化工冶金硫资源定向转化回收单质硫技术

项目来源

国(略)研(略)((略)D(略)

项目主持人

刘(略)

项目受资助机构

北(略)大(略)

项目编号

2(略)Y(略)9(略)0(略)

立项年度

2(略)

立项时间

未(略)

研究期限

未(略) (略)

项目级别

国(略)

受资助金额

0(略)万(略)

学科

循(略)关(略)与(略)

学科代码

未(略)

基金类别

“循(略)关(略)与(略)”重点专项

关键词

硫(略);(略)力(略)低(略);(略)净(略) (略)f(略)t(略) (略)r(略)n(略)H(略) (略)v(略) (略)c(略) (略)o(略)n(略)y(略)d(略) (略)i(略)a(略)n

参与者

孙(略)梁(略)邹(略)

参与机构

中(略)天(略)份(略)司

项目标书摘要:针对(略)程驱动力不足等导致(略)课题通过在填料表面(略)复合膜的方法来调控(略)体分散性能和提升填(略)合吸收剂配方的优化(略)新工艺,实现对硫化(略)结果如下:_x00(略)能纳米粒子、粘合树(略)纳米复合涂层,通过(略)填料表面润湿性和亲(略)性填料的液滴分散锥(略)滴相比,分散液滴粒(略)散性能显著改善。_(略)了新型填料超重力反(略)证实表面微纳化处理(略)合性能,并将反应器(略)数分别提高15-2(略)x000D_(3)(略)应器的脱硫效果,H(略)94%以上,达到了(略)化氢的指标要求。_(略)量化计算筛选了复配(略)对硫化物的吸收能力(略)率可达99.99%(略)9%,实现了硫化氢(略)。

Applicati(略): In resp(略) problem (略)ty in dee(略)f H2S due(略)cient abs(略)ving forc(略)w-pressur(略)zation pr(略)dustrial (略)ases.Here(略)ulated th(略)roperty o(略)ng surfac(略)thod of c(略) organic/(略)omposite (略)mbranes,w(略)zed the l(略)rsion per(略)d improve(略)transfer/(略)ormance,a(略) with the(略)on of the(略)formulati(略)veloped a(略)s of high(略)ep desulf(略)nd achiev(略) removal (略)main find(略)e obtaine(略)llows:_x0(略)designed (略)te coatin(略) of funct(略)articles,(略)n,and res(略)s.The con(略)ntent of (略)es in coa(略)ed the ma(略)of surfac(略)nd hydrop(略)phobic pr(略)ing the m(略)king,the (略)persion c(略)eached 93(略)article s(略)dispersed(略)ecreased (略)ly 50%com(略)e parent (略)e liquid (略)performan(略)ved signi(略)000D_(2)T(略)ass trans(略)ance of a(略)g High gr(略)or was in(略)confirmin(略)ace micro(略)ying can (略)ly improv(略)g perform(略) High gra(略)r.The mas(略)specific (略)a and mas(略)coefficie(略)igh gravi(略)increased(略)10-20%,re(略)_x000D_(3(略)urization(略)a new pac(略)ravity re(略)nvestigat(略)removal r(略)was more (略),this res(略)s meeting(略) requirem(略)ep remova(略)der lower(略)x000D_(4)(略)mponents (略)rbent wer(略)using qua(略)alculatio(略)ized the (略)capacity (略)s.The rem(略)of H2S an(略)ulfur wer(略) 99%using(略)rbent,res(略)hose resu(略)d simulta(略)p removal(略) organic (略)0D

项目受资助省

北(略)

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