Type A Layer Cage System
有机肥发酵罐 智能高温好氧发酵系统 提供 3 层、4 层 A 型结构选择,采用 V 型料槽设计,适用于现代化蛋鸡养殖。 热镀锌 进口钢板 节省饲料 获取报价 下载产品手册
有机肥发酵罐 智能高温好氧发酵系统 提供 3 层、4 层 A 型结构选择,采用 V 型料槽设计,适用于现代化蛋鸡养殖。 热镀锌 进口钢板 节省饲料 获取报价 下载产品手册
有机肥发酵罐 智能高温好氧发酵系统 提供 4–8 层 H 型结构选择,配备中央集蛋系统,适用于现代化蛋鸡养殖。 热镀锌 进口钢板 降低破蛋率 获取报价 下载产品手册
A/H型可选 有机肥发酵罐 智能高温好氧发酵系统 A型与H型笼架灵活选择,采用高耐腐蚀热浸镀锌结构,适用于现代化规模养殖场。 热浸镀锌 耐腐蚀 15-20 长效寿命 A/H型可选 满足不同需求 获取报价 下载产品手册
有机肥发酵罐 智能高温好氧发酵系统 提供多种通风模式及环境控制设备,满足现代化禽舎环境管理需求 获取报价 下载产品手册 产品简介 通风模式 湿帘 产品实拍 获取报价
有机肥发酵罐 智能高温好氧发酵系统 提供玻璃钢与镀锌两种储料塔选择,满足不同项目需求。 玻璃钢(FRP)储料塔 镀锌储料塔 获取报价 下载产品手册 产品简介 产品展示 获取报价
有机肥发酵罐 智能高温好氧发酵系统 高效运输 · 快速卸料 · 安全配送 高效运输 快速卸载 安全配送 获取报价 下载产品手册
有机肥发酵罐 智能高温好氧发酵系统 FARM MASTER 柴油发电机组专为现代化禽舍设计,可在市电中断时快速启动,为环境控制系统、自动喂料系统、照明系统及其他关键设备提供稳定可靠的备用电源,保障养殖生产连续运行,降低停电带来的经济损失。 节能省油 低噪音运行 防腐耐用 模块化 获取报价 下载产品手册
有机肥发酵罐 智能高温好氧发酵系统 采用高强度热镀锌钢结构,可根据当地风载、雪载及抗震标准进行定制设计,为现代化家禽养殖提供长期稳定、安全可靠的生产环境。 维护成本低 可重复利用 防腐耐用 使用寿命长 获取报价 下载产品手册
有机肥发酵罐 智能高温好氧发酵系统 集自动喂料、饮水、清粪、抓鸡于一体,为现代规模化 肉鸡养殖提供高效、智能、低成本的一站式解决方案 自动化程度高 人工成本降低 出栏效率提升 鸡只损伤降低 获取报价 下载产品手册
有机肥发酵罐 智能高温好氧发酵系统 高品质热镀锌钢材|超长使用寿命|安装便捷|适用于现代化养殖场 热镀锌钢材 耐绣防腐蚀 275g/m² 镀锌层厚度 结构稳定 坚固可靠 维护简单 经久耐用 获取报价 下载产品手册
Qiaomu Machinery focuses on the R&D, manufacturing, and sales of poultry farming equipment and fermentation equipment, providing global customers with integrated smart farming solutions. Committed to technological innovation and quality-first principles, our products are sold in over 20 countries and regions worldwide, continuously creating greater value for modern agriculture and animal husbandry.
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FarmMaster can provide installation guidance, on-site installation, system commissioning, operation training, remote diagnostics, repair support, spare parts supply, and regular follow-up visits as specified in the contract scope, ensuring technical support for the long-term stable operation of the equipment.
Read more →Please provide the project location, farming type, flock size, poultry house dimensions, and required systems. Pricing and delivery timelines depend on equipment configuration, degree of customization, production scheduling, shipping methods, and installation scope. A formal quotation and schedule will be provided after technical confirmation is completed.
Read more →This is primarily determined by daily manure output, raw material moisture content, operating hours, auxiliary material addition, and the intended use of the fermented product. It is recommended to provide daily processing volume and raw material data so that technical personnel can complete the selection.
It is mainly used to process poultry manure such as chicken manure. Pig manure, cattle manure, and other biodegradable organic materials can also be evaluated based on moisture content, composition, and treatment objectives.
It is recommended to implement personnel and vehicle entry management, separation of clean and contaminated zones, regular cleaning and disinfection, pest control, proper disposal of dead or diseased birds, and an all-in/all-out rearing system. Vaccination and disease prevention programs should be developed by professional veterinarians.
Nutrition, drinking water, lighting, temperature and humidity, ventilation, and flock health should be managed comprehensively, while keeping the egg collection system clean and operating smoothly, with reasonable settings for collection frequency and conveyor speed.
The water source should meet livestock and poultry farming water quality requirements. Water lines should be cleaned and flushed regularly, and water pressure, flow rate, drinker height, and leakage should be checked. Water supply requires particular attention during hot weather and rapid growth periods.
The feed line height, feed level, number of operating cycles, and feeding times should be properly adjusted. Equipment should be regularly checked for levelness and blockages, and feed distribution and flock feeding behavior in different areas of the house should be observed.
Ventilation rate, manure or litter moisture, drinking system leakage, manure removal frequency, and stocking density should all be checked. When addressing ammonia issues, the root causes such as excessive humidity and manure accumulation should be resolved simultaneously.
Heat stress risk can be reduced by increasing ventilation, using evaporative cooling pads or misting systems, ensuring adequate drinking water, minimizing operations during high-temperature periods, and adjusting feeding times accordingly. Backup power and high-temperature alarm measures should also be in place.
In addition to reviewing environmental data, flock distribution and behavior should also be observed. Uniform distribution with normal feeding and drinking behavior typically indicates a comfortable environment. Huddling, wing-spreading with panting, or concentrated avoidance of a specific area may indicate abnormal temperature or airflow.
The system can typically monitor or control temperature, humidity, ventilation rate, negative pressure, and lighting, while coordinating fans, evaporative cooling pads, air inlets, and heating equipment. Sensors and control functions can be configured according to project requirements.
Yes. FarmMaster can configure fans, evaporative cooling pads, air intake systems, insulation, heating, misting, and intelligent control equipment based on local extreme temperatures, humidity, altitude, and poultry house structure.
Automated feeding, drinking, egg collection, manure removal, and environmental control can significantly reduce repetitive work. Specific staffing requirements depend on farm scale, level of equipment automation, site layout, and management practices.
It typically includes automatic feed supply, feeding, drinking, egg collection, manure removal, ventilation, cooling, heating, lighting, environmental monitoring, intelligent control, and alarm systems. The specific configuration is determined by the type of poultry operation.
Yes. Whether for a single poultry house or a large-scale farming complex, FarmMaster can design appropriate equipment layouts and automation solutions based on site conditions, flock size, budget, and future expansion plans.
Farming scale and poultry house dimensions require comprehensive consideration of bird breed, flock size, rearing method, equipment tiers, ventilation capacity, site conditions, biosecurity distances, and local construction regulations. They cannot be simply calculated based on floor area alone.
Layer equipment focuses on laying performance, egg collection, and manure removal efficiency; broiler equipment emphasizes uniform feeding, growth efficiency, and harvest management; breeder equipment places greater emphasis on reproduction management and hatching egg quality. FarmMaster will recommend appropriate solutions based on farming objectives and project conditions.
It is recommended to provide the project location, poultry species, planned flock size, site or house dimensions, local climate conditions, automation requirements, and budget range. If overall planning is needed, please also indicate whether poultry house construction and manure treatment systems are included.
FarmMaster specializes in modern poultry farming and livestock/poultry manure resource utilization, offering layer, broiler, and breeder farming equipment, automatic feeding and drinking systems, egg collection and manure removal systems, poultry house environmental control systems, poultry house auxiliary facilities, and organic fertilizer fermentation equipment. One-stop integrated solutions can also be provided based on project requirements.
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