發明
中華民國
105127532
I 594797
觸媒的製備方法、其製備之觸媒及甲醇的製造方法
國立清華大學
2017/08/11
本計畫由清大團隊(包括清大、台大、中央、台科大、中興、元智、淡江等大學及食品工業研究所)與長春人造樹脂廠股份有限公司、長春石油化學股份有限公司及大連化學工業股份有限公司形成產學大聯盟,以綠色化學、製程強化與生質原料為基礎,開發利用新世代再生原料(包括CO2、氫氣、生質),以跳過石化原料,生產起始/中間物料,並開發綠色製程技術,減少生產過程中的步驟以及降低能源的使用和對環境的污染,以期解決長春集團及化工產業所面臨石化原料上漲、降低產品碳足跡、調整產品生產路徑朝向綠色技術等問題,此外亦提升現有產品功能與價值、拓展其應用領域並與競爭者有所區隔。 本計畫於本年度中以一個總計畫及七個分項計畫進行,分別為: 總計晝:策略思考、智財佈局、協調、解決問題、各計畫進度追蹤管理、經費管控等 分項計畫一:「CO2捕獲與再利用」 分項計畫二:「綠能產氫」 分項計畫三:「生質原料前處理與化學品生產」 分項計畫四:「前瞻生物反應技術」 分項計畫五:「先進製程技術在綠色化學工程的應用」 分項計畫六:「高分子產品高值化技術」 分項計畫七:「關鍵技術之建立」 On the basis of biomass, green chemistry and process intensification, the Tsing Hua team including eight universities as NTHU, NTU, NTUST, TKU, YZU, NCU, NCTU and NCHU as well as Food Research Institute and CCP have formed an alliance to effectively utilize next generation renewable materials (CO2, hydrogen and biomass) and to develop green process technologies to produce important intermediate materials while skipping petrochemical starting materials and minimizing process steps. The developed technologies and processes can solve the problems including the cost reduction of raw materials, reduction of carbon footprint, required to move green technologies, etc. which petrochemical and chemical industries are now facing. There are seven technical projects are included in this project, they are: Sub-project 1 is now developing absorber and adsorption processes with high CO2 capture efficiency and low energy consumption, catalyst and CO2 utilization technologies. Sub-project 2 is developing electrocatalytic and photocatalytic water splitting techniques for hydrogen production, which employ green energy as an energy resource and water as the raw material. Sub-project 3 is developing new biomass pretreatment processes and next generation simultaneous saccharification and co-fermentation (SSCF) and consolidated bioprocessing (CBP) processes to convert biomass to useful intermediate materials with minimal process steps. Sub-project 4 is screening microorganisms and developing novel genome editing/metabolic engineering technologies to re-wire microbial metabolic pathways, in attempts to convert CO2/biomass to intermediate materials. Sub-project 5 is developing advanced reaction, separation and process integration technologies to produce CCP’s leading products while minimizing energy consumption and waste production. Sub-project 6 is to further enhance the functionality of polymer products derived from the upstream green processes, by developing core technologies including molecular design/polymerization, chemical modification, catalyst synthesis, nanoparticle formulation, etc. and Sub-project 7 is to establish fundamentals of core technologies and analysis etchniques of high-quality products at Chnag Chun plant sites.
本案為執行科技部產學大聯盟計畫產出,依據共有協議書之規範,專利權比例分配如下: 國立清華大學65.22% 長春人造樹脂廠股份有限公司13.04% 長春石油化學股份有限公司21.74%
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