soil quality, moisture, and temperature evaluation under

1
Sampling for initial soil quality assessment at Tennessee S o i l Q u a l i t y , M o i s t u r e , a n d T e m p e r a t u r e E v a l u a t i o n u n d e r D i f f e r e n t B i o d e g r a d a b l e M u l c h e s Introduction Sintim H.Y. 1 , Bandopadhyay S. 2 , English M.E. 2 , Ghimire S. 3 , Flury M. 1 , Bary A. 1 , Schaeffer S. 2 , DeBruyn J. 2 , Miles C. 3 , and Inglis D. 4 1 WSU Department of Crop and Soil Sciences, WA; 2 UTIA Biosystems Engineering and Soil Science, TN 3 WSU Department of Horticulture, WA; 4 WSU Department of Plant Pathology, WA Biodegradable plastic mulch (BDM) can substitute conventional polyethylene mulch (PE). BDM can be soil incorporated after usage, alleviating disposal costs. Microclimate and BDM impact on agricultural soil ecosystems needs to be evaluated. Results Conclusions Acknowledgement Microclimate: Soil temperature was less variable to depth increase in all the mulch treatments (Fig. 1). The maximum soil temperature at 0, 10, 20 cm soil depths was 54.8, 34.3, and 30.0C, respectively. Soil water content differed in mulch treatments at both sites. Bare ground was generally dryer throughout the season at Mount Vernon, WA and during early crop season at Knoxville, TN (Fig. 2). The mulches reduced light penetration by more than one hundred thousand lux (Fig. 3). Overall, the PE mulch treatment was the most effective in preventing light penetration. Soil quality: No effects of BDM on the soil quality parameters tested after first year cropping season. Drainage : No water drainage during the growing period. Microclimate varies with mulch type, which affects crop growth and productivity. There were no effects of the mulch treatments on soil quality. This material is based upon work that is supported by the National Institute of Food and Agriculture, U.S. Department of Agriculture, under award number 2014-51181-22382. We acknowledge farm crews at TN and WA for their support, and Decagon Devices for providing instrumentations. Locations : Established in 2015 at Knoxville, TN and Mount Vernon, WA. Soil quality: Tested soil biological, physical, and chemical parameters (Table 1). Treatments : Four BDMs, plus bare ground, paper mulch, and PE as controls. Test crop: Pie pumpkin (Cucurbita pepo) Instrumentations : Decagon 5TM sensors at 10 and 20 cm soil depths. Hobo Pendant Temperature/Light Data Loggers at soil surface or directly underneath mulches (WA only). Drain Gauge G3 at 55 cm depth (WA only). Suction lysimeters at 30 cm depth (TN only). Table 1. Initial soil characteristics at Knoxville and Mount Vernon field sites. Fig. 2. Hourly soil water content of bare ground, PE, and BioAgri at 20 cm soil depth Knoxville, TN and Mount Vernon, WA. Examine light, temperature, and moisture flow dynamics in BDM plots. Evaluate BDM effects on soil quality and potential for ground water pollution. Objectives Materials and Methods 0 10 20 30 40 50 60 Temperature ( C) Air temperature 0 10 20 30 40 50 60 Bare ground 0 cm depth 10 cm depth 20 cm depth June July Aug Sep June July Aug Sep June July Aug Sep June July Aug Sep Fig. 1. Hourly air and soil temperatures at 0, 10 and 20 cm depths for bare ground, PE, and BioAgri at Mount Vernon, WA. 0 0.05 0.1 0.15 0.2 0.25 0.3 0.35 Soil water content (cm³cm‾³) Time Bare ground PE (Black plastic) BDM (BioAgri) 0 0.05 0.1 0.15 0.2 0.25 0.3 0.35 Time 0 1 2 3 4 5 6 Light illuminance (klux) Time BDM (BioAgri) PE (Black plastic) 0 50 100 150 200 250 Light illuminance (klux) Time Bare ground July Aug Sep June July Aug Sep July Aug July Aug Site Soil texture Agg. Stability % Bulk density g cm³ Organic matter % Soil respiration kg COha‾¹ d‾¹ Soil pH Soil EC dS m‾¹ NO-N kg ha‾¹ KV Sandy L. 23.7 1.41 1.43 56.9 6.1 0.07 32.0 MV Silt L. 25.3 1.31 2.36 20.3 6.6 0.03 13.7 Knoxville, TN field site after mulch installation. Mount Vernon, WA Fig. 3. Hourly light penetration of Bare ground, PE, and BioAgri at Washington. 0 10 20 30 40 50 60 Time BDM (BioAgri) 0 10 20 30 40 50 60 Temperature (°C) Time PE (Black plastic) Knoxville, TN Installing drain gauge at Washington Priming drain gauge Installing soil sensors Knoxville, TN Mount Vernon, WA Mount Vernon, WA field site 3 wks after transplanting .

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Sampling for initial soil qualityassessment at Tennessee

Soil Quality, Moisture, and Temperature Evaluation under Different Biodegradable Mulches

Introduction

Sintim H.Y.1, Bandopadhyay S.2, English M.E.2, Ghimire S.3, Flury M.1, Bary A.1, Schaeffer S.2, DeBruyn J.2, Miles C.3, and Inglis D.41WSU Department of Crop and Soil Sciences, WA; 2UTIA Biosystems Engineering and Soil Science, TN

3WSU Department of Horticulture, WA; 4WSU Department of Plant Pathology, WA

Biodegradable plastic mulch (BDM) cansubstitute conventional polyethylene mulch (PE).

BDM can be soil incorporated after usage,alleviating disposal costs.

Microclimate and BDM impact on agricultural soilecosystems needs to be evaluated.

Results

Conclusions

Acknowledgement

Microclimate:

Soil temperature was less variable to depth increasein all the mulch treatments (Fig. 1). The maximumsoil temperature at 0, 10, 20 cm soil depths was 54.8,34.3, and 30.0 C, respectively.

Soil water content differed in mulch treatments atboth sites. Bare ground was generally dryerthroughout the season at Mount Vernon, WA andduring early crop season at Knoxville, TN (Fig. 2).

The mulches reduced light penetration by more thanone hundred thousand lux (Fig. 3). Overall, the PEmulch treatment was the most effective in preventinglight penetration.

Soil quality: No effects of BDM on the soil qualityparameters tested after first year cropping season.

Drainage: No water drainage during the growingperiod.

Microclimate varies with mulch type, whichaffects crop growth and productivity. There wereno effects of the mulch treatments on soilquality.

This material is based upon work that is supported by the National Institute ofFood and Agriculture, U.S. Department of Agriculture, under award number2014-51181-22382. We acknowledge farm crews at TN and WA for their support,and Decagon Devices for providing instrumentations.

Locations: Established in 2015 at Knoxville, TN andMount Vernon, WA.

Soil quality: Tested soil biological, physical, andchemical parameters (Table 1).

Treatments: Four BDMs, plus bare ground, papermulch, and PE as controls.

Test crop: Pie pumpkin (Cucurbita pepo)

Instrumentations: Decagon 5TM sensors at 10 and 20 cm soil depths.

Hobo Pendant Temperature/Light Data Loggers at soilsurface or directly underneath mulches (WA only).

Drain Gauge G3 at 55 cm depth (WA only).

Suction lysimeters at 30 cm depth (TN only).

Table 1. Initial soil characteristics at Knoxville and Mount Vernon field sites.

Fig. 2. Hourly soil water content of bare ground, PE, and BioAgri at 20 cm soil depth Knoxville, TN and Mount Vernon, WA.

Examine light, temperature, and moisture flowdynamics in BDM plots.

Evaluate BDM effects on soil quality andpotential for ground water pollution.

Objectives

Materials and Methods

0

10

20

30

40

50

60

Tem

pera

ture

(C)

Air temperature

0

10

20

30

40

50

60 Bare ground 0 cm depth10 cm depth20 cm depth

June July Aug Sep June July Aug Sep

June July Aug Sep June July Aug Sep

Fig. 1. Hourly air and soil temperatures at 0, 10 and 20 cm depths for bare ground, PE, and BioAgri at Mount Vernon, WA.

0

0.05

0.1

0.15

0.2

0.25

0.3

0.35

Soil w

ater

cont

ent (

cm³c

m‾³)

Time

Bare groundPE (Black plastic)BDM (BioAgri)

0

0.05

0.1

0.15

0.2

0.25

0.3

0.35

Time

0

1

2

3

4

5

6

Ligh

t illu

min

ance

(klu

x)

Time

BDM (BioAgri)

PE (Black plastic)

0

50

100

150

200

250

Ligh

t illu

min

ance

(klu

x)

Time

Bare ground

July Aug Sep June July Aug Sep

July Aug

July Aug

SiteSoil

textureAgg.

Stability%

Bulk densityg cm‾³

Organic matter

%

Soil respiration

kg CO₂ ha‾¹ d‾¹

Soil pH

Soil EC

dS m‾¹

NO₃-N

kg ha‾¹

KV Sandy L. 23.7 1.41 1.43 56.9 6.1 0.07 32.0

MV Silt L. 25.3 1.31 2.36 20.3 6.6 0.03 13.7

Knoxville, TN field site after mulch installation.

Mount Vernon, WA

Fig. 3. Hourly light penetration of Bare ground,PE, and BioAgri at Washington.

0

10

20

30

40

50

60

Time

BDM (BioAgri)

0

10

20

30

40

50

60

Tem

pera

ture

(°C)

Time

PE (Black plastic)

Knoxville, TN

Installing drain gauge at Washington Priming drain gauge

Installing soil sensors

Knoxville, TN Mount Vernon, WA

Mount Vernon, WA field site 3 wks after transplanting .