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基于博弈论组合赋权的湘南某矿净化库防洪风险评价云模型研究 被引量:8
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作者 阳雨平 陈国国 +1 位作者 杨田杰 黄丕森 《安全与环境学报》 CAS CSCD 北大核心 2021年第2期546-553,共8页
为了更加直观地评判金属矿山净化库的防洪能力,从防洪安全角度提出了基于云模型的净化库防洪风险综合评价模型。依据《水库大坝安全评价导则》和《水库大坝安全鉴定办法》,选取12个评判指标,构建了防洪风险评价指标体系;通过云发生器得... 为了更加直观地评判金属矿山净化库的防洪能力,从防洪安全角度提出了基于云模型的净化库防洪风险综合评价模型。依据《水库大坝安全评价导则》和《水库大坝安全鉴定办法》,选取12个评判指标,构建了防洪风险评价指标体系;通过云发生器得出各评价指标的云数字特征参数;选用博弈论AHP-CRITIC组合赋权法确定各评价指标的权重;利用综合云模型得出综合云数字特征参数,根据最大确定度原则得出净化库防洪风险等级。以湘南某金属矿山净化库为例进行分析,结果表明,该模型的权重确定方法使评价结果更加可靠,可以为净化库的安全管理提供可行性参考。 展开更多
关键词 安全管理工程 云模型 博弈论 AHP-CRITIC 防洪风险评价
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In Vitro Functional Study of Rice Adenosine 5'-Phosphosulfate Kinase
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作者 Wang De-zhen chen guo-guo +3 位作者 Lu Lu-jia Jiang Zhao-jun Rao Yu-chun Sun Mei-hao 《Rice science》 SCIE CSCD 2016年第3期152-159,共8页
Sulfate can be activated by ATP sulfurylase and adenosine 5'-phosphosulfate kinase(APSK) in vivo. Recent studies suggested that APSK in Arabidopsis thaliana regulated the partition between APS reduction and phosph... Sulfate can be activated by ATP sulfurylase and adenosine 5'-phosphosulfate kinase(APSK) in vivo. Recent studies suggested that APSK in Arabidopsis thaliana regulated the partition between APS reduction and phosphorylation and its activity can be modulated by cellular redox status. In order to study regulation of APSK in rice(Os APSK), Os APSK1 gene was cloned and its activity was analyzed. Os APSK1 C36 and C69 were found to be the conserved counterparts of C86 and C119, which involved in disulfide formation in At APSK. C36A/C69 A Os APSK1 double mutation was made by site directed mutagenesis. Os APSK1 and its mutant were prokaryotically over-expressed and purified, and then assayed for APS phosphorylation activity. Os APSK1 activity was depressed by oxidized glutathione, while the activity of its mutant was not. Further studies in the case that oxidative stress will fluctuate in vivo 3'-phosphoadenosine-5'-phosphosulfate content, and all APSK isoenzymes have similar regulation patterns are necessary to be performed. 展开更多
关键词 RICE SULFATE ASSIMILATION ADENOSINE 5'-phosphosulfate KINASE CYSTEINE redox environment
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