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新版Bethesda指南、微卫星不稳定性检测和免疫组化检查诊断遗传性非息肉性结直肠癌的准确性 被引量:23
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作者 Virginia Pinol, +8 位作者 MD antoni Castells, MD Montserrat Andreu, MD 许峰(译) 祝学光(校) 《美国医学会杂志(中文版)》 2005年第6期373-373,共1页
背景:挑选适当个体进行遗传性非息肉性结直肠癌(hereditary nonpolyposis colorectal cancer,HNPCC)基因检测有一定难度。最近,美国国立癌症研究所(National Cancer Institute)在新版Bethesda指南中给出了一套新的推荐方案,以... 背景:挑选适当个体进行遗传性非息肉性结直肠癌(hereditary nonpolyposis colorectal cancer,HNPCC)基因检测有一定难度。最近,美国国立癌症研究所(National Cancer Institute)在新版Bethesda指南中给出了一套新的推荐方案,以明确哪些HNPCC个体应行微卫星不稳定性检测。 展开更多
关键词 遗传性非息肉性结直肠癌 微卫星不稳定性检测 检查诊断 免疫组化 癌症研究所
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Biochar and pyrolytic gas properties from pyrolysis of simulated municipal solid waste(SMSW)under pyrolytic gas atmosphere
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作者 Mi Yan Sicheng Zhang +5 位作者 Haryo Wibowo Nurak Grisdanurak Yi Cai Xuanyou Zhou Ekkachai Kanchanatip antoni 《Waste Disposal and Sustainable Energy》 2020年第1期37-46,共10页
Municipal Solid Waste(MSW)was converted into high-grade solid fuels(biochar)and gaseous product via thermal pyrolysis under pyrolytic gas atmosphere.The experiment was carried out in a packed-bed reactor at the temper... Municipal Solid Waste(MSW)was converted into high-grade solid fuels(biochar)and gaseous product via thermal pyrolysis under pyrolytic gas atmosphere.The experiment was carried out in a packed-bed reactor at the temperature range of 600-800℃ in both atmospheres of N_(2) and pyrolytic gas.Gas,liquid,and solid products were analyzed by gas chromatograph and elemental analysis.Amount of biochar obtained from both atmospheres were not significantly different.CH_(4) and CO_(2) in pyrolytic gas promoted the release of volatile in the MSW,resulting in lower ratio of VM/FC,ca.0.13.The atomic ratios of O/C and H/C were around 0.02-0.11 and 0.005-0.035,respectively.These values were equivalent to anthracite coal type.On the other hand,the liquid fuel yield under pyrolytic gas condition was found to be higher,compared with that under N_(2) condition.In addition,the enhancement of H_(2) and CO production was accompanied by the decrease in CH_(4) and CO_(2) output.Overall,the operating condition at 800℃ or higher with reaction times longer than 4 min were recommended for production of biochar with fuel qualities approaching anthracite coal. 展开更多
关键词 Municipal solid waste PYROLYSIS Pyrolytic gas atmosphere BIOCHAR
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