Coal tar suspension bed hydrocracking catalyst and preparation method thereof

文档序号:1330451 发布日期:2020-07-17 浏览:29次 中文

阅读说明:本技术 一种煤焦油悬浮床加氢裂化催化剂及其制备方法 (Coal tar suspension bed hydrocracking catalyst and preparation method thereof ) 是由 郭莉 牛鸿权 付峰 王丹军 史义存 于 2020-04-07 设计创作,主要内容包括:本发明公开了一种煤焦油悬浮床加氢裂化催化剂及其制备方法,具体为:首先,将硫酸亚铁溶液加入兰炭粉悬浮液中,搅拌并用氨水调节pH后通入空气进行氧化反应得到负载铁系化合物的兰炭粉悬浮液b;然后向悬浮液b中加入钴钼镍系加氢裂化催化剂再生废剂粉末,搅拌,过滤,干燥,得到包含兰炭、铁系化合物以及钴钼镍系加氢裂化催化剂再生废剂的固体粉末;最后将固体粉末与赤泥粉末混合均匀,得到煤焦油悬浮床加氢裂化催化剂。本发明方法制备的催化剂可以有效的提高煤焦油中重质油的转化率,增加轻质油的收率,且生焦率低,加之催化剂成本相对较低,故可明显提高装置经济效益。(The invention discloses a coal tar suspension bed hydrocracking catalyst and a preparation method thereof, and the preparation method specifically comprises the following steps: firstly, adding a ferrous sulfate solution into a semi-coke powder suspension, stirring, adjusting the pH value with ammonia water, and introducing air for oxidation reaction to obtain a semi-coke powder suspension b loaded with an iron compound; adding cobalt-molybdenum-nickel hydrocracking catalyst regeneration waste agent powder into the suspension b, stirring, filtering and drying to obtain solid powder containing semi-coke, an iron compound and the cobalt-molybdenum-nickel hydrocracking catalyst regeneration waste agent; and finally, uniformly mixing the solid powder and the red mud powder to obtain the coal tar suspension bed hydrocracking catalyst. The catalyst prepared by the method can effectively improve the conversion rate of heavy oil in coal tar, increase the yield of light oil, has low coking rate and relatively low cost, and can obviously improve the economic benefit of a device.)

1. The coal tar suspension bed hydrocracking catalyst is characterized by comprising the following components in percentage by mass: 5-10% of iron compound, 1-5% of waste cobalt-molybdenum-nickel hydrocracking catalyst regeneration agent powder, 7-15% of red mud and 70-87% of semi coke, wherein the sum of the mass percentages of the components is 100%, and the iron compound is composed of ferric oxide and ferric oxyhydroxide.

2. A preparation method of a coal tar suspension bed hydrocracking catalyst is characterized by comprising the following steps:

step 1, grinding semi coke into powder with the particle size of 10-100 mu m; adding semi-coke powder into distilled water, and uniformly mixing to obtain a semi-coke powder suspension with the mass fraction of 20%;

step 2, adding ferrous sulfate into distilled water, and uniformly mixing to obtain a ferrous sulfate solution with the mass fraction of 20%;

step 3, adding the ferrous sulfate solution into the blue carbon powder suspension, adjusting the pH to 5.5-7.0 by using ammonia water, and then stirring for 1-3h at the temperature of 50-80 ℃ to obtain a suspension a;

step 4, introducing air into the suspension a obtained in the step 3 for oxidation reaction, and stirring simultaneously to obtain semi-coke powder suspension b loaded with the iron compound;

step 5, adding waste cobalt molybdenum nickel hydrocracking catalyst regeneration agent powder into the suspension b, stirring for 0.5h, uniformly mixing, filtering, and drying at 50-100 ℃ until the water content is below 0.5% to obtain solid powder containing semi-coke, iron compounds and waste cobalt molybdenum nickel hydrocracking catalyst regeneration agent;

step 6, grinding the red mud into red mud powder with the particle size of 10-100 mu m;

and 7, uniformly mixing the solid powder obtained in the step 5 with the red mud powder to obtain the coal tar suspension bed hydrocracking catalyst.

3. The method as claimed in claim 2, wherein in the step 3, the stirring rate is 4000-; the volume ratio of the ferrous sulfate solution to the semi-coke powder suspension is 1: 2 to 3.5.

4. The method as claimed in claim 2, wherein in the step 4, the stirring rate is 1000-2000 r/min; the reaction temperature is 40-50 ℃ and the reaction time is 0.5-1 h.

5. The method for preparing the coal tar suspension bed hydrocracking catalyst according to claim 2, wherein in the step 5, the mass ratio of the suspension b to the waste agent powder generated by regenerating the cobalt-molybdenum-nickel hydrocracking catalyst is 100: 1 to 10.

6. The preparation method of the coal tar suspension bed hydrocracking catalyst according to claim 2, wherein in the step 7, the mass ratio of the solid powder obtained in the step 5 to the red mud powder is 10: 0.5 to 2.

Technical Field

The invention belongs to the technical field of catalyst preparation, and particularly relates to a coal tar suspension bed hydrocracking catalyst and a preparation method thereof.

Background

At present, the coal tar is processed by adopting a fixed bed hydrofining and fixed bed hydrocracking combined process or a delayed coking and fixed bed hydrocracking combined process. In the fixed bed hydrocracking process, the raw materials have many mechanical impurities, the oil product has large molecular weight, the pressure drop of the reactor is easy to increase, and in addition, the problems of quick coking and inactivation of the catalyst, short service life, high investment cost, short device operation period and the like also exist.

For the suspension bed hydrocracking process, selecting a proper catalyst is particularly important, and is a key relation on whether the suspension bed hydrocracking device can realize long-period and high-benefit stable operation. At present, in the production practice, the coal tar suspension bed hydrocracking process mainly uses semi coke or red mud as a catalyst. The semi-coke basically has no catalytic action in the using process, and mainly plays a role in providing a reaction site, adsorbing large-particle coke substances and reducing coking of a reactor in the whole reaction process except for the participation of a small amount of semi-coke in the reaction. The red mud is used as a catalyst to play a catalytic role in the using process, but the conversion rate of heavy oil in coal tar is only about 70%, the red mud catalyst cannot adsorb coke substances generated by hydrocracking, and the coke substances cannot be timely taken out of the reactor, so that the coking rate of the reactor is increased, and the operation period of the device is shortened. In order to solve the above problems of using semi-coke and red mud as a suspension bed hydrocracking catalyst, some researchers have used bauxite, zeolite or molecular sieve as a carrier to load metals of group VIB and/or group viii to synthesize a novel coal tar or heavy oil hydrocracking catalyst. The catalysts are applied to a coal tar or heavy oil suspension bed hydrocracking process, and although the conversion rate of heavy oil is high, the main problem is that the cost of the catalysts is high, and the catalysts cannot be practically applied in production practice.

Disclosure of Invention

The invention aims to provide a coal tar suspension bed hydrocracking catalyst which is used for coal tar suspension bed hydrocracking and improves the heavy oil conversion rate.

The invention also aims to provide a preparation method of the coal tar suspension bed hydrogenation catalyst, which has the advantages of simple preparation process, low raw material price and environmental protection.

The technical scheme adopted by the invention is that the coal tar suspension bed hydrocracking catalyst comprises the following components in percentage by mass: 5-10% of iron compound (including ferric oxide and hydroxyl ferric oxide, calculated by iron), 1-5% of waste powder of cobalt-molybdenum-nickel hydrocracking catalyst regeneration, 7-15% of red mud and 70-87% of semi coke, wherein the sum of the mass percentages of the components is 100%.

The invention adopts another technical scheme that a preparation method of a coal tar suspension bed hydrocracking catalyst is implemented according to the following steps:

step 1, grinding semi coke into powder with the particle size of 10-100 mu m; adding semi-coke powder into distilled water, and uniformly mixing to obtain a semi-coke powder suspension with the mass fraction of 20%;

step 2, adding ferrous sulfate into distilled water, and uniformly mixing to obtain a ferrous sulfate solution with the mass fraction of 20%;

step 3, adding the ferrous sulfate solution into the blue carbon powder suspension, adjusting the pH to 5.5-7.0 by using ammonia water, and then stirring for 1-3h at the temperature of 50-80 ℃ to obtain a suspension a;

step 4, introducing air into the suspension a obtained in the step 3 for oxidation reaction, and stirring simultaneously to obtain semi-coke powder suspension b loaded with the iron compound;

step 5, adding waste cobalt molybdenum nickel hydrocracking catalyst regeneration agent powder into the suspension b, stirring for 0.5h, uniformly mixing, filtering, and drying at 50-100 ℃ until the water content is below 0.5% to obtain solid powder containing semi-coke, iron compounds and waste cobalt molybdenum nickel hydrocracking catalyst regeneration agent;

step 6, grinding the red mud into red mud powder with the particle size of 10-100 mu m;

and 7, uniformly mixing the solid powder obtained in the step 5 with the red mud powder to obtain the coal tar suspension bed hydrocracking catalyst.

The present invention is also characterized in that,

in the step 3, the stirring speed is 4000r/min-8000 r/min; the volume ratio of the ferrous sulfate solution to the semi-coke powder suspension is 1: 2 to 3.5.

In the step 4, the stirring speed is 1000-; the reaction temperature is 40-50 ℃ and the reaction time is 0.5-1 h.

In the step 5, the mass ratio of the suspension b to the waste powder of the cobalt-molybdenum-nickel hydrocracking catalyst regeneration agent is 100: 1 to 10.

In the step 7, the mass ratio of the solid powder obtained in the step 5 to the red mud powder is 10: 0.5 to 2.

The beneficial effect of the invention is that,

the coal tar suspension bed hydrocracking catalyst and the preparation method thereof adopt a step-by-step synthesis method to synthesize the hydrocracking catalyst, the method has mild conditions, the required raw materials are common substances and have low price, the preparation process is simple, the discharge amount of three wastes is small, the solid wastes in chemical production can be comprehensively utilized, and the method is green and environment-friendly. The hydrocracking catalyst prepared by the method can effectively improve the conversion rate of heavy oil in coal tar, increase the yield of light oil, has low coking rate, can prolong the operation period of a device, and has relatively low cost, so the economic benefit of the device can be obviously improved.

Detailed Description

The present invention will be described in detail with reference to the following embodiments.

The invention relates to a coal tar suspension bed hydrocracking catalyst, which comprises the following components in percentage by mass: 5-10% of iron compound (calculated by iron), 1-5% of waste agent powder for regenerating cobalt-molybdenum-nickel hydrocracking catalyst, 7-15% of red mud and 70-87% of semi coke, wherein the sum of the mass percentages of the components is 100%.

The iron compound consists of ferric oxide and hydroxyl ferric oxide;

the invention relates to a preparation method of a coal tar suspension bed hydrocracking catalyst, which is implemented according to the following steps:

step 1, grinding semi coke into powder with the particle size of 10-100 mu m; adding semi-coke powder into distilled water, and uniformly mixing to obtain a semi-coke powder suspension with the mass fraction of 20%;

step 2, adding ferrous sulfate into distilled water, and uniformly mixing to obtain a ferrous sulfate solution with the mass fraction of 20%;

step 3, adding the ferrous sulfate solution into the blue carbon powder suspension, adjusting the pH to 5.5-7.0 by using ammonia water, and then stirring for 1-3h at the temperature of 50-80 ℃ to obtain a suspension a;

the stirring speed is 4000r/min-8000 r/min;

the volume ratio of the ferrous sulfate solution to the semi-coke powder suspension is 1: 2 to 3.5;

step 4, introducing air into the suspension a obtained in the step 3 for oxidation reaction, and stirring simultaneously to obtain semi-coke powder suspension b loaded with the iron compound;

the stirring speed is 1000-; the reaction temperature is 40-50 ℃, and the reaction time is 0.5-1 h;

step 5, adding waste cobalt molybdenum nickel hydrocracking catalyst regeneration agent powder into the suspension b, stirring for 0.5h, uniformly mixing, filtering, and drying at 50-100 ℃ until the water content is below 0.5% to obtain solid powder containing semi-coke, iron compounds and waste cobalt molybdenum nickel hydrocracking catalyst regeneration agent;

the mass ratio of the suspension b to the waste powder of the cobalt-molybdenum-nickel hydrocracking catalyst regeneration agent is 100: 1-10;

the production manufacturer of the waste agent powder for regenerating the cobalt-molybdenum-nickel hydrocracking catalyst is Yueyangchangwang chemical industry Co., Ltd, which is a waste agent generated during the regeneration of the cobalt-molybdenum-nickel hydrocracking catalyst; the particle size of the waste regeneration agent powder of the cobalt-molybdenum-nickel hydrocracking catalyst is 200-;

step 6, grinding the red mud into red mud powder with the particle size of 10-100 mu m;

and 7, uniformly mixing the solid powder obtained in the step 5 with the red mud powder to obtain the coal tar suspension bed hydrocracking catalyst.

The mass ratio of the solid powder obtained in the step 5 to the red mud powder is 10: 0.5 to 2.

The catalyst prepared by the method has the following advantages:

1. the catalyst prepared by the method takes the semi-coke as a carrier, fully utilizes the microporous structure of the semi-coke, fixes the effective component iron compound on the surface and in the inner pores of the semi-coke, can ensure that the effective component iron compound is distributed more uniformly, and can provide full and uniform hydrocracking reaction sites for oil products;

2. in the hydrocracking process of the catalyst prepared by the method, the semi coke contained in the catalyst can adsorb colloid and asphaltene in the coal tar, so that the partial substances can be subjected to full hydrocracking reaction under the action of the catalyst, and the conversion rate of heavy oil in the coal tar and the liquid yield of light oil are improved;

3. in the hydrocracking process of the catalyst prepared by the method, the semi coke contained in the catalyst can adsorb coke substances generated along with coke-forming reaction, and the coke substances are prevented from being adhered to the inner walls of the reactor and the pipeline, so that the coking and blockage phenomena of a suspended bed reactor and a pipeline are relieved, and the running period of the device is prolonged;

4. the catalyst prepared by the method comprises the waste regeneration agent of the cobalt-molybdenum-nickel hydrocracking catalyst, so that on one hand, the catalytic performance of the catalyst is improved by utilizing the mutual promotion effect of the cobalt-molybdenum-nickel catalyst and the iron catalyst, on the other hand, the chemical production waste is recycled, the resources are saved, the catalyst cost is reduced, and the environmental pollution caused by the waste is avoided;

5. the catalyst prepared by the method also comprises red mud which is commonly used as a suspension bed hydrocracking catalyst in production practice, not only utilizes the characteristics of catalytic action and low price of the red mud, but also overcomes the problems of low conversion rate of heavy oil and incapability of adsorbing coke substances generated by hydrocracking when the red mud is used as the catalyst through the combination of the red mud and the semi coke. When the catalyst is used in a coal tar suspension bed hydrocracking process, the conversion rate of heavy oil can reach more than 85 percent, is 10-15 percent higher than that of heavy oil when red mud is used as the catalyst, and is 10-20 percent higher than that of heavy oil when semi-coke is used as the catalyst;

6. the catalyst prepared by the method has the advantages of cheap and easily-obtained raw materials, simple synthesis process, lower cost, obvious economic benefit and good catalytic performance, has the heavy oil conversion rate of over 85 percent when being applied to the coal tar suspension bed hydrogenation process, and has higher commercial and industrial application values on a suspension bed hydrogenation device.

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