Apparatus for producing hybrid carbon black particles
09938465 · 2018-04-10
Assignee
Inventors
Cpc classification
C09C1/60
CHEMISTRY; METALLURGY
B01J2219/24
PERFORMING OPERATIONS; TRANSPORTING
C01P2004/61
CHEMISTRY; METALLURGY
C09C1/482
CHEMISTRY; METALLURGY
B01J19/24
PERFORMING OPERATIONS; TRANSPORTING
B01J2/00
PERFORMING OPERATIONS; TRANSPORTING
C10B53/07
CHEMISTRY; METALLURGY
International classification
B01J19/24
PERFORMING OPERATIONS; TRANSPORTING
C09C1/60
CHEMISTRY; METALLURGY
Abstract
The invention relates to a process for producing hybrid carbon black particles (12), which comprises the steps: a) production of first carbon black starting particles (16); b) production of second carbon black starting particles (22); c) milling of the second carbon black starting particles (22); d) mixing of the second carbon black starting particles (22) into a particle stream (48) of the first carbon black starting particles (16); and d) pelletization of the first and second carbon black starting particles (16, 22) to form hybrid carbon black particles (12). The invention further relates to an apparatus (10) for producing hybrid carbon black particles (12) and to hybrid carbon black particles (12) produced by means of the process or the apparatus (10).
Claims
1. An apparatus for production of hybrid carbon black particles, comprising a production unit for generating a particle stream of first carbon black base particles, a feed unit for feeding second carbon black base particles to the particle stream and a compaction unit for pelletizing the first and second carbon black base particles to give hybrid carbon black particles, wherein the feed unit has a grinding unit for generating the second carbon black base particles by grinding a pyrolysis product based on carbon.
2. The apparatus of claim 1, including a drying unit for drying the hybrid carbon black particles.
3. The apparatus of claim 1, wherein the grinding unit is disposed in the feed unit for grinding of the pyrolysis product.
4. The apparatus of claim 1, wherein the production unit for production of the first carbon black base particles is in the form of a combustion chamber.
5. The apparatus of claim 4, wherein the combustion chamber has a first supply tube with which gas is supplied to the combustion chamber, and a second supply tube with which air is supplied to the combustion chamber.
6. The apparatus of claim 1, further comprising a cooling unit including a nozzle.
7. The apparatus of claim 6, wherein the nozzle can be used to inject water into the cooling unit.
8. The apparatus of claim 6, wherein the grinding unit is positioned downstream of the cooling unit at an outlet of the combustion chamber.
9. The apparatus of claim 6, wherein the grinding unit is positioned downstream of the cooling unit at the transition to the compaction unit.
10. The apparatus of claim 1, wherein the feed unit is positioned at a start of the combustion chamber.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
DESCRIPTION OF THE DRAWINGS
(4)
(5) The combustion oven 18 has a first supply tube 32 with which gas is supplied to the combustion oven 18, and a 2nd supply tube 34 with which air is supplied to the combustion oven 18. The supply tubes 32, 34 are thus used to produce a gas/air stream 36 which, having been brought to a high temperature between 1200 C. and 1800 C., via a third supply tube 38, burns mineral oil 40 fed into the combustion oven 18.
(6) Burning of the mineral oil 40 in the combustion oven 18 forms free carbon which is borne by the gas/air stream into a cooling unit 42, where it is cooled rapidly with water 44 which is injected via a nozzle 46 into the cooling unit 42. The rapid cooling gives rise to the first carbon black base particles 16 which, borne by the gas/air stream 36, form a particle stream 48 which enters the pelletizing system 26 directly.
(7)
(8) Within a pyrolysis oven 52 is a screw 54 which transports, for example, shredded used tires as product granules 56 through the pyrolysis oven 52. Via a funnel 58, the shredded used tires are introduced into the pyrolysis oven 52 without affecting the pressure conditions in the pyrolysis oven 52, wherein there is a reduced pressure atmosphere.
(9) The pyrolysis oven 52 has three heating zones 60 in which the product granules 56 are heated at different temperatures. In a first heating zone 62 there is a temperature between 100 C. and 200 C. In a second heating zone 64 there is a temperature between 200 C. and 350 C. And in a third heating zone 66 there is a temperature between 300 C. and 600 C. In each of the three heating zones 62, 64, 66, oils with different mass weight are volatilized and extracted using a condensation system 68.
(10) This refined pyrolysis product 50 is then introduced into the feed unit 20 in
(11) The feed unit 20 opens into the cooling unit 42, such that the first carbon black base particles 16 formed therein are mixed homogeneously with the second carbon black base particles 22 supplied. However, it is also possible for the feed unit 20 to open into the combustion oven 18 upstream of the nozzle 46.
(12) The first and second carbon black base particles 16, 22 are present in the particle stream 48 downstream, beyond the feed unit 20. These are blown into the pelletizing system 26 together by the kinetic energy present in the particle stream 48 and compacted therein to pellets 72. They are transported further into the drying unit 28, where water 44 which has been used for cooling and for pelletizing is removed from the pellets 72.
(13) The process for producing the hybrid carbon black particles 12 is illustrated once more in
(14) Therefore, hybrid carbon black particles 12 have formed, having a desired mixing ratio of the first and second carbon black base particles 16, 22 in each hybrid carbon black particle 12.
(15) To date, recycled carbon black obtained by means of pyrolysis was of low quality and was used at most as a filler in road construction, etc.
(16) A pyrolysis process for used tire granules which is known from WO 2011/035812 A1 enables the industrial production of recycled carbon black which, because of its high quality, can be used again in rubber and tire production.
(17) Recycled carbon black has different particle sizes because of the process regime in the pyrolysis. In order to obtain a defined maximum particle size and hence a good distribution of recycled carbon black in a rubber mixture, it is possible to grind recycled carbon black. However, ground recycled carbon black, just like standard carbon black, has a very low density and a very high volume. Products having very low density are difficult to store, convey or transport. Therefore, standard carbon black is pelletized for better handling. It is also possible to pelletize ground recycled carbon black in just the same way as standard carbon black, and it thus has good storability, conveyability and transportability.
(18) The increasing differentiation of rubber mixtures and admixtures of silicates specifically in the last 5 to 10 years is giving rise to pyrolysis end products having different compositions and in particular different silicate contents. For the industrial production of tires, however, a very substantially constant composition is advantageous. Balancing of the chemical composition and hence constant chemical characteristics in the compounding of rubber mixtures can be achieved, for example, by means of blending (mixing) recycled carbon black with standard carbon black.
(19) Simple mixing of different pellets prior to transport leads to unwanted bursting-open of the pellets.
(20) However, the invention includes a process and an apparatus for mixing recycled carbon black with standard carbon black prior to transport.
(21) Since ground recycled carbon black tends to agglomerate in the course of prolonged storage, it can be fed directly into the standard process prior to pelletization with the inventive apparatus, in order thus to be pelletized together with standard carbon black.
(22) The drying apparatus usually used for the production of standard carbon black, in industrial operation, is set up for the size of the throughput through the furnace oven and cannot be operated with a lower throughput.
(23) The solution to this problem is the mixing apparatus with a mill for grinding recycled carbon black, which is preferably present downstream of the quenching at the outlet of the furnace combustion chamber upstream of the pelletization, or at the transition to the pelletizing apparatus, and the amount of recycled carbon black by which the output of the furnace process has been reduced is fed in by exact metered addition. Alternatively, the feed of recycled carbon black can also be blown in alongside the oil at the start of the furnace combustion chamber and be flushed through the furnace process in addition. This may result in additional upgrading of the ground recycled carbon black.
(24) TABLE-US-00001 List of reference numerals 10 Apparatus 12 Hybrid carbon black particles 14 Production unit 16 First carbon black base particle 18 Combustion oven 20 Feed unit 22 Second carbon black base particle 24 Compaction unit 26 Pelletizing system 28 Drying unit 30 Grinding unit 32 First supply tube 34 Second supply tube 36 Gas/air stream 38 Third supply tube 40 Mineral oil 42 Cooling unit 44 Water 46 Nozzle 48 Particle stream 50 Pyrolysis product 52 Pyrolysis oven 54 Screw 56 Product granules 58 Funnel 60 Heating zones 62 First heating zone 64 Second heating zone 66 Third heating zone 68 Condensation system 70 Refining system 72 Pellet