Straw carbonization production line

The straw carbonization equipment production line is an industrialized equipment system integrating biomass pyrolysis conversion, automatic control and resource recycling. Its core function is to convert agricultural wastes such as crop straw into high value-added products like biochar, biogas and wood vinegar through pyrolysis reactions in a high-temperature, oxygen-free or low-oxygen environment, while achieving energy conservation, emission reduction and the resource utilization of agricultural wastes.

Description

The straw carbonization equipment production line is a complete set of industrial equipment systems that take agricultural waste (such as wheat, corn, rice, cotton, and other crop straws) as the core raw material. It integrates multiple equipment in the processes of “pre-treatment – carbonization – post-treatment”, and realizes the resource conversion of straw in a controllable anaerobic or hypoxic environment through pyrolysis and dry distillation technologies. It converts straw, which is prone to pollution when burned traditionally, into biomass charcoal products that can be used as fuel, soil conditioners, and industrial adsorbents. At the same time, it recovers by-products to maximize resource utilization. This is a key technical equipment for the resourceful and low-carbon treatment of agricultural waste. The production line mainly consists of pre-treatment equipment, carbonization equipment, and exhaust gas treatment equipment, etc.

Features of the straw carbonization equipment production line:
1. Diverse processing capacity
2. High-quality carbonization effect
3. Superior environmental protection performance
4. Advanced degree of automation
5. Stable and durable equipment
6. Wide range of product applications

Faqs

The feed inlet frequently gets clogged, resulting in uneven heating of the materials inside the carbonization furnace. The size of the finished carbon particles varies greatly, and some large raw materials have not been fully carbonized.
(1) A sudden increase in the temperature inside the furnace (above 600℃) leads to the burning loss of the carbon material, or a sudden drop in temperature (below 300℃) causes incomplete carbonization; (2) The temperature sensor shows abnormal readings, with a significant deviation from the actual furnace temperature.

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