中国基础科学
中國基礎科學
중국기출과학
CHINA BASIC SCIENCE
2009年
5期
14-19
,共6页
于波%张学礼%李寅%马延和
于波%張學禮%李寅%馬延和
우파%장학례%리인%마연화
生物炼制%细胞工厂%生物质资源%生物能源%大宗化学品
生物煉製%細胞工廠%生物質資源%生物能源%大宗化學品
생물련제%세포공엄%생물질자원%생물능원%대종화학품
biorefinery%cell factories%biomass%renewable fuel%bulk chemicals
生物炼制是以生物可再生资源为原料生产能源与化工产品的新型工业模式.认识并利用微生物广泛的物质分解转化与卓越的化学合成能力,将微生物改造成为高效的生物炼制细胞工厂,使生物炼制逐步取代传统石油炼制,对于降低化石资源消耗、最终实现工业原材料来源的战略大转移、促进经济社会的可持续发展具有重要意义.本文分析了构建生物炼制细胞工厂亟待解决的关键问题,介绍了有关生物炼制细胞工厂的国内外最新研究进展,并对生物炼制细胞工厂的发展前景进行了展望.作为工业生物技术的核心支撑技术之一,生物炼制细胞工厂必将在解决资源、能源问题中起到重要作用.
生物煉製是以生物可再生資源為原料生產能源與化工產品的新型工業模式.認識併利用微生物廣汎的物質分解轉化與卓越的化學閤成能力,將微生物改造成為高效的生物煉製細胞工廠,使生物煉製逐步取代傳統石油煉製,對于降低化石資源消耗、最終實現工業原材料來源的戰略大轉移、促進經濟社會的可持續髮展具有重要意義.本文分析瞭構建生物煉製細胞工廠亟待解決的關鍵問題,介紹瞭有關生物煉製細胞工廠的國內外最新研究進展,併對生物煉製細胞工廠的髮展前景進行瞭展望.作為工業生物技術的覈心支撐技術之一,生物煉製細胞工廠必將在解決資源、能源問題中起到重要作用.
생물련제시이생물가재생자원위원료생산능원여화공산품적신형공업모식.인식병이용미생물엄범적물질분해전화여탁월적화학합성능력,장미생물개조성위고효적생물련제세포공엄,사생물련제축보취대전통석유련제,대우강저화석자원소모、최종실현공업원재료래원적전략대전이、촉진경제사회적가지속발전구유중요의의.본문분석료구건생물련제세포공엄극대해결적관건문제,개소료유관생물련제세포공엄적국내외최신연구진전,병대생물련제세포공엄적발전전경진행료전망.작위공업생물기술적핵심지탱기술지일,생물련제세포공엄필장재해결자원、능원문제중기도중요작용.
Biorefinery is a new manufacturing model that converts renewable biomass to fuels, power and chemicals. Through characterization and utilization of the robust and diverse metabolic capabilities of microorganisms for biomass degradation and chemical synthesis, microorganisms can be engineered to be efficient cell factories for biorefinery. This new biorefinery model can facilitate solutions to our nation's urgent issues such as energy security, resources, and environmental protection. It will have significant benefits to the sustainable development of our society, since it can decrease our dependence on fossil resources, prevent severe environmental problems, and facilitate transformation of the traditional petroleum-based economy to a more sustainable one that is based on renewable biomass resources. Here, we discussed the concept of "cell factories for biorefinery" and reviewed the recent developments of cell factory design, construction and optimization. The challenges and perspectives for developing efficient cell factories were also discussed.