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PVC Hydroponic Strawberry Gutter Trough for Greenhouse 1
PVC Hydroponic Strawberry Gutter Trough for Greenhouse 2
PVC Hydroponic Strawberry Gutter Trough for Greenhouse 3
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PVC Hydroponic Strawberry Gutter Trough for Greenhouse 1
PVC Hydroponic Strawberry Gutter Trough for Greenhouse 2
PVC Hydroponic Strawberry Gutter Trough for Greenhouse 3
PVC Hydroponic Strawberry Gutter Trough for Greenhouse 4
PVC Hydroponic Strawberry Gutter Trough for Greenhouse 5
PVC Hydroponic Strawberry Gutter Trough for Greenhouse 6
PVC Hydroponic Strawberry Gutter Trough for Greenhouse 7

PVC Hydroponic Strawberry Gutter Trough for Greenhouse

The PVC Hydroponic Strawberry Gutter Trough for Greenhouse is a lightweight, durable channel designed to hold nutrient solution and support rows of strawberry plants in hydroponic systems. Its smooth, food-safe PVC resists algae and decay, simplifies cleaning, and fits easily into greenhouse racks or hanging frames for high-density, soil-free growing. Easy to install and maintain, it boosts yields, saves water and fertilizer, and shortens harvesting cycles.

Usage scenarios:

- Commercial greenhouse growers use the gutter troughs in long rows or multi-tier racks to maximize production per square meter and enable automated nutrient delivery and harvesting.

- Home gardeners, rooftop farmers, and hobbyists install short sections in small greenhouses or balconies for compact, clean strawberry production without soil.

- Schools, research facilities, and nursery propagation setups use the troughs for trials, teaching hydroponics, and producing nursery plants or season-extension crops under controlled conditions.

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    Height
    1.1m
    Width
    0.65m
    Usage
    Flower Vegetable Growing
    Instruction for use
    With installation manual and installation video., Growing

    Durable Compact High-Yield Design 

    The PVC Hydroponic strawberry gutter offers space-saving vertical cultivation that increases yield while cutting water use by up to 85%, fertilizer by 80% and reducing labor and pesticide needs for efficient greenhouse production. Each 3–4mm PVC strawberry gutter (top width 210mm, bottom 130mm, height 180mm, standard 6m or customizable length) sits on hot-galvanized steel shelves and corrosion-resistant frames for 15–20 years of service, shipped flat-packed on protective pallets for secure transport. Automated EC/PH-controlled irrigation, a built-in drainage slope and professional design plus after-sales support make installation and daily management simple for consistent, high-quality harvests.

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    Here are five 4-word subtitle options:

    The PVC strawberry gutter is a lightweight, corrosion‑resistant planting trough made from 3–4 mm PVC with a 210 mm top width, 130 mm bottom width, 180 mm height and adjustable lengths (standard 6 m), designed to sit on modular greenhouse shelves. As a core component of vertical hydroponic systems it integrates with automated nutrient supply, PVC main water lines, drip nozzles and substrate options (mixture or coconut coir), providing precise pH/EC control, efficient drainage and high-yield cultivation while saving land, water (up to 85%), fertilizer and labor. Paired with hot‑galvanized steel frames and shelves (durable square tubes and arch pipes), the complete structure delivers corrosion resistance, 15–20 year service life, easy customization and simplified management that reduces pests and stabilizes growing conditions.

    PVC Hydroponic Strawberry Gutter 

    The PVC strawberry gutter trough system is designed for vertical greenhouse cultivation, featuring 3–4 mm thick PVC planting troughs (top width 210 mm, bottom 130 mm, height 180 mm) with standard 6 m lengths customizable to greenhouse size. Mounted on hot-galvanized steel shelves and framework with durable square tubes, the system integrates automated irrigation and fertigation with EC and pH control, ensuring efficient drainage and uniform nutrient delivery. This hydroponic setup saves land, water and fertilizer while reducing pests and labor, supporting high-yield, controllable strawberry production with customizable trough and shelf configurations.


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    Efficient Durable Compact Yield

    This PVC hydroponic strawberry gutter trough for greenhouse is made from food-grade, UV-stabilized PVC by a brand committed to sustainable, high-yield greenhouse production, offering a lightweight, corrosion-resistant design for easy modular installation and long service life. Designed with an optimal slope, integrated root guards and anti-clog drain ports, the system ensures uniform nutrient film flow, superior aeration and reduced disease risk to improve fruit quality and yields while saving water and fertilizer. Key features and advantages include recyclable, food-grade material, UV resistance, plug-and-play modular sections, low maintenance, excellent drainage and root protection, and compatibility with automated fertigation systems to streamline greenhouse operations.

    Material introduction

    The PVC strawberry gutter is molded from 3–4 mm thick PVC with a 210 mm top width, 130 mm bottom width and 180 mm depth, and comes in adjustable lengths (standard 6 m) to fit greenhouse layouts. Support shelves and the hydroponic framework are built from hot-galvanized steel—including 100×50×2.5 mm main pillars, 50×50×2 mm secondary pillars and 32×32 mm arch pipes—for strong, corrosion-resistant support and a 15–20 year service life. Paired with PVC main water lines and choice of substrates like coco coir, this material combination ensures durable, hygienic and low-maintenance hydroponic cultivation.


    ◎ Product overview 

    ◎ Rigid waterproof lightweight PVC gutters

    ◎ Hot‑galvanized durable frame

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    FAQ

    1
    What is a PVC hydroponic strawberry gutter trough used for and in which greenhouse scenarios is it best applied?
    A PVC hydroponic gutter trough is a long, shallow channel designed to hold plants (in net pots or small substrate plugs) and deliver nutrient solution by drip or NFT-style flow. It’s ideal for greenhouse strawberry production where space efficiency, clean operation and easy harvesting are priorities—common scenarios include commercial high-density rows, vertical/multi-tier systems, R&D/testing benches, and hobby greenhouse runs. It also works for short-cycle crops (lettuce, herbs) if you adapt spacing and nutrient recipes.
    2
    How do I install and set up the gutters in a greenhouse (slope, support, connections)?
    Mount gutters on a sturdy frame or rails so they are level lengthwise with a slight slope toward the drain (typically 1–2% slope, about 1–2 cm drop per meter) to ensure smooth flow. Space supports every 0.6–1.0 m to avoid sagging. Connect gutters end-to-end with the provided couplers; fit end caps and drains, and install a return line to the reservoir if recirculating. Use UV-rated PVC or anodized metal supports for greenhouse conditions and seal all joints to prevent leaks.
    3
    What plant spacing, pot/media options and growing parameters (pH, EC, temperature) should I use for strawberries?
    Typical planting spacing is 20–25 cm between strawberry plants (roughly 4–5 plants per meter) for standard cultivars; adjust density for day-neutral or alpine types. You can run bare-root or plug plants in small net pots with coco coir, rockwool cubes, or running as a shallow NFT with no media. Target nutrient solution pH of 5.5–6.5 and EC around 1.2–1.8 dS/m (mS/cm) during fruiting; keep solution temperature 16–20°C and greenhouse air temps roughly 18–22°C day / 12–15°C night. Maintain relative humidity near 60–70% and good air circulation to reduce disease.
    4
    How should I size the pump and set flow rates; should I recirculate or use drain-to-waste?
    Pump size depends on total gutter volume, desired turnover and head height. Decide how often you want to renew the solution (common recirculating turnover is every 15–60 minutes); calculate required flow = total system volume / turnover time. Choose a pump that delivers that flow at the system’s maximum head (height + friction). Recirculation saves water/fertilizer but requires strict monitoring of EC/pH and sanitation; drain-to-waste reduces pathogen risk and salt buildup but uses more inputs. Both methods are used commercially—choose based on scale, water quality, and management capacity.
    5
    What are the routine cleaning and maintenance tasks to keep the PVC gutters healthy and productive?
    Daily: check pumps, lines, and solution levels; inspect plants for stress, pests and blockages. Weekly: measure and record EC, pH and temperature; top up reservoir and adjust nutrients. Every 2–6 weeks (or between crops): flush the system with clean water, then sanitize gutters and piping using an approved disinfectant per label (e.g., a dilute chlorine or hydrogen peroxide solution at recommended concentrations), rinse thoroughly, and remove biofilm and root debris. Inspect and clean filters, strainers and emitters to prevent clogging. Replace worn end caps, seals and support hardware as needed.
    6
    Can the PVC gutter system be scaled up or adapted for multi-tier setups and other crops?
    Yes. PVC gutters are modular and scale well—add more runs, stack tiers with a robust frame, or combine with vertical towers. For multi-tier installations account for additional structural load, access for maintenance/harvest, and pump capacity for increased head. The same gutters can grow lettuce, herbs, spinach and other small-rooted crops; simply adjust plant spacing, nutrient recipes, and light/temperature settings for each crop. For heavy or deep-rooted crops, choose wider/deeper gutter profiles or alternative systems.
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