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Di Liang Michigan State University Kellogg Biological Station.

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A BRIEF INTRODUCTION ON PLANT NUTRITION AND HYDROPONICS Di Liang Michigan State University Kellogg Biological Station
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Page 1: Di Liang Michigan State University Kellogg Biological Station.

A BRIEF INTRODUCTION ON PLANT NUTRITION AND HYDROPONICS

Di LiangMichigan State UniversityKellogg Biological Station

Page 2: Di Liang Michigan State University Kellogg Biological Station.

Plants need the right combination of nutrients

to live, grow and reproduce.

Page 3: Di Liang Michigan State University Kellogg Biological Station.

The major source of plant nutrition is the fixation of atmospheric CO2 into sugar. CO2 enters through the stomata.

Page 4: Di Liang Michigan State University Kellogg Biological Station.

Not sufficient?

Plants also need inorganic nutrients. Macronutrients and Micronutrients

Page 5: Di Liang Michigan State University Kellogg Biological Station.

Macronutrients

Carbon, Hydrogen, Oxygen, Nitrogen, Potassium, Calcium, Phosphorus, Magnesium and Sulfur

Each may exceed 1% dry weight of plant.

Page 6: Di Liang Michigan State University Kellogg Biological Station.

Micronutrients

Iron, Chlorine, Copper, Manganese, Zinc, Molybdenum, and Boron

Constitute from less than one, to several hundred PPM in most plants.

Page 7: Di Liang Michigan State University Kellogg Biological Station.

Functions

Page 8: Di Liang Michigan State University Kellogg Biological Station.

Functions

Page 9: Di Liang Michigan State University Kellogg Biological Station.

The Story of Boron

Page 10: Di Liang Michigan State University Kellogg Biological Station.

Leybig’s Law of the Minimum

Plants will stop growing when a single nutrient is lacking although all other nutrients are sufficient.

Page 11: Di Liang Michigan State University Kellogg Biological Station.

N deficiency

General yellowing of older leaves (bottom of plant). The rest of the plant is often light green.

Page 12: Di Liang Michigan State University Kellogg Biological Station.

Corn: “V” shape on old leaves

N deficiency

Page 13: Di Liang Michigan State University Kellogg Biological Station.

P deficiency

Leaf tips look burnt, followed by older leaves turning a dark green or reddish-purple.

Page 14: Di Liang Michigan State University Kellogg Biological Station.

P deficiency

Rice: decreased tiller number, smaller ear, less fruits

Page 15: Di Liang Michigan State University Kellogg Biological Station.

P deficiency

Citrus: thicker skin and lower quality

Page 16: Di Liang Michigan State University Kellogg Biological Station.

K deficiency

Older leaves may wilt, look scorched. Inter veinal chlorosis begins at the base, scorching inward from leaf margins.

Page 17: Di Liang Michigan State University Kellogg Biological Station.

K deficiency

Cotton: spots occurred between veins.

Page 18: Di Liang Michigan State University Kellogg Biological Station.

K deficiency

Tomato: “green back”

Page 19: Di Liang Michigan State University Kellogg Biological Station.

K deficiency

Page 20: Di Liang Michigan State University Kellogg Biological Station.

Ca deficiency

New leaves (top of plant) are distorted or irregularly shaped. Causes blossom-end rot.

Page 21: Di Liang Michigan State University Kellogg Biological Station.

Mg deficiency

Yellowing occurs between veins. “web” pattern is on old leaves.

Page 22: Di Liang Michigan State University Kellogg Biological Station.

Mg deficiency

Page 23: Di Liang Michigan State University Kellogg Biological Station.

Why hydroponics

Too much fertilizer Easy to control Straightforward

Page 24: Di Liang Michigan State University Kellogg Biological Station.

True Hoagland Solution

6 ml of 1 M potassium nitrate4 ml of 1 M calcium nitrate

1 ml of 1 M monoammonium phosphate2 ml of 1 M magnesium sulfate

1 ml of micronutrient stock solution1 to 5 ml of iron chelate stock solution

Micronutrient stock solution per liter:

2.86 g boric acid1.81 g manganese chloride - 4 hydrate

0.22 g zinc sulfate - 7 hydrate0.08 g copper sulfate - 5 hydrate

0.02 g 85% molybdic acid

Page 25: Di Liang Michigan State University Kellogg Biological Station.

Hydroponics

ml -N -P -Fe

1M KNO3 _ 5 5

1M Ca(NO3)2 _ 5 5

1M MgCl2 2 2 2

1M KH2PO4 1 _ 1

0.05M FeEDTA 1 1 _

Micronutrient 1 1 1

1M CaCl2 5 _ _

0.5M Na2SO4 5 2 2

Total 15 16 16

Page 26: Di Liang Michigan State University Kellogg Biological Station.

Roots

-N+N

Page 27: Di Liang Michigan State University Kellogg Biological Station.

Thank you!


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