change. We are very optimistic about the direction we see at the moment.<\/p>\n\n\n TA<\/strong>:\nYou write that we need to step up training for STEM careers but that the higher\neducation pipeline alone cannot produce enough qualified workers for the\nbioeconomy. What other approaches can we use to prepare workers?<\/p>\n\n\n Hakovirta\/Lucia<\/strong>:\nIt\u2019s really a question of exciting students to the possibilities and\nopportunities in this emerging system. As we discuss in our article, we need to\ntarget students outside of the formal classroom or else it becomes more of an\nacademic or formalized exercise that relies more on aptitude than interest. If\nwe can capture students\u2019 interest through self-motivated but organized settings\n(cultural centers, museums, etc.), we have a chance to spark a curiosity and\nlifelong passion for learning the concepts intrinsic to the bioeconomy without\nit being overtly academic or scholastic and creating a sense of grading and\nrankings in school.<\/p>\n\n\n This mode of informal learning can lead to great\nsuccess but has not been as widely implemented as it ought to be. We don\u2019t\nthink about it, but when we do something outside of the classroom, like\nreplacing a car part or building a clubhouse, we invoke the principles of\ninformal learning. Gaming is a good example of an opportunity for informal\neducation and there are several new gaming platforms that are driving this type\nof learning. The key to this kind of learning is curiosity and an experimental\napproach. When given the right environment and support, we can begin to connect\nto the material in a deep and visceral way that goes beyond simple rote or\ntraditional classroom-based learning. We envision developing summer camps, for\nexample, where student teams are given problems within the bioeconomy to solve \u2013\nfor example, make a biobased material or energy product for practical everyday\napplication.<\/p>\n\n\n TA<\/strong>:\nHow can we ensure that the bioeconomy will benefit underrepresented groups and\nrural residents? <\/p>\n\n\n Hakovirta\/Lucia<\/strong>:\nWe envision engaging rural community students who tend to be from\nunderprivileged and underrepresented populations. In point of fact, most of the\nmanufacturing sites and biorefineries in the bioeconomy are located in rural\nAmerica. In addition to this, rural areas produce the feedstock used in\nbiofuels, such as woody biomass and agricultural residues. What we really want\nto do is to ensure that youth in rural areas realize that lignocellulosic\nbiomass is the new petroleum for the economy of the future.<\/p>\n\n\n TA<\/strong>:\nAre there any major initiatives underway to invest in new informal education\nprograms? <\/p>\n\n\n Hakovirta\/Lucia<\/strong>: We take our cues from the example of the Advancing Informal STEM Learning (AISL)<\/a> program of the U.S. National Science Foundation\u2019s Directorate of Education which seeks to \u2018advance new approaches to and evidence-based understanding of the design and development of STEM learning opportunities for the public in informal environments; provide multiple pathways for broadening access to and engagement in STEM learning experiences; advance innovative research on and assessment of STEM learning in informal environments; and engage the public of all ages in learning STEM in informal environments.\u2019 Typically, such efforts are multimillion-dollar and multi-year in scope.<\/p>\n\n\n Read Hakovirta and Lucia's related Nature Biotechnology<\/a><\/em> article<\/a>.<\/p>\n"},"excerpt":{"rendered":" The next wave of world economic activity will require an infusion of new talent \u2013 young people interested in the STEM disciplines of science, technology, engineering and math \u2013 but not necessarily those taking a traditional path in higher education.…<\/p>\n","protected":false},"author":136,"featured_media":14462,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"source":"ncstate_wire","ncst_custom_author":"","ncst_show_custom_author":false,"ncst_dynamicHeaderBlockName":"","ncst_dynamicHeaderData":"","ncst_content_audit_freq":"","ncst_content_audit_date":"","ncst_content_audit_display":false,"ncst_backToTopFlag":"","footnotes":""},"categories":[55,69],"tags":[136,128],"class_list":["post-14461","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-alumni","category-graduate-profiles","tag-_from-newswire-collection-140","tag-_from-newswire-collection-209"],"displayCategory":null,"acf":[],"_links":{"self":[{"href":"https:\/\/cnr.ncsu.edu\/fb\/wp-json\/wp\/v2\/posts\/14461","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/cnr.ncsu.edu\/fb\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/cnr.ncsu.edu\/fb\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/cnr.ncsu.edu\/fb\/wp-json\/wp\/v2\/users\/136"}],"replies":[{"embeddable":true,"href":"https:\/\/cnr.ncsu.edu\/fb\/wp-json\/wp\/v2\/comments?post=14461"}],"version-history":[{"count":5,"href":"https:\/\/cnr.ncsu.edu\/fb\/wp-json\/wp\/v2\/posts\/14461\/revisions"}],"predecessor-version":[{"id":23160,"href":"https:\/\/cnr.ncsu.edu\/fb\/wp-json\/wp\/v2\/posts\/14461\/revisions\/23160"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/cnr.ncsu.edu\/fb\/wp-json\/wp\/v2\/media\/14462"}],"wp:attachment":[{"href":"https:\/\/cnr.ncsu.edu\/fb\/wp-json\/wp\/v2\/media?parent=14461"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/cnr.ncsu.edu\/fb\/wp-json\/wp\/v2\/categories?post=14461"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/cnr.ncsu.edu\/fb\/wp-json\/wp\/v2\/tags?post=14461"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}