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煤净化燃烧及伴生物产品化 被引量:5
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作者 朱雪芳 《中国工程科学》 1999年第1期53-57,共5页
煤净化燃烧及伴生物产品化新工艺,是在电厂燃煤中加特制的掺烧剂共同粉磨产生亲合颗粒,喷入锅炉内进行亲合煅烧。保证供热发电的同时实现降低残炭、提高粉煤灰活性、固结脱硫、降低NOx、CO_2,并将全部固态伴生物在具有速烧速... 煤净化燃烧及伴生物产品化新工艺,是在电厂燃煤中加特制的掺烧剂共同粉磨产生亲合颗粒,喷入锅炉内进行亲合煅烧。保证供热发电的同时实现降低残炭、提高粉煤灰活性、固结脱硫、降低NOx、CO_2,并将全部固态伴生物在具有速烧速冷的燃煤锅炉内直接生成优质水泥熟料;实现基本消除燃烧的全部污染(气体和固体污染),且不产生二次污染,从而达到清洁生产的目的。 展开更多
关键词 净化燃 伴生物产品化 速冷 固结脱硫 亲合颗料 亲合煅 掺烧剂
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130t/h CFB锅炉灰渣改性试验研究
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作者 张保森 盛伟 郑海坤 《电力科技与环保》 2013年第4期42-43,共2页
以某电厂130t/h循环流化床(CFB)锅炉为试验对象,进行了灰渣改性的试验研究,结果表明:在燃烧过程中加入一定的掺烧剂,可以对灰渣改性,生成制作水泥的水硬性胶凝材料,同时锅炉燃尽率增加,SOx、NOx和CO2排放量降低,实现了节能及环境保护的... 以某电厂130t/h循环流化床(CFB)锅炉为试验对象,进行了灰渣改性的试验研究,结果表明:在燃烧过程中加入一定的掺烧剂,可以对灰渣改性,生成制作水泥的水硬性胶凝材料,同时锅炉燃尽率增加,SOx、NOx和CO2排放量降低,实现了节能及环境保护的目的。 展开更多
关键词 循环流化床 锅炉 灰渣 掺烧剂
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电厂粉煤灰用于生产水泥熟料 被引量:1
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作者 王明建 刘焕清 《煤炭加工与综合利用》 CAS 2008年第3期45-46,共2页
在热电厂锅炉的燃料煤中添加一定比例的掺烧剂,既能提高固硫率和锅炉热效率,又能对燃烧后的灰渣进行改性,使其成为生产水泥的辅料,企业因此而获得较好的节能、环保和经济效益。
关键词 热电厂 一炉两用 掺烧剂 改性灰渣 水泥 效益
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Synthesis of K-doped three-dimensionally ordered macroporous Mn_(0.5)Ce_(0.5)O_δ catalysts and their catalytic performance for soot oxidation 被引量:7
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作者 于学华 赵震 +4 位作者 韦岳长 刘坚 李建梅 段爱军 姜桂元 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2015年第11期1957-1967,共11页
A series of K-doped Mn0.5Ce0.5Oδ (K-MCO) catalysts with three-dimensionally ordered macroporous (3DOM) structure and different K loadings were successfully synthesized using simple methods. These catalysts exhibi... A series of K-doped Mn0.5Ce0.5Oδ (K-MCO) catalysts with three-dimensionally ordered macroporous (3DOM) structure and different K loadings were successfully synthesized using simple methods. These catalysts exhibited well-defined 3DOM nanostructure, which consisted of extensive interconnecting networks of spherical voids. The effects of the calcination temperature and calcination time on the morphological characteristics and crystalline forms of the catalysts were systematically studied. The catalysts showed high catalytic activity for the combustion of soot. 3DOM 20% K-MCO-4h catalyst, in particular, showed the highest catalytic activity of all of the catalysts studied (e.g., Ts0 = 331 ~C and Smco2 = 95.3%). The occurrence of structural and synergistic effects among the K, Mn, and Ce atoms in the catalysts was favorable for enhancing their catalytic activity towards the combustion of diesel soot. Furthermore, the temperatures required for the complete combustion of the soot (〈400 ℃) were well within the exhaust temperature range (175-400 ℃), which means that the accumulated soot can be removed under the conditions of the diesel exhaust gas. These catalysts could therefore be used in numerous practical applications because they are easy to synthesize, exhibit high catalytic activity, and can be made from low cost materials. 展开更多
关键词 Three-dimensionally ordered macroporous structureMn0.5Ce0.5Oδ catalystPotassuim dopingSoot combustion
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