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微藻粗生物油催化加氢提质:外加氢源影响
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作者 王智聪 谢龙飞 段培高 《洁净煤技术》 CAS CSCD 北大核心 2024年第3期21-28,共8页
催化加氢是微藻粗生物油改性提质的有效途径,其中氢源是关键。探究了5种常规金属(铁、铝、锡、锌、镁)在超临界水条件下的产氢量,相同质量下铝的产氢量最大。在400℃、2 h条件下,以Ru/C为催化剂,以四氢萘为供氢介质对比了4种不同氢源(... 催化加氢是微藻粗生物油改性提质的有效途径,其中氢源是关键。探究了5种常规金属(铁、铝、锡、锌、镁)在超临界水条件下的产氢量,相同质量下铝的产氢量最大。在400℃、2 h条件下,以Ru/C为催化剂,以四氢萘为供氢介质对比了4种不同氢源(即微藻水热液化水溶物水热气化氢-M-HTL-H_(2)、小球藻水热气化氢-M-SCW-H_(2)、单质金属铝与水高温反应氢-Al-H_(2)及实验室氢-L-H_(2))对微藻水热液化所得粗生物油的加氢提质效果。结果表明,无论何种氢源,提质产物中提质油产率最高,其中L-H_(2)所得提质油产率最高(87.6%),而M-SCW-H_(2)所得提质油产率最低(70.4%)。4种氢源对粗生物油具有不同的加氢提质效果,其中Al-H_(2)对生物油的脱氧效果最好(93.03%),同时提质油热值最高(43.05 MJ/kg);M-SCW-H_(2)的脱氮效果最好(86.11%);4种氢源对生物油的脱硫效果均达到90%以上。氢源对提质油成分组成影响较大,L-H_(2)所得提质油中芳香烃和不饱和烃含量最高;M-HTL-H_(2)所得提质油中饱和烃含量最高,同时芳香烃含量最低。研究表明,采用不同外加氢源进行粗生物油加氢提质可获得不同生物油质提效果,如将不同氢源配伍有望获得更佳的生物质提质效果。 展开更多
关键词 微藻 粗生物油 加氢提质 氢源
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Production of Low-carbon Light Olefins from Catalytic Cracking of Crude Bio-oil 被引量:5
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作者 袁燕妮 王铁军 李全新 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2013年第2期237-244,I0004,共9页
Low-carbon light olefins are the basic feedstocks for the petrochemical industry. Catalytic cracking of crude bio-oil and its model compounds (including methanol, ethanol, acetic acid, acetone, and phenol) to light ... Low-carbon light olefins are the basic feedstocks for the petrochemical industry. Catalytic cracking of crude bio-oil and its model compounds (including methanol, ethanol, acetic acid, acetone, and phenol) to light olefins were performed by using the La/HZSM-5 catalyst. The highest olefins yield from crude bio-oil reached 0.19 kg/(kg crude bio-oil). The reaction conditions including temperature, weight hourly space velocity, and addition of La into the HZSM-5 zeolite can be used to control both olefins yield and selectivity. Moderate adjusting the acidity with a suitable ratio between the strong acid and weak acid sites through adding La to the zeolite effectively enhanced the olefins selectivity and improved the catalyst stability. The production of light olefins from crude bio-oil is closely associated with the chemical composition and hydrogen to carbon effective ratios of feedstock. The comparison between the catalytic cracking and pyrolysis of bio-oil was studied. The mechanism of the bio-oil conversion to light olefins was also discussed. 展开更多
关键词 Crude bio-oil Low-carbon olefin Catalytic cracking Zeolite catalyst
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城市污泥水热液化过程及产物特征 被引量:5
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作者 张逸秋 吴诗勇 +2 位作者 吴幼青 黄胜 高晋生 《华东理工大学学报(自然科学版)》 CAS CSCD 北大核心 2020年第2期234-242,共9页
以城市污泥为原料,考察反应温度对城市污泥水热液化过程及液化产物特征的影响。结果表明:在370℃时生物粗油产率和沥青烯产率分别达到最大值26.82%和27.73%,水回收率及体积减量度也分别达到最大值94.81%和80.16%,说明城市污泥经水热液... 以城市污泥为原料,考察反应温度对城市污泥水热液化过程及液化产物特征的影响。结果表明:在370℃时生物粗油产率和沥青烯产率分别达到最大值26.82%和27.73%,水回收率及体积减量度也分别达到最大值94.81%和80.16%,说明城市污泥经水热液化处理后能取得良好的减量化效果;生物粗油主要含有脂肪酸类、胺类和脂肪烃类,且脂肪酸类碳链长度主要集中在C16~C18;水相有机质则主要由羧酸类、酯类、胺类和酚类组成;液体燃料热值回收率在53.23%~98.20%之间,说明水热液化处理在城市污泥的资源化利用方面具有良好的前景。 展开更多
关键词 城市污泥 水热液化 生物 水相有机质
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Purification of Crude Glycerol from Waste Cooking Oil Based Biodiesel Production by Orthogonal Test Method 被引量:4
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作者 Cai Tianfeng Li Huipeng +1 位作者 Zhao Hua Liao Kejian 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2013年第1期48-53,共6页
Purification of original crude glycerol obtained from biodiesel production was conducted in a laboratory scale equipment by means of a combined chemical and physical treatment method based upon repeated cycles of acid... Purification of original crude glycerol obtained from biodiesel production was conducted in a laboratory scale equipment by means of a combined chemical and physical treatment method based upon repeated cycles of acidification of liquid phase to the desired pH value by using 5.85% H3PO4 solution for pH value adjustment, and the mixture was kept at 70 ℃ for 60 rain to make phase separation for obtaining a glycerol-rich middle phase. The yield of crude glycerol reached 81.2%. Subsequently, upon reaction of the obtained glycerol phase with 0.03% of sodium oxalate at 80 ℃ for 30 min the impurity removal rate was equal to 19.8%. The fraction boiling between 164 ℃ and 200 ℃ was collected by vacuum distil- lation followed by decolorization with 2% of active carbon at 80 ℃ for two times to yield the product glycerol with an ac- ceptable purity of 98.10%. 展开更多
关键词 crude glycerol sodium oxalate BIODIESEL PURIFICATION glycerol-rich layer
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