期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
自我升级智能体的逻辑与认知问题 被引量:17
1
作者 任晓明 李熙 《中国社会科学》 CSSCI 北大核心 2019年第12期46-61,200,共17页
自我升级智能体的建立使人们对自我意识的研究有了一个程序化的标准,借助这种形式化的方法有可能弥合学界关于机器意识的分歧,破解机器意识研究面临的困局。但它也有逻辑上的局限。生成主义为自我升级智能体的提出奠定了认知基础。自我... 自我升级智能体的建立使人们对自我意识的研究有了一个程序化的标准,借助这种形式化的方法有可能弥合学界关于机器意识的分歧,破解机器意识研究面临的困局。但它也有逻辑上的局限。生成主义为自我升级智能体的提出奠定了认知基础。自我升级智能体的成功为生成主义提供了一个强有力的例证。尽管自我升级智能体向机器真正具有自我意识前进了一大步,但是人们只能说它具有了“功能意识”。造成机器意识困局的症结源自分析哲学传统与现象学传统的分歧和偏颇。解决的出路在于:从对立到相容,从互斥到互补,进而达到融通的新境界。 展开更多
关键词 自我升级智能体 自我意识 生成主义 哥德尔机
原文传递
Fate Processes of Chlorobenzenes in Soil and Potential Remediation Strategies: A Review 被引量:10
2
作者 Ferdi BRAHUSHI Fredrick Orori KENGARA +3 位作者 SONG Yang JIANG Xin Jean Charles MUNCH WANG Fang 《Pedosphere》 SCIE CAS CSCD 2017年第3期407-420,共14页
Chlorobenzenes (CBs) are a group of organic pollutants that pose a high environmental risk due to their toxicity, persistence and possible transfer in the food chain. Available data in literature show that CBs axe d... Chlorobenzenes (CBs) are a group of organic pollutants that pose a high environmental risk due to their toxicity, persistence and possible transfer in the food chain. Available data in literature show that CBs axe detected in different environmental compartments such as soil, water, air and sediment. The widespread presence of CBs in the environment is related to their former extensive use in agriculture and industry. Some CBs are ranked in the list of priority pollutants by the Stockholm Convention, and their reduction or elimination from the environment is therefore of high importance. Environmental risk assessment of CBs requires knowledge on the role and importance of the main environmental fate processes, especially in soil. Furthermore, development of remediation strategies for reduction or elimination of CBs from the environment is related to the enhancement of fate processes that increase their dissipation in various environmental compartments. The main objectives of the current review were to present up-to-date data on fate processes of CBs in the soil environment and to explore possible remediation strategies for soils contaminated with CBs. Dechlorination of highly-chlorinated benzenes is the main degradation pathway under anaerobic conditions, leading to the formation of lower-chlorinated benzenes. Biodegradation of lower-chlorinated benzenes is well documented, especially by strains of adapted or specialized microorganisms. Development of techniques that combine dechlorination of highly-chlorinated benzehes with biodegradation or biomineralization of lower-chlorinated benzenes can result in useful tools for remediation of soils contaminated with CBs. In addition, immobilization of CBs in soil by use of different amendments is a useful method for reducing the environmental risk of CBs. 展开更多
关键词 BIODEGRADATION chlorinated benzenes environmental risk IMMOBILIZATION MINERALIZATION organic pollutant reductivedechlorination
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部