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> 微流控技術(shù)在工業(yè)廢水在線監(jiān)測(cè)中的應(yīng)用與創(chuàng)新
微流控技術(shù)在工業(yè)廢水在線監(jiān)測(cè)中的應(yīng)用與創(chuàng)新.pdf - 周淵
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生物炭阻控稀土礦區(qū)重金屬污染效應(yīng)及機(jī)制研究.pdf - 田帥
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基于催化界面工程的新污染物高效捕集與轉(zhuǎn)化技術(shù).pdf - 魏卡佳
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廢酸資源化處置利用概述.pdf - 錢鈞
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Research into miniaturization is primarily driven by the need to reduce costs by reducing the consumption of expensive reagents and by increasing throughput and automation. By reducing reagent consumption by a factor of 103–104, these devices could provide dramatic savings for the repetitive assays often performed in diagnostic laboratories. In the same way that integrated circuits allowed fo 展開更多+
Research into miniaturization is primarily driven by the need to reduce costs by reducing the consumption of expensive reagents and by increasing throughput and automation. By reducing reagent consumption by a factor of 103–104, these devices could provide dramatic savings for the repetitive assays often performed in diagnostic laboratories. In the same way that integrated circuits allowed for the miniaturization of computers from the size of a room to the size of a notebook 收起+
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