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城市生活垃圾低温热解产气特性的实验研究 被引量:24
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作者 王艳 张书廷 +2 位作者 张于峰 王洋 邓娜 《燃料化学学报》 EI CAS CSCD 北大核心 2005年第1期62-67,共6页
用直径200mm的外热式固定床反应器,以城市生活垃圾中9种典型成分的混合物为实验物料,在300 ℃~700 ℃对其进行了低温热解的实验研究.结果表明,在其他条件相同的情况下,随着热解温度的提高,热解反应所需时间缩短;热解气的总产率、最大... 用直径200mm的外热式固定床反应器,以城市生活垃圾中9种典型成分的混合物为实验物料,在300 ℃~700 ℃对其进行了低温热解的实验研究.结果表明,在其他条件相同的情况下,随着热解温度的提高,热解反应所需时间缩短;热解气的总产率、最大瞬时产率均增加;热解气的各成分随温度的升高呈现出不同的变化趋势;热解气的热值在600 ℃达到最大值,为15.13 MJ/m3,可满足民用燃气的要求. 展开更多
关键词 热解气特性 产气率 低温 城市生活垃圾
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Experimental study on SO_2 recovery using a sodium-zinc sorbent based flue gas desulfurization technology
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作者 张扬 王涛 +2 位作者 杨海瑞 张海 张绪祎 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第1期241-246,共6页
A sodium–zinc sorbent based flue gas desulfurization technology(Na–Zn-FGD) was proposed based on the experiments and analyses of the thermal decomposition characteristics of Ca SO3 and Zn SO3·2.5H2 O, the waste... A sodium–zinc sorbent based flue gas desulfurization technology(Na–Zn-FGD) was proposed based on the experiments and analyses of the thermal decomposition characteristics of Ca SO3 and Zn SO3·2.5H2 O, the waste products of calcium-based semi-dry and zinc-based flue gas desulfurization(Ca–SD-FGD and Zn–SD-FGD) technologies, respectively. It was found that Zn SO3·2.5H2 O first lost crystal H2 O at 100 °C and then decomposed into SO2 and solid Zn O at 260 °C in the air, while Ca SO3 is oxidized at 450 °C before it decomposed in the air. The experimental results confirm that Zn–SD-FGD technology is good for SO2 removal and recycling, but with problem in clogging and high operational cost. The proposed Na–Zn-FGD is clogging proof, and more cost-effective. In the new process, Na2CO3 is used to generate Na2SO3 for SO2absorption, and the intermediate product Na HSO3 reacts with Zn O powders, producing Zn SO3·2.5H2 O precipitate and Na2SO3 solution. The Na2SO3 solution is clogging proof, which is re-used for SO2 absorption. By thermal decomposition of Zn SO3·2.5H2 O, Zn O is re-generated and SO2 with high purity is co-produced as well. The cycle consumes some amount of raw material Na2CO3 and a small amount of Zn O only. The newly proposed FGD technology could be a substitute of the traditional semi-dry FGD technologies. 展开更多
关键词 Flue gas desulfurization Waste treatment Zn SO3·2.5H2O pyrolysis Sodium–zinc sorbent based SO2co-production
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