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Provision Gardens is an official reseller of this brand.

Our inventory is sourced directly from the manufacturer and/or authorized distribution partners. We do not sell used items or unverified/old stock. This helps ensure product authenticity, freshness, and the high standard you expect.

Lechuza Pon 底物 - 30 升

常规价格 $83.99
常规价格 促销价 $83.99
结账时计算的运费

OTHER AVAILABLE SIZES / MODELS:

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数量
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Description

Description
Lechuza Pon 是一种 Lechuza 矿物植物基质,适用于室内植物,旨在支持根部通气、排水和清洁无土生长介质中的稳定养分供应。这种纯矿物植物基质是一种植物盆栽基质和室内植物生长介质,专为盆栽植物的需求而设计,特别是那些寻求整洁、无泥炭、适合日常植物护理的购物者。

该配方旨在提供出色的排水性能和最佳的根部通气,帮助根区保持开放、透气,并减少涝渍压力。其特殊成分还可作为水和养分的储库,将其保留在基质结构中,并根据需要释放给植物。这使得 Lechuza Pon 非常适合那些想要更可控的基质感,而无需使用沉重、结块土壤的植物主人。

Lechuza Pon 由沸石、浮石、火山岩和缓释肥料制成。矿物基底有助于基质保持体积稳定,因此它能保持其结构,并且不会随着时间的推移而容易压实或结块。添加的长期肥料支持郁郁葱葱的绿色生长,而稳定的 pH 值有助于为室内植物创造更稳定的根部条件。它也适用于食用植物,使其在室内植物收藏方面具有更广泛的灵活性。

这种无泥炭矿物基质适用于所有室内植物,并与 Lechuza 原创灌溉系统紧密相关。其养分和水储存、高排水能力和可重复使用的结构使其适用于装饰性室内花盆、自浇水花盆和干净的植物展示。纯矿物基底还为室内空间提供了更清洁的基质特性,在室内空间中,土壤脏乱、真菌蚋和霉菌是常见问题。

Lechuza Pon 非常适合那些想要专业品质、无泥炭的植物基质的植物主人,它在一个简单的介质中支持根部通气、养分供应、水储存和稳定结构。

产品优点:更好的通气;排水支持;保水;养分保持;空气-水平衡;减少压实;缓慢养分释放;病虫害防御;室内;室外;开花期;营养生长期;无土;水培。

保证分析:总氮 (N):14.7%;硝态氮 (N):6.6%;氨态氮 (N):8.1%;五氧化二磷 (P2O5):11.0%;氧化钾 (K2O):14.2%;微量营养素/微量元素:2.0 ME。

来源于:浮石;火山岩;沸石;缓释肥料。

How To Use

Planting Instructions

Step 1: add the drainage layer

Add LECHUZA-PON to the bottom of the planter, directly on top of the separator. This layer helps move water from the reservoir up to the plant.

Next, add a thin layer of your chosen potting mix or substrate. Use just enough to position the plant at the right height inside the planter.

Step 2: place your plant

Place the plant into the planter. You do not need to remove all of the soil from the roots. Keeping some of the existing soil around the roots can help the plant settle in more easily.

Step 3: fill the planter

Fill the rest of the planter with your chosen substrate until the plant is secure and sitting at the proper height. Gently firm the substrate around the plant so it stays in place.

Step 4: water from the top at first

For the first 12 weeks, water your plant from above, directly onto the substrate, just like you would in a regular pot.

During this adjustment period, only water as much as the plant can take up. Try to keep little to no water sitting in the reservoir until the plant has had time to grow into the self-watering system.

Derived From

Frequently Asked Questions

Why is total nitrogen (N) important for plant growth, and what makes it different from other nutrients?

Total Nitrogen is important because it directly drives leafy growth, chlorophyll production, and overall growth speed, which sets the pace for the entire plant. It’s unique because the “total” number can include different nitrogen forms that behave differently in the root zone, meaning the same total amount can produce very different results depending on the nitrogen type and plant stage.

What does nitrate nitrogen (N) do for plants?

Nitrate Nitrogen provides a stable, easy-to-absorb form of nitrogen that supports steady growth, strong foliage, and reliable plant development without sudden nutrient swings.

What Is ammoniacal nitrogen (N) and why do plants need It?

Ammoniacal Nitrogen (N) is a plant-available form of ammonium (NH₄⁺) that provides a steady, gentle source of nitrogen for healthy green growth. Unlike fast-release nitrogen types, ammoniacal nitrogen feeds plants slowly, helps stabilize root-zone pH, and works well in cooler temperatures. It is commonly used during early vegetative growth because it supports strong leaf development without burning young roots. If plants show pale leaves, slow growth, or weak stems, they may need more available ammoniacal nitrogen.

Why is phosphorus pentoxide (P2O5) important for plant growth?

P2O5 is important because it tells you how much phosphorus is available in a feeding program, and phosphorus drives root development, energy transfer, and flowering performance—making it uniquely different from many other nutrients because it’s commonly listed as a standardized “oxide equivalent” value rather than as the nutrient form plants directly absorb.

Why is potassium oxide (K2O) important for plant growth, and what makes it different from other nutrients?

Potassium oxide (K2O) is important because it shows how much potassium is available to support water control, sugar movement, and strong plant structure, which directly impacts growth quality and stress tolerance. It’s unique because K2O is mainly a label standard for potassium content, not a separate nutrient form the plant absorbs, so understanding it helps you avoid mixing up label numbers with real potassium needs.

Is pumice better than perlite for plant soil mixes?

Pumice is often better when you want long-lasting aeration without the amendment floating and shifting, because it tends to stay mixed through the pot and keeps stable pore space over time. Its unique value is improving root oxygen while still holding a thin moisture film, which makes it different from many other “lightening” ingredients that either drain too fast or move around in the container.

What does lava rock do for plant roots?

Lava rock improves root-zone airflow and long-term structure, helping roots access oxygen while moisture drains in a more controlled way. It’s unique because it stays hard and stable instead of breaking down, so the drainage and aeration benefits remain consistent over time compared with amendments that mainly hold water or collapse as the mix settles.

What does zeolite do for plants?

Zeolite helps the root zone hold onto water and key nutrients so they stay available longer instead of washing away. It’s important because it stabilizes feeding and moisture between waterings, and it’s unique because it mainly buffers and releases nutrients over time rather than directly “feeding” the plant like a nutrient source.

What makes slow release fertilizer different from regular fertilizer?

Slow release fertilizer is unique because it feeds plants gradually over time instead of delivering most nutrients all at once. This steady supply can support more consistent growth and reduce nutrient swings, but it also means corrections happen slower, so the rate and conditions matter more than with faster-feeding options.

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