Abstract:Low-carbon technological innovation adoption of manufacturing enterprises is an effective way to achieve the targets of reducing emissions.In order to explore factors that influence low-carbon technological innovation adoption of manufacturing enterprises,it constructs research framework based on deep interviews and grounded theory.It puts forward six main categories of low-carbon technological innovation adoption,which include income of low-carbon technological innovation adoption,epidemic standard pressure,interaction among manufacturing enterprises,government regulations,participation of intermediary institutions and obstacles of low-carbon technological innovation adoption.Then this paper makes a further explanation of relationships between the core and fundamental categories,analyzes the interactions among fundamental categories.Finally,it carries out the theory saturation test.
[1]郝新鸿,蔡仲.IPCC与哥本哈根气候大会——中国要争取科学话语权[J].科学学研究,2011,29(1):3-8.
[2]石敏俊,周晟吕.低碳技术发展对中国实现减排目标的作用[J].管理评论,2010,22(6):48-53.
[3]马丁,陈文颖.中国2030年碳排放峰值水平及达峰路径研究[J].中国人口资源与环境,2016,26(5):1-4.
[4]华锦阳.制造业低碳技术创新的动力源探究及其政策涵义[J].科研管理,2011,32(6):42-47.
[5]MANSIKKASALO A,SODERHOLM P.Energy efficient and low-carbon technology in process industries:innovation,diffusion and the role of public policy[J].European energy market,2012(9):1-8.
[6]SID M.Lithium-ion rechargeable batteries[J].Journal of power sources,1994,51(1-2):79-104.
[7]JAYALAKSHMI M,BALASUBRAMANIAN K.Simple capacitors to supercapacitors—an overview[J].International journal of electrochemical science,2008(3):1196-1217.
[8]BARBARA P,KATJA S.Greenhouse gas mitigation in a carbon constrained world:the role of carbon capture and storage[J].Energy policy,2009,37(12):5081-5093.
[9]DOMHNAILL H.Enhanced energy efficiency and reliability of telecommunication equipment with the introduction of novel air cooled thermal architectures[J].Bell labs technical journal,2010,15(2):31-51.
[10]HENRIK H,ASA L.Explaining adoption of end of pipe solutions and clean technologies—determinants of firm‘s investments for reducing emissions to air in four sectors in Sweden[J].Energy policy,2010,38(7):3644-3651.
[11]FAULKNER A.Regulatory policy as innovation:constructing rules of engagement for a technological zone of tissue engineering in the European Union[J].Research policy,2009,38(4):637-646.
[12]陈艳莹,原毅军.收益不确定性与绿色技术采纳的后动优势[J].管理科学,2005,18(4):92-97.
[13]但智钢,段宁,于秀玲,尹洁,白艳英,宋丹娜.重点企业清洁生产推进的驱动因素分析[J].环境科学研究,2010,23(2):242-247.
[14]杨伟娜,刘西林.排污权交易制度下企业环境技术采纳时间研究[J].科学学研究,2011,29(2):230-237.
[15]何如海,江激宇,张士云,尹昌斌,柯木飞.规模化养殖下的污染清洁处理技术采纳意愿研究——基于安徽省 3市奶牛养殖场的调研数据[J].南京农业大学学报(社会科学版),2013,13(3):47-53.
[16]陶群山,胡浩,王其巨.环境约束条件下农户对农业新技术采纳意愿的影响因素分析[J].统计与决策,2013(1):106-110.
[17]段琪,等.基于扎根理论的高校科技创业生态系统研究[J].科学学与科学技术管理,2015,36(11):159-168.
[18]李柏洲,徐广玉,苏屹.基于扎根理论的企业知识转移风险识别研究[J].科学学与科学技术管理,2014,35(4):57-65.