Qingdao Cherish is a world-class integrated industry and trade enterprise dedicated to the design, manufacture, and global supply of intelligent engineering systems, high-efficiency powder coating systems, and specialized industrial water treatment solutions.
Founded by a team of experienced process engineers and international business professionals, the company was established with a clear mission: to provide efficient, durable, and sustainable equipment solutions through continuous innovation, precision manufacturing, and customer-focused service. From initial concept design and technical planning to production, delivery, and after-sales support, we ensure consistent quality and dependable performance throughout every project lifecycle.
As the demand for high-performance water treatment equipment increases, our specialized industrial solutions division focuses on delivering high-capacity industrial wastewater filtration, brackish water treatment plants, and seawater reverse osmosis (SWRO) systems to factories worldwide.
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As municipal rules tighten and climate change impacts freshwater resources, industrial manufacturing facilities are moving towards Zero Liquid Discharge (ZLD) and advanced filtration loops.
Modern factories are upgrading traditional filtration to smart, multi-stage Reverse Osmosis (RO) systems equipped with IoT monitoring sensors. These prevent membrane scaling in real-time, reducing downtime and lowering chemical costs.
Tightening environmental legislation means companies must recycle up to 98% of industrial effluent. This requires the integration of biological treatments (MBR) and high-pressure RO units to reclaim clean process water.
With rising power prices, modern seawater desalination and brackish water systems must feature energy recovery devices (ERDs). This recovers hydraulic pressure to lower overall energy demand per cubic meter of clean water.
Expert Insight (E-E-A-T Directive): "High-performance membrane elements and high-pressure pumps must be matched precisely. An unbalanced RO system can lead to premature membrane fouling and high energy footprints, increasing long-term operational expenditure (OPEX) by up to 45%."
Qingdao Cherish organizes its manufacturing capacity across two divisions to deliver focused technical expertise and reliable operations.
Our Parking Systems Division focuses on the development and production of mechanical car parking lifts, automated parking systems, car stackers, and customized parking solutions. Designed to maximize space utilization and operational efficiency, our systems are widely applied in residential buildings, commercial facilities, hospitals, and urban developments. Through continuous engineering innovation and strict quality control, we deliver safe, reliable, and space-saving parking solutions tailored to global project requirements.
Our Industrial Equipment Division provides advanced powder coating lines and sewage treatment plant solutions for industrial applications. These systems are engineered to improve production efficiency, surface finishing quality, and environmental sustainability. By integrating automation technology with durable system design, we help clients optimize manufacturing processes while meeting modern environmental standards and regulatory requirements.
Accelerated urbanization and industrialization require modern factories to manage water footprints responsibly. Qingdao Cherish delivers specialized systems to address these challenges.
Highly customized seawater desalination and brackish water treatment units designed to process high salinity intake water into ultra-pure industrial process water or drinking water.
Integration of Membrane Bioreactor (MBR) modules, chemical dosing skids, and clarification loops for recycling process water and achieving zero-discharge targets.
Multimedia, activated carbon, and ultrafiltration (UF) systems tailored to remove organic loads and suspended solids, protecting sensitive downstream membranes.
Essential considerations for factory procurement officers sourcing water treatment plants.
Integrating smart architectural solutions and industrial finishing technologies to optimize factory footprints and enhance output quality.
The Triple-Level Parking Lift is designed to maximize vertical space in both residential and commercial parking settings. Built to accommodate combinations of sedans and SUVs, this system offers a robust footprint optimization option. Whether integrated into residential garages or high-density commercial developments, its hydraulic lift mechanisms ensure quiet operation, fast cycle times, and safe parking/retrieval. Heavy-duty construction and safety locking systems make it a reliable choice where parking space is at a premium.
Offering capacities of 2300kg or 2700kg, the Double-Level 2 Post Car Parking Lift is designed to meet various payload requirements. With a lifting height of 2100mm, it fits most passenger vehicles while maximizing single-slot capacity. Variable column heights allow configuration based on overhead clearance, making it suitable for basement garages or low-ceiling properties. The post structure provides safety and stability, making it an efficient option for residential and commercial multi-car storage.
The Tilting Parking Lift is designed for tight urban spaces and low-overhead basements. By positioning the platform at an angle, it stores vehicles in tight vertical clearances where vertical lifts cannot fit. The lift supports adjustable heights between 1400mm and 1800mm, adapting to different vehicle heights. Supported by a 2000kg load capacity, it offers a space-saving option for basement retrofits and compact urban developments.
The Multi-Level 2-6 Levels Automatic Puzzle Parking System is a cost-effective automated parking option. It utilizes lateral and vertical movement to park and retrieve cars, maximizing capacity on small land footprints. Fully customizable and suitable for both indoor and outdoor installations, it handles both sedans and SUVs, offering an efficient parking solution for high-density municipal, commercial, and residential projects.
Powder coating represents an advanced surface coating technology. Its primary environmental advantage is producing near-zero volatile organic compound (VOC) emissions compared to traditional liquid paints. The process yields uniform, durable coatings on metal components, eliminating issues like runs or sagging. Integrated overspray recovery systems recycle paint particles to achieve material utilization close to 100%, minimizing waste and lowering operation costs. These lines provide consistent finishes for both internal and external machinery structures.
We continue to integrate smart tech and sustainable features into our industrial systems, keeping our clients' operations aligned with efficiency and environmental goals.
Integrating predictive maintenance modules into industrial systems, allowing sensors to forecast membrane degradation, mechanical wear, and fluid dynamics, minimizing unexpected downtime.
Deploying energy-recovery technologies in RO plants to lower the power footprint per cubic meter of treated water, supporting sustainability and carbon-reduction goals.
Designing zero-discharge, closed-loop systems that unify wastewater treatment, coating, and mechanical assembly to support highly efficient industrial campuses.
Detailed technical answers to common queries regarding industrial water treatment plants, mechanical lifts, and manufacturing compliance.
The choice depends on the Total Dissolved Solids (TDS) of the feed source. Brackish water systems are suitable for TDS levels from 1,000 to 15,000 ppm, utilizing lower-pressure membranes. Seawater RO systems are required for TDS levels above 15,000 ppm (typically 35,000 ppm for ocean water) and use high-pressure pumps and corrosion-resistant alloys.
Pre-treatment is key. We integrate multi-media filters, ultrafiltration (UF), and anti-scalant dosing systems upstream of the RO membranes. Additionally, integrated Clean-in-Place (CIP) systems allow automated washing to maintain membrane flux.
Yes, all structural steel undergoes shot-blasting before receiving an electrostatic powder coat or hot-dip galvanized finish. This provides corrosion protection, making the systems suitable for both indoor basements and outdoor environments.
Power demands vary by system capacity and feed pressure. Brackish systems generally require 1.0 to 1.5 kWh per cubic meter of water produced, whereas seawater systems with energy-recovery devices require approximately 3.0 to 4.0 kWh/m³.
A tilting lift features an adjustable platform angle, allowing the vehicle to sit at a slight incline. This reduces the required vertical clearance by up to 30%, enabling installation in basements with ceilings as low as 2.8 meters.
Our equipment is built to international standards, holding CE certifications, ISO 9001:2015 quality management credentials, and compliance options for regional standards such as ASME and UL.
Yes, we design custom configurations utilizing MBR, Fenton oxidation, and active carbon systems to address high Chemical Oxygen Demand (COD) and specific organic contaminants present in industrial process streams.
We supply complete engineering drawings, piping schematics, and operational guides with each system. Our engineering teams provide remote support for commissioning, and we maintain an inventory of replacement membranes, pumps, and valves for fast dispatch.