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冲床二度落互补式监测方法
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作者 缪海楠 曾盛明 +1 位作者 潘晓彬 周嵘 《轻工机械》 CAS 2015年第1期73-75,共3页
针对冲床单次冲压时曲柄过冲导致滑块二次落下的危险,在分析传统二度落监测方法局限的基础上,提出一种凹凸互补式2个凸轮同时监测二度落信号的方法,设计了一种独立于冲床主控PLC的独立监测单元,结果表明该方法可有效地提高冲床二度落信... 针对冲床单次冲压时曲柄过冲导致滑块二次落下的危险,在分析传统二度落监测方法局限的基础上,提出一种凹凸互补式2个凸轮同时监测二度落信号的方法,设计了一种独立于冲床主控PLC的独立监测单元,结果表明该方法可有效地提高冲床二度落信号判断的可靠性,降低冲床二度落信号漏检造成的危害。 展开更多
关键词 冲床 二度落 互补监测 安一
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Soil Microbiological Activity and Carbon Dynamics in the Current Climate Change Scenarios:A Review 被引量:13
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作者 Javid A.SOFI Aabid H.LONE +5 位作者 Mumtaz A.GANIE Naseer A.DAR Sajad A.BHAT Malik MUKHTAR Mohd Ashraf DAR Shazia RAMZAN 《Pedosphere》 SCIE CAS CSCD 2016年第5期577-591,共15页
Microbial activities are affected by a myriad of factors with end points involved in nutrient cycling and carbon sequestration issues.Because of their prominent role in the global carbon balance and their possible rol... Microbial activities are affected by a myriad of factors with end points involved in nutrient cycling and carbon sequestration issues.Because of their prominent role in the global carbon balance and their possible role in carbon sequestration, soil microbes are very important organisms in relation to global climate changes. This review focuses mainly on the responses of soil microbes to climate changes and subsequent effects on soil carbon dynamics. An overview table regarding extracellular enzyme activities(EAA) with all relevant literature data summarizes the effects of different ecosystems under various experimental treatments on EAA. Increasing temperature, altered soil moisture regimes, and elevated carbon dioxide significantly affect directly or indirectly soil microbial activities.High temperature regimes can increase the microbial activities which can provide positive feedback to climate change, whereas lower moisture condition in pedosystem can negate the increase, although the interactive effects still remain unanswered. Shifts in soil microbial community in response to climate change have been determined by gene probing, phospholipid fatty acid analysis(PLFA),terminal restriction length polymorphism(TRFLP), and denaturing gradient gel electrophoresis(DGGE), but in a recent investigations,omic technological interventions have enabled determination of the shift in soil microbe community at a taxa level, which can provide very important inputs for modeling C sequestration process. The intricacy and diversity of the soil microbial population and how it responds to climate change are big challenges, but new molecular and stable isotope probing tools are being developed for linking fluctuations in microbial diversity to ecosystem function. 展开更多
关键词 carbon cycling carbon dioxide carbon exchange carbon sequestration microbe community soil enzymes soil moisture soil temperature
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