WO2018086198A1 - 一种利用农林废弃物生产高热值生物质燃料的装置 - Google Patents

一种利用农林废弃物生产高热值生物质燃料的装置 Download PDF

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WO2018086198A1
WO2018086198A1 PCT/CN2016/111478 CN2016111478W WO2018086198A1 WO 2018086198 A1 WO2018086198 A1 WO 2018086198A1 CN 2016111478 W CN2016111478 W CN 2016111478W WO 2018086198 A1 WO2018086198 A1 WO 2018086198A1
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motor
drying drum
disposed
agricultural
biomass fuel
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PCT/CN2016/111478
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English (en)
French (fr)
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刘毅能
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刘毅能
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Publication of WO2018086198A1 publication Critical patent/WO2018086198A1/zh

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    • CCHEMISTRY; METALLURGY
    • C10PETROLEUM, GAS OR COKE INDUSTRIES; TECHNICAL GASES CONTAINING CARBON MONOXIDE; FUELS; LUBRICANTS; PEAT
    • C10LFUELS NOT OTHERWISE PROVIDED FOR; NATURAL GAS; SYNTHETIC NATURAL GAS OBTAINED BY PROCESSES NOT COVERED BY SUBCLASSES C10G, C10K; LIQUEFIED PETROLEUM GAS; ADDING MATERIALS TO FUELS OR FIRES TO REDUCE SMOKE OR UNDESIRABLE DEPOSITS OR TO FACILITATE SOOT REMOVAL; FIRELIGHTERS
    • C10L5/00Solid fuels
    • C10L5/40Solid fuels essentially based on materials of non-mineral origin
    • C10L5/44Solid fuels essentially based on materials of non-mineral origin on vegetable substances
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E50/00Technologies for the production of fuel of non-fossil origin
    • Y02E50/10Biofuels, e.g. bio-diesel
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E50/00Technologies for the production of fuel of non-fossil origin
    • Y02E50/30Fuel from waste, e.g. synthetic alcohol or diesel

Definitions

  • the utility model belongs to the technical field of agricultural and forestry processing, and particularly relates to a device for producing high calorific value biomass fuel by using agricultural and forestry waste.
  • Biomass fuel refers to the combustion of biomass materials as fuel, generally mainly agricultural and forestry waste (such as straw, sawdust, bagasse, rice bran, etc.), which is mainly distinguished from fossil fuels; in current national policies and environmental protection standards, direct combustion Biomass is a highly polluting fuel. It is only used in large stoves in rural areas and is not allowed to be used in cities.
  • the application of biomass fuels is mainly biomass-forming fuels. It uses agricultural and forestry waste as raw materials and is crushed, mixed and extruded. , drying and other processes, made into a variety of molding (such as block, granular, etc.), a new type of clean fuel that can be directly burned.
  • the utility model aims to provide a device for producing high calorific value biomass fuel by using agricultural and forestry waste, so as to solve the above-mentioned background art, it is proposed that the raw material fuel is not automatically automated, no electromagnetic valve is provided, automatic feeding and control cannot be realized. The problem of the amount of feed.
  • a device for producing high calorific value biomass fuel by using agricultural and forestry waste comprising a temperature sensor, a drying drum motor and a frame, and a motor is arranged below the inside of the frame a driving wheel is disposed at a left end of the motor, a screening bin is disposed above the motor, a round roller is disposed inside the screening bin, and a dust outlet is embedded in the lower portion of the screening bin, and the bottom of the roller is disposed below
  • a feed port is arranged above the crushing and squeezing roller
  • a solenoid valve is disposed under
  • the drying drum gear and the drying drum motor are rotationally coupled by a gear.
  • the electric heating block is provided in total, and two electric heating blocks are installed below the interior of the drying drum.
  • the conveyor belt is coupled to the conveyor motor by a belt drive.
  • the motor and the frame are fixedly connected by bolts.
  • the utility model is provided with a solenoid valve, which can realize automatic feeding, and can control the feeding amount and realize its automation.
  • the utility model is provided with a conveyor belt, which can automatically transfer the biomass fuel into the drying drum, thereby solving the problem of manual transportation.
  • the drying device of the utility model adopts a drum structure, so that the biomass fuel is tumbling inside, the heat is more uniform, and the biomass fuel is completely discharged by the reverse rotation of the motor, and the operation is simple and convenient, safe and practical. .
  • the utility model has the advantages of scientific combination, reasonable layout, and bolt connection on the connection, which is convenient for installation and disassembly, and later maintenance and overhaul.
  • Figure 1 is a schematic view of the structure of the present invention
  • Figure 2 is a side view of the present invention
  • 1--crushing bin 2-feeding port, 3-electromagnetic valve, 4-pulverizing roller, 5-control panel, 6-belt, 7-drying roller gear, 8-temperature sensor, 9-drying Roller, 10-fuel outlet, 11-electric heating block, 12-drying drum motor, 13-gear, 14-belt motor, 15-dust outlet, 16-filter, 17-motor, 18-rack, 19- Driving wheel, 20-round roller, 21-turn shaft, 22-screening bin, 23-driven wheel, 24-belt protective cover.
  • the present invention provides a technical solution: a device for producing high calorific value biomass fuel by using agricultural and forestry waste, comprising a temperature sensor 8, a drying drum motor 12 and a frame 18, and a frame 18
  • a motor 17 is disposed under the inner portion of the motor 17, and a driving wheel 19 is disposed at a left end of the motor 17.
  • a screening chamber 22 is disposed above the motor 17, a round roller 20 is disposed inside the screening chamber 22, and a dust outlet is embedded in the lower portion of the screening chamber 22.
  • a filter 16 is disposed under the round roller 20, and a rotating shaft 21 is disposed at a left end of the circular roller 20.
  • a pulverizing chamber 1 is disposed above the gantry 18, and a pulverizing roller 4 is disposed at an inner intermediate position of the pulverizing chamber 1.
  • the left end of the pulverizing squeegee 4 is provided with a driven wheel 23, and a feeding port 2 is disposed above the pulverizing squeegee 4, a solenoid valve 3 is disposed below the feeding port 2, and a belt protection cover 24 is disposed on the left side of the frame 18.
  • a control panel 5 is disposed on the right side of the rack 18, and a conveyor belt 6 is disposed at a position on the right side of the rack 18 near the control panel 5, and a conveyor belt motor 14 is disposed below the conveyor belt 6, and the right side of the conveyor belt 6 is disposed Drying roller 9, temperature sensor 8 Mounted on the inside of the drying drum 9, an electric heating block 11 is disposed below the inside of the drying drum 9, and the right end of the drying drum 9 is embedded with a fuel outlet 10, and the front surface of the drying drum 9 is embedded and baked.
  • Dry drum gear 7 The drying drum motor 12 is installed below the drying drum 9, and the left end of the drying drum motor 12 is provided with a gear 13, a solenoid valve 3, a temperature sensor 8, an electric heating block 11, a drying drum motor 12, a conveyor motor 14 and The motors 17 are electrically connected to the control panel 5.
  • the drying drum gear 7 and the drying drum motor 12 are rotationally coupled via the gear 13.
  • two electric heating blocks 11 are provided in total, and the two electric heating blocks 11 are installed inside the drying drum 9. Below.
  • the conveyor belt 6 is connected to the conveyor motor 14 by a belt drive.
  • the motor 17 and the frame 18 are fixedly connected by bolts.
  • the electromagnetic valve 3 in the utility model is an electromagnetic control industrial device, is an automatic basic component for controlling fluid, belongs to an actuator, is not limited to hydraulic and pneumatic, and is used in an industrial control system to adjust the direction and flow of the medium. , speed and other parameters, the solenoid valve 3 can be combined with different circuits to achieve the desired control, and the accuracy and flexibility of the control can be guaranteed, there are many kinds of solenoid valves 3, different solenoid valves 3 in different positions of the control system The most commonly used ones are check valves, safety valves, directional control valves, speed control valves, etc.
  • the solenoid valve 3 has a closed cavity, and there are through holes at different positions, each hole is connected with a different oil pipe, the middle of the cavity It is a piston, two sides are two electromagnets, which side of the magnet coil is energized to which side of the valve body, by controlling the movement of the valve body to open or close different oil drain holes, and the oil inlet hole is normally open.
  • the hydraulic oil will enter different oil drain pipes, and then the piston of the oil cylinder will be pushed by the pressure of the oil.
  • the piston will drive the piston rod, and the piston rod drives the mechanical device, so that the electromagnetic control is controlled.
  • the current is controlled to control the mechanical motion;
  • the temperature sensor 8 in the present invention refers to a sensor that can sense the temperature and convert into an available output signal, and the temperature sensor 8 is a core part of the temperature measuring instrument, and has various varieties; Divided into contact and non-contact Classes are classified into thermal resistance and thermocouple according to the characteristics of sensor materials and electronic components.
  • the working principle and the use flow of the utility model when the utility model is used, the utility model first turns on the external power source, then puts the agricultural and forestry waste as raw material from the feeding port 2, and then opens the machine switch through the control panel 5, and The electromagnetic valve 3 is opened to realize automatic feeding and control a certain amount of raw materials to enter the pulverizing chamber 1.
  • the motor 17 rotates to drive the driving wheel 19 to rotate, and the rotating shaft 21 is also rotated by the belt transmission, and the driven wheel 23 is driven by the belt.
  • the pulverizing causes the pulverizing squeezing roller 4 to rotate, and the raw material is pulverized by the centrifugal force of the pulverizing squeezing roller 4 and the inner wall of the machine, and then falls into the screening bin 22, and the round roller 20 rotates under the rotating shaft 21, It also rotates and causes the pulverized material to pass through the filter screen 16 under the action of centrifugal force, screen clean, and transport it to the conveyor belt 6 by the round roller 20, the dust is discharged from the dust outlet 15, and the conveyor belt 6 is at the conveyor motor 14.
  • the belt is driven and rotated to transfer the cleaned raw materials to the drying drum 9, which is in the drying drum motor 12, the gear 13 and the drying Under the joint action of the drum gear 7, the rotation is realized, the electric heating block 11 is heated after being energized, the drying drum motor 12 is rotated forward, and the temperature sensor 8 detects the internal temperature of the drying drum 9, and reminds the staff to adjust the drying at the right time.
  • the temperature inside the dry drum 9 is reversed by the control panel 5, and the dried biomass fuel is discharged through the fuel outlet, and finally the biomass fuel is packed into a package.

Abstract

一种利用农林废弃物生产高热值生物质燃料的装置,包括温度传感器(8)、烘干滚筒电机(12)和机架(18),所述机架(18)的内部下方设置有电机(17),所述电机(17)的左端设置有主动轮(19),所述电机(17)的上方设置有筛选仓(22),所述筛选仓(22)的内部设置有圆辊(20),所述圆辊(20)的下方设置有过滤网(16),所述机架(18)的上方设置有粉碎仓(1),所述温度传感器(8)安装在烘干滚筒(9)的内部上方,所述烘干滚筒电机(12)安装在烘干滚筒(9)的下方。设置了电磁阀(3),可以实现其自动进料,并且可以控制进料量,实现其自动化;烘干装置采用滚筒结构,使生物质燃料在其内部翻滚,受热更加均匀,并且通过电机(12)的反转将烘干完成的生物质燃料传送出,操作简单方便,安全实用。

Description

一种利用农林废弃物生产高热值生物质燃料的装置 技术领域
本实用新型属于农林业加工技术领域,具体涉及一种利用农林废弃物生产高热值生物质燃料的装置。
背景技术
生物质燃料是指将生物质材料燃烧作为燃料,一般主要是农林废弃物(如秸秆、锯末、甘蔗渣、稻糠等),主要区别于化石燃料;在目前的国家政策和环保标准中,直接燃烧生物质属于高污染燃料,只在农村的大灶中使用,不允许在城市中使用;生物质燃料的应用,实际主要是生物质成型燃料,是将农林废物作为原材料,经过粉碎、混合、挤压、烘干等工艺,制成各种成型(如块状、颗粒状等)的,可直接燃烧的一种新型清洁燃料。
但是目前市场上的利用农林废弃物生产高热值生物质燃料的装置不仅结构复杂,而且功能单一,缺乏创新,没能打破传统,没有将生产生物质燃料实现自动化,没有设置电磁阀,不能实现自动进料并且控制进料量。
实用新型内容
本实用新型的目的在于提供一种利用农林废弃物生产高热值生物质燃料的装置,以解决上述背景技术中提出没有将生产生物质燃料实现自动化,没有设置电磁阀,不能实现自动进料并且控制进料量的问题。
为实现上述目的,本实用新型提供如下技术方案:一种利用农林废弃物生产高热值生物质燃料的装置,包括温度传感器、烘干滚筒电机和机架,所述机架的内部下方设置有电机,所述电机的左端设置有主动轮,所述电机的上方设置有筛选仓,所述筛选仓的内部设置有圆辊,且筛选仓的下方嵌入设置有灰尘出口,所述圆辊的下方设置有过滤网,且圆辊的左端设置有转轴,所述机架的上方设置有粉碎仓,所述粉碎仓的内部中间位置处设置有粉碎绞辊,所述粉碎绞辊的左端设置有从动轮,且粉碎绞辊的上方设置有进料口, 所述进料口的下方设置有电磁阀,所述机架的左侧设置有皮带保护盖,且机架的右侧设置有控制面板,所述机架右侧靠近控制面板的下方位置处设置有传送带,所述传送带的下方设置有传送带电机,且传送带的右侧设置有烘干滚筒,所述温度传感器安装在烘干滚筒的内部上方,所述烘干滚筒的内部下方设置有电加热块,且烘干滚筒的右端嵌入设置有燃料出口,所述烘干滚筒的前表面上嵌入设置有烘干滚筒齿轮,所述烘干滚筒电机安装在烘干滚筒的下方,且烘干滚筒电机的左端设置有齿轮,所述电磁阀、温度传感器、电加热块、烘干滚筒电机、传送带电机和电机均与控制面板电性连接。
优选的,所述烘干滚筒齿轮与烘干滚筒电机通过齿轮转动连接。
优选的,所述电加热块共设置有两个,且两个电加热块均与安装在烘干滚筒的内部下方。
优选的,所述传送带与传送带电机通过皮带传动连接。
优选的,所述电机与机架通过螺栓固定连接。
与现有技术相比,本实用新型的有益效果是:
(1)本实用新型设置了电磁阀,可以实现其自动进料,并且可以控制进料量,实现其自动化。
(2)本实用新型设置了传送带,可以将生物质燃料自动传送到烘干滚筒中,解决了人工搬运的问题。
(3)本实用新型中烘干装置采用滚筒结构,使生物质燃料在其内部翻滚,受热更加均匀,并且通过电机的反转将烘干完成的生物质燃料传送出,操作简单方便,安全实用。
(4)本实用新型结合科学,布局合理,并且连接上采用螺栓连接,便于安装和拆卸以及后期的维护和检修。
附图说明
图1为本实用新型的结构示意图;
图2为本实用新型的侧视图;
图中:1-粉碎仓、2-进料口、3-电磁阀、4-粉碎绞辊、5-控制面板、6-传送带、7-烘干滚筒齿轮、8-温度传感器、9-烘干滚筒、10-燃料出口、11-电加热块、12-烘干滚筒电机、13-齿轮、14-传送带电机、15-灰尘出口、16-过滤网、17-电机、18-机架、19-主动轮、20-圆辊、21-转轴、22-筛选仓、23-从动轮、24-皮带保护盖。
具体实施方式
下面将结合本实用新型实施例中的附图,对本实用新型实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本实用新型一部分实施例,而不是全部的实施例。基于本实用新型中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本实用新型保护的范围。
请参阅图1和图2,本实用新型提供一种技术方案:一种利用农林废弃物生产高热值生物质燃料的装置,包括温度传感器8、烘干滚筒电机12和机架18,机架18的内部下方设置有电机17,电机17的左端设置有主动轮19,电机17的上方设置有筛选仓22,筛选仓22的内部设置有圆辊20,且筛选仓22的下方嵌入设置有灰尘出口15,圆辊20的下方设置有过滤网16,且圆辊20的左端设置有转轴21,机架18的上方设置有粉碎仓1,粉碎仓1的内部中间位置处设置有粉碎绞辊4,粉碎绞辊4的左端设置有从动轮23,且粉碎绞辊4的上方设置有进料口2,进料口2的下方设置有电磁阀3,机架18的左侧设置有皮带保护盖24,且机架18的右侧设置有控制面板5,机架18右侧靠近控制面板5的下方位置处设置有传送带6,传送带6的下方设置有传送带电机14,且传送带6的右侧设置有烘干滚筒9,温度传感器8安装在烘干滚筒9的内部上方,烘干滚筒9的内部下方设置有电加热块11,且烘干滚筒9的右端嵌入设置有燃料出口10,烘干滚筒9的前表面上嵌入设置有烘干滚筒齿轮7, 烘干滚筒电机12安装在烘干滚筒9的下方,且烘干滚筒电机12的左端设置有齿轮13,电磁阀3、温度传感器8、电加热块11、烘干滚筒电机12、传送带电机14和电机17均与控制面板5电性连接。
为了使烘干滚筒9能够稳定的工作,本实施例中,优选的,烘干滚筒齿轮7与烘干滚筒电机12通过齿轮13转动连接。
为了使生物质燃料能够均匀受热,烘干效果更佳,本实施例中,优选的,电加热块11共设置有两个,且两个电加热块11均与安装在烘干滚筒9的内部下方。
为了使生物质燃料能够被稳定的传送到烘干滚筒9内,本实施例中,优选的,传送带6与传送带电机14通过皮带传动连接。
为了使电机17能够稳定的固定在机架18上,且能够稳定的工作,本实施例中,优选的,电机17与机架18通过螺栓固定连接。
本实用新型中的电磁阀3是用电磁控制的工业设备,是用来控制流体的自动化基础元件,属于执行器,并不限于液压、气动,是用在工业控制系统中调整介质的方向、流量、速度和其他的参数,电磁阀3可以配合不同的电路来实现预期的控制,而控制的精度和灵活性都能够保证,电磁阀3有很多种,不同的电磁阀3在控制系统的不同位置发挥作用,最常用的是单向阀、安全阀、方向控制阀、速度调节阀等,电磁阀3里有密闭的腔,在不同位置开有通孔,每个孔连接不同的油管,腔中间是活塞,两面是两块电磁铁,哪面的磁铁线圈通电阀体就会被吸引到哪边,通过控制阀体的移动来开启或关闭不同的排油孔,而进油孔是常开的,液压油就会进入不同的排油管,然后通过油的压力来推动油缸的活塞,活塞又带动活塞杆,活塞杆带动机械装置,这样通过控制电磁铁的电流通断就控制了机械运动;本实用新型中的温度传感器8是指能感受温度并转换成可用输出信号的传感器,温度传感器8是温度测量仪表的核心部分,品种繁多;按测量方式可分为接触式和非接触式两大 类,按照传感器材料及电子元件特性分为热电阻和热电偶两类。
本实用新型的工作原理及使用流程:该实用新型在使用时,先将其接通外部电源,再将农林废弃物作为原料从进料口2放入,然后通过控制面板5打开机器开关,并打开电磁阀3,实现自动进料且控制一定量的原料进入粉碎仓1内,电机17工作转动,带动主动轮19转动,通过皮带传动,转轴21也随之转动,从动轮23通过皮带传动,随着转轴21转动而转动,粉碎从而带动粉碎绞辊4转动,原料在粉碎绞辊4和机器内壁的离心力作用下粉碎,然后掉入筛选仓22内,圆辊20在转轴21的转动下,也随之转动,并使粉碎的原料在离心力的作用下,通过过滤网16,筛选干净,并通过圆辊20将其传输至传送带6上,灰尘从灰尘出口15排出,传送带6在传送带电机14的转动下,通过皮带传动,从而转动,把筛选干净的原料传送至烘干滚筒9中,烘干滚筒9在烘干滚筒电机12、齿轮13以及烘干滚筒齿轮7的共同作用下,实现转动,电加热块11在通电后进行加热,烘干滚筒电机12正转烘干,同时温度传感器8检测烘干滚筒9内部温度,并提醒工作人员适时调整烘干滚筒9内部的温度,通过控制面板5将烘干滚筒电机12反转,将烘干的生物质燃料通过燃料出口排出,最后将生物质燃料打包装仓即可。
尽管已经示出和描述了本实用新型的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本实用新型的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本实用新型的范围由所附权利要求及其等同物限定。

Claims (5)

  1. 一种利用农林废弃物生产高热值生物质燃料的装置,包括温度传感器(8)、烘干滚筒电机(12)和机架(18),其特征在于:所述机架(18)的内部下方设置有电机(17),所述电机(17)的左端设置有主动轮(19),所述电机(17)的上方设置有筛选仓(22),所述筛选仓(22)的内部设置有圆辊(20),且筛选仓(22)的下方嵌入设置有灰尘出口(15),所述圆辊(20)的下方设置有过滤网(16),且圆辊(20)的左端设置有转轴(21),所述机架(18)的上方设置有粉碎仓(1),所述粉碎仓(1)的内部中间位置处设置有粉碎绞辊(4),所述粉碎绞辊(4)的左端设置有从动轮(23),且粉碎绞辊(4)的上方设置有进料口(2),所述进料口(2)的下方设置有电磁阀(3),所述机架(18)的左侧设置有皮带保护盖(24),且机架(18)的右侧设置有控制面板(5),所述机架(18)右侧靠近控制面板(5)的下方位置处设置有传送带(6),所述传送带(6)的下方设置有传送带电机(14),且传送带(6)的右侧设置有烘干滚筒(9),所述温度传感器(8)安装在烘干滚筒(9)的内部上方,所述烘干滚筒(9)的内部下方设置有电加热块(11),且烘干滚筒(9)的右端嵌入设置有燃料出口(10),所述烘干滚筒(9)的前表面上嵌入设置有烘干滚筒齿轮(7),所述烘干滚筒电机(12)安装在烘干滚筒(9)的下方,且烘干滚筒电机(12)的左端设置有齿轮(13),所述电磁阀(3)、温度传感器(8)、电加热块(11)、烘干滚筒电机(12)、传送带电机(14)和电机(17)均与控制面板(5)电性连接。
  2. 根据权利要求1所述的一种利用农林废弃物生产高热值生物质燃料的装置,其特征在于:所述烘干滚筒齿轮(7)与烘干滚筒电机(12)通过齿轮(13)转动连接。
  3. 根据权利要求1所述的一种利用农林废弃物生产高热值生物质燃料的装置,其特征在于:所述电加热块(11)共设置有两个,且两个电加热块(11)均与安装在烘干滚筒(9)的内部下方。
  4. 根据权利要求1所述的一种利用农林废弃物生产高热值生物质燃料的装置,其特征在于:所述传送带(6)与传送带电机(14)通过皮带传动连接。
  5. 根据权利要求1所述的一种利用农林废弃物生产高热值生物质燃料的装置,其特征在于:所述电机(17)与机架(18)通过螺栓固定连接。
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CN112179733A (zh) * 2020-09-27 2021-01-05 刘辅林 一种用于环境检测的土壤取样预处理装置
CN112853098A (zh) * 2020-12-30 2021-05-28 赣州市恒源科技股份有限公司 一种荧光粉废料氧化物溶解共沉淀筛分装置及其操作方法
CN113028413A (zh) * 2021-04-15 2021-06-25 刘泽淳 一种园林废弃物加工利用装置
CN113028413B (zh) * 2021-04-15 2023-08-25 北京蓟城智造科技有限公司 一种园林废弃物加工利用装置
CN113230977A (zh) * 2021-06-16 2021-08-10 郭荣阳 一种多功能自动化立式秸秆制粒设备
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CN115247087B (zh) * 2021-12-31 2024-01-09 湖南鑫淼环保生物质科技有限公司 生物质能源燃料可调式加工设备
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CN114832722B (zh) * 2022-05-10 2023-01-31 江苏良友正大股份有限公司 一种节能型生物质燃料制造用制粒成型设备
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