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Leveraging Packaging
Within a Cluster
Claire Sand, Ph.D.
Packaging Technology and Research, LLC
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
Leverage
Packaging
raw materials for
packaging
converted
packaging
manufactured
packaging
components
combined
product
and
package
distributed
product and
package
sold
product and
package
discarded
product and
package
Packaging
Value
Chain
Interfaces
Outline
Create Sustainable links
Build Intelligent links
Innovate with agility
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Leveraging Packaging Within a Cluster
Create Sustainable links
Claire Sand, PTR - August 2017
Packaging Life Cycle
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
The Waves of Sustainability
• 2nd Wave
• 1969 and the Cuyahoga River was burning
• Silent Spring
• Weather inversions in London and NYC
• Earth Day and EPA 1970
• Ended in USA in 1990s
• 26th anniversary of Grune Punkt
• near-infrared separators, eddy flow separators and metal separators reduced
the cost of recovering plastics 95%
• 3rd Wave
• Benefits of global supply, TBL, PPP, CSR
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
4th Wave – Sustainability: Age of Reason
• Motivated by negatives:
• Greenwashing
• LCA mania
• Motivated by positives:
• Food waste awareness
• Global brands & packaging supplies
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Sustainability: Food waste awareness
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Sustainability: Food waste rationale
• Business case for
reducing food waste
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Leveraging Packaging in a cluster
Sustainability: Business potential in
reducing food waste
• Drives packaging
investments
• Shared value alters costs
and benefits
• LiquiGlide, a
nontoxic food
packaging coating
that increases the
consumers ability to
get all of the food
out of containers
(e.g. ketchup bottles)
• Hello Fresh!
• BluWrap
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Sustainability: Global brands &
packaging suppliers
• Same
situations-small
families, no
families
• Packaging
material
development
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Sustainability: Alphabet soup
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Sustainability: More sustainable choices
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
Seventh Generation bottle
Consumes about 33% less energy to produce
Carbon Footprint that is 48% lower than plastic
Sustainability: More sustainable choices
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
Calcium Carbonate stiffens HDPE
Sustainability: VC derived labels
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
Sustainability: Links with packaging
• New partnerships address shared value
• Resources
• Coke and BFS
• Earthwise Environmental-water
• Design for Recovery
• Build Composting and Recycling Infrastructure
• Retailers & Distributors
• Enable recycling on site
• EVOH and Dow
• Closed loop returnables
• DC optimization (rings)
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
How to leverage sustainable links in FaB
Leveraging Packaging in a cluster
• Identify new partnerships as a group that address shared value in
sustainability (for example):
• Manufacturing
• Common resources and learning curves in lowering energy costs
• Resources
• Common resources and sustainability goals
• Retailers & Distributors
• Link with retailers to help solve joint issues with packaging and
product solutions-mutual benefit to address e-commerce
• E-commerce-link with to meet packaging and product needs
• Packaging suppliers
• New materials with common packaging structures
Claire Sand, PTR - August 2017
Outline
Create Sustainable links
Build Intelligent links
Innovate with agility
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Leveraging Packaging Within a Cluster
Build Intelligent links
Claire Sand, PTR - August 2017
Build intelligent links
• Connect food spoilage solutions
• Barriers
• Technology in packaging and process
• Access to intelligent packaging
• Branding and communication
• Fraud
• Value chain
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Intelligence: Food spoilage
commonalities
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Intelligence: Common barrier
technologies
• Common OTRs (cc/m2dayatm)
• PET – 0.22
• HDPE - 2.6
• PP – 11
• LDPE - 20
• Paper/polymer – variable
• Combinations paper-metal-polymer - ~0
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Intelligence: Better barriers w nanotech
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
• Polymer-Clay composites
• Oxygen scavenger
layers
• Odor emitters
+
Intelligence: Barriers and controlled release
• Humidity from respiring
produce triggers the release of
ClO2 at low, sustained doses to
enhance product safety, shelf-
life, and quality
• Controlled release of ClO2 in
polymers
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Intelligence: Edible film tech
• Films and coatings
• Moisture barriers
• Antimicrobials
• Glazes, etc.
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Intelligence: Antimicrobial tech
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
within a structure
as a coating
through headspace
Antimicrobial Food Safety
Microbes
Food Quality
Microbes
Categories
Tested
Packaging
Materials
Tested
FDA EU FAO/WHO Manufacturers Economic Social Issues Technology Innovation Recommendation
Nisin Listeria (with
Lysozyme); E.
coli (with EDTA);
Salmonella
Not assessed Meat, cheese,
seafood,
perishable
processed food
Cellulose and
SPI, zein, WPI,
LDPE,
cellophane,
paper, chitosan
GRAS E234;
Restrictions to
cheese, eggs,
puddings
Approved Numerous Costs are not standard and
are based on desired result;
concern with resistance
promotoes use of other
bacteriocins in tandem
Increased resistance
possible; considered natural
Abundance of studies due to
nisin’s commercial availability
Use bacteriociins
synergistically;
bioengineering for increased
efficacy; refine coating
distribution
Pursue
Pediocin Listeria S. aureus and B.
cereus
Processed meat
(ham, bologna,
smoked fish)
WPI coated PP,
Cellulose
GRAS Not approved Minimal Concern with resistance
promotoes use of other
bacteriocins in tandem
Increased resistance
possible; considered natural
Limited studies Use bacteriociins
synergistically;
bioengineering for increased
efficacy; refine coating
distribution
Lacticin Clostridia and
Listeria
S. aureus,
Bacillus,
Lactococcus,
Lactobacillus
Cottage cheese,
cheese, milk,
orange juice, egg,
water, ham,
turkey breast,
smoked salmon
Zein, WPI,
Paper board with
AP; PE,
Pectin/PLA
composite
Cellophane
GRAS Not approved Approved
by 50+
countries
Laboratories Concern with resistance
promotoes use of other
bacteriocins in tandem
Increased resistance
possible; considered natural
Limited understanding
beyond use as additive
Use bacteriociins
synergistically;
bioengineering for increased
efficacy; refine coating
distribution
Pursue
Chitosan E. coli S. Aureus, P.
fragi, B. subtilis
Seafood PVA, PE, carrier
of other
antimicrobials
GRAS Not approved Multiple Innovations and use in water
quality and fuel cells may
lower prices or increase
demand to increase prices
Non-toxic, biodegradable,
and biocompatible
Abundance of research;
variability of results due to
natural origin
Combining with other
antimicrobials to increase
spectrum; identify optimum
molecular weight and
polymerization
Lysozyme Listeria; E.coli
(with lactoferrin
or EDTA)
S. Aureus, P.
fragi, B. subtilis,
L. plastarum
Tuna; sushi, raw
and processed
meat
Cellulose, paper,
zein, SPI,
PVOH, surface
immobilization
GRAS E1105;
approved for
cheese and
beer
Numerous
chemical
companies
Need to combine with
lactorferrin or EDTA to inhibit
E.coli
Considered natural Abundance of research;
variability of results due to
natural origin
To attain both Listeria and E.
coli inactivity, determine
optimum EDTA or lactoferrin
concentration
Pursue
Lactoperoxidase Listeria; E. coli Yeasts, Molds Salmon and
roasted turkey,
milk, cheese,
vegetables
•WPI, alginate GRAS No approved Recommen
ded when
adequate
cooling
unavailable
in dairy
Numerous
chemical
companies
Whey derivation lowers cost Advocacy by FAO has
increased awareness
Efficacy a function of LPS,
thiocyanate, and H2O2
Activation by H2O2 Pursue
Plant Extracts E. coli
(Oregano);
Listeria (Neem)
S. aureus
(Grapefruit seed,
green teat)
SPI, WPI,
chitosan, casein
GRAS Approved Approved Numerous Costly due to extraction Taste preferences inhibit use;
no labeling issues
Not applied beyond
laboratory stages
Natural/organic platform;
improving efficacy
Pursue as
natural/organic
platform
Metal ions E.coli , Listeria
(Titanium), Ziinc,
Silver, Copper);
Salmonella (Zinc
and nisin)
S. aureus Meat, sliced fruit,
eggs, orange juice
Glass, metal,
polymers,
chitosan, zein,
cellulose
Defined
amounts
Defined
amounts
Defined
amounts
Numerous Silver most costly Consumer familiarity;
Environmental and increased
resistance; Limit migration
into food is paramount
Nanoparticles most effectives
due to shigh surface area
Medical research applicable
to food packaging
Surface
Treatments
E. coli Antifungal Meat, produce Paperboard,
polymers
by-products
would need
approval
by-products
would need
approval
by-
products
would need
approval
Internal Variable resultant additives require
acceptance
Skill set within converters Adapt processes from
medical packaging; plasma
activation; GRAS by-products
Pursue to expand
core competency
Acids, Salts,
Anhydrides
Listeria and
E.coli (Sorbic
Acid); Listeria
(Lauric acid and
EDTA)
Yeasts, Molds Meat, produce Coatings on
various
substrates
Most are
GRAS
Defined
amounts
allowed
Defined
amounts
allowed
Numerous Variable Consumer familiarity Processes of inactivation are
well known
Refined efficacy Pursue
Chlorine Dioxide Listeria,
Salmonella
Not Evaluated Produce Known
permeability to
ClO2
Considered a
treatment
E926 under
consideration
Numerous Systems in place lowers cost Color issues; Connected to
household disinfectant
Technology well known Explore ability to recharge
system
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
Intelligence: Antimicrobial
Intelligence: New and emerging
technologies in processing
• HPP
• MATS
• Ohmic
• PL
• ?
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Intelligent Packaging
• Branding & communication
• Temperature/etc. monitoring
• Track and trace-fraud
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
• Intelligent packaging
expands brand image
potential
• Canadian brand with pulses
Intelligent Packaging: Branding &
communication
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
Intelligent Packaging: TTIs
• L5-8 Smart Seafood
• irreversible color
change from the
hydrolysis of
triglycerides
• CoolVu
• aluminum
layer thins
causing a
reaction
• FreshCode, Varcode
andTempix, Tempix
• fading barcodes
• FreshMeter
• turns from blue
to gray via
benzopyridine
photoactivation
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
Intelligent Packaging: Degradation sensors
• High surface to volume ratio of nanofibrous
membranes and
electrospun sensors
• Based on surface enhanced Raman spectroscopy
(SERS)
• Measures total volatile basic nitrogen (TVBN)
• Monitors cysteine loss via hydrogen sulfide
• Color change indicator that activates as microbial
growth increases
• Advances in wireless nanosensor networks (WNSNs)
• Graphene printing and conductive polymers
• enables wireless communication between
nanosystems
• Incorporate antibodies (for detection) within polymer
films
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
Intelligent Packaging: Responsive sensors
• Responsive sensors that detect then act to reduce deteriorative
reactions
• Through the release of CO2, antioxidants or pH change agents
• Tremendous amount of IP in this area
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
Current solutions
• Measures total volatile basic nitrogen (TVBN)
• Monitors cysteine loss via hydrogen sulfide
• CO2 sensors indicate freshness loss as produce respires
• Color change indicator that activates with microbial growth
Food and packaging fraud
are intertwined from
ingredients to finished
goods
Intelligent Packaging: Reduce fraud
Need to reduce fraud is high:
billion industry by 2020
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
Intelligent Packaging: Deter fraud (overt)
Overt authenticity is refined and solutions exist
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
Intelligent Packaging: Detect fraud (covert)
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
Intelligent Packaging: Status
• TTIs continue to be the standard
• For optimum safety, focus on degradation sensors in 3-5 years
• Assess branding and authenticity link to balance costs
• For nutritional waste reduction and safety, focus on responsive sensors in
3-5 years
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
How to Leverage Intelligence in FaB
Leveraging Packaging in a cluster
• Identify new partnerships as a group that address shared value in
intelligence:
• Marketing
• Branding and communication
• Barriers & Shelf life
• Common technology access
• Retailers & Distributors
• Track and trace
• Fraud (FIDES)
• Branding
• Packaging suppliers and food suppliers
• New materials with common packaging structures
Claire Sand, PTR - August 2017
Outline
Create Sustainable links
Build Intelligent links
Innovate with agility
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Leveraging Packaging Within a Cluster
Innovate with agility
Claire Sand, PTR - August 2017
Innovate with agility
• Innovation requires the agility to meet changing value chain needs
• Need shared value in relationships
• Consumer–fickle
• Distributor/Retailer-real or virtual
• Manufacturing - copacker or you
• Packaging supplier
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Packaging Challenges that Need
Innovation/agility
MANUFACTURER
• Reduce contamination
during product fill
• Assess initial microbial
load
• Reduce initial microbial
load
• Enable HACCP, etc.
• Address chilled worker
conditions
Leveraging Packaging Within a Cluster
DISTRIBUTOR/
RETAILER
• Enable stock rotation
• Time &Temp
monitoring system
• Oxygen level
monitoring system
• Control temperature
• Control microbial load
at POS
CONSUMER/SOCIETY
• Enable safe package
reuse
• Reduce consumer
contamination from
repeat use
• Expand time for safe
product use
• Enable storage
• Portions
• Sustainability
Claire Sand, PTR - August 2017
Innovation/agility: Connect beyond
immediate
• Gain tactical knowledge
• Expand value chain focused on needs at each point
• Use less internal resources to address problems
• Build structure for continual innovation
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Innovation/agility: Economic
reshuffling
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
• Packaging can enable affordable choices the 4 billion+ consumers at
pyramid’s base
• Packaging needs to technically leapfrog to provide product protection and a
market
• Packaging can facilitate manufacturing value added goods versus raw material
exports
• Reveals opportunity to use historically indigenous materials (jute)
• Research potential in facilitating leapfrogging in technology is high
Innovation/agility: Refine/flex
distribution
• Packaging can facilitate the distribution via alternative
channels (versus traditional models) to meet urban needs
• A future value chain defined by consumer led value
will optimize packaging based on global urban and
rural consumers
• Example-Medical contract packaging & Anderson’s
window walls & UHP
• Optimal packaging technology focuses on post
consumer disposal in urban areas (DSD)
• Consumer specific packaging is growing
• Packaging research on predictive restocking (beyond
RFID) to make consumer and post consumer packaging
seamless
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
Innovation/agility: Provides inherent opp.
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
• 6 weeks from idea to
nationwide launch to
immediate launch
• Data tracking
Yogurt Example
• Changing retail
• Product on market 2 years
• Disconnect to health for many ages
• Experience Solutions
• Retail
• In home
• Product (aging men, teens now)
• Packaging
• Why?
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Yogurt: everyone gets a golden ticket
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Innovation/agility: Manufacturing
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Innovation/agility: Manufacturing
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
How to leverage agility links in FaB
Leveraging Packaging in a cluster
• Identify new partnerships as a group that address shared value in agility (for
example):
• Manufacturing
• Common resources needed to fast launches
• Retailers & Distributors
• Leverage location to meet needs better
• LED lights
• Packaging can help Retailers drive fast launches
• Enable co-distribution, shelf in and outs
• E-commerce-link launches
• Packaging suppliers
• Beyond price and into shared agility in response
• Build in agility in machinery, materials, plans
• Fused Deposition Modeling
• Molded pulp mold cost from $30,000 and 2 weeks to $500 and 2 days
Claire Sand, PTR - August 2017
Outline
Create Sustainable links
Build Intelligent links
Innovate with agility
Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
Key Takeaways: Recap
KEY TAKEAWAYS
Sample #
KEY TAKEAWAYS Sustainable Intelligence
Agile
Innovation
Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
Leveraging Packaging in a cluster
• Resources
• Common resources and sustainability
goals
• Manufacturing
• Common resources needed to fast
launches
• Common resources and learning
curves in lowering energy costs
• Packaging suppliers–machinery, barriers,
etc.
• Beyond price and into shared agility in
response
• Build in agility in machinery,
materials, plans
• Materials with common packaging
structures
• Common technology access
• Retailers & Distributors
• Leverage location to meet needs better
• LED lights
• Help Retailers drive fast launches
• Enable co-distribution, shelf in and outs
• Brick-retailers to help solve joint issues with
packaging and product solutions-mutual
benefit to address e-commerce
• E-commerce-link with to meet packaging and
product needs
• Track and trace
• Fraud
• Branding
• Marketing
• Branding and communication
Recap-How to leverage packaging with links in FaB
Claire Sand, PTR - August 2017
Leveraging Packaging
within a cluster
Claire Sand, Ph.D.
Packaging Technology and Research, LLC

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Sand, c.k., 2017.. leveraging packaging within a cluster​. food and vbeverage wisconsin. ceo conference.

  • 1. Leveraging Packaging Within a Cluster Claire Sand, Ph.D. Packaging Technology and Research, LLC
  • 2. Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster Leverage Packaging raw materials for packaging converted packaging manufactured packaging components combined product and package distributed product and package sold product and package discarded product and package Packaging Value Chain Interfaces
  • 3. Outline Create Sustainable links Build Intelligent links Innovate with agility Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 4. Leveraging Packaging Within a Cluster Create Sustainable links Claire Sand, PTR - August 2017
  • 5. Packaging Life Cycle Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 6. The Waves of Sustainability • 2nd Wave • 1969 and the Cuyahoga River was burning • Silent Spring • Weather inversions in London and NYC • Earth Day and EPA 1970 • Ended in USA in 1990s • 26th anniversary of Grune Punkt • near-infrared separators, eddy flow separators and metal separators reduced the cost of recovering plastics 95% • 3rd Wave • Benefits of global supply, TBL, PPP, CSR Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 7. 4th Wave – Sustainability: Age of Reason • Motivated by negatives: • Greenwashing • LCA mania • Motivated by positives: • Food waste awareness • Global brands & packaging supplies Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 8. Sustainability: Food waste awareness Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 9. Sustainability: Food waste rationale • Business case for reducing food waste Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 11. Sustainability: Business potential in reducing food waste • Drives packaging investments • Shared value alters costs and benefits • LiquiGlide, a nontoxic food packaging coating that increases the consumers ability to get all of the food out of containers (e.g. ketchup bottles) • Hello Fresh! • BluWrap Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 12. Sustainability: Global brands & packaging suppliers • Same situations-small families, no families • Packaging material development Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 13. Sustainability: Alphabet soup Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 14. Sustainability: More sustainable choices Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster Seventh Generation bottle Consumes about 33% less energy to produce Carbon Footprint that is 48% lower than plastic
  • 15. Sustainability: More sustainable choices Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster Calcium Carbonate stiffens HDPE
  • 16. Sustainability: VC derived labels Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
  • 17. Sustainability: Links with packaging • New partnerships address shared value • Resources • Coke and BFS • Earthwise Environmental-water • Design for Recovery • Build Composting and Recycling Infrastructure • Retailers & Distributors • Enable recycling on site • EVOH and Dow • Closed loop returnables • DC optimization (rings) Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 18. How to leverage sustainable links in FaB Leveraging Packaging in a cluster • Identify new partnerships as a group that address shared value in sustainability (for example): • Manufacturing • Common resources and learning curves in lowering energy costs • Resources • Common resources and sustainability goals • Retailers & Distributors • Link with retailers to help solve joint issues with packaging and product solutions-mutual benefit to address e-commerce • E-commerce-link with to meet packaging and product needs • Packaging suppliers • New materials with common packaging structures Claire Sand, PTR - August 2017
  • 19. Outline Create Sustainable links Build Intelligent links Innovate with agility Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 20. Leveraging Packaging Within a Cluster Build Intelligent links Claire Sand, PTR - August 2017
  • 21. Build intelligent links • Connect food spoilage solutions • Barriers • Technology in packaging and process • Access to intelligent packaging • Branding and communication • Fraud • Value chain Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 22. Intelligence: Food spoilage commonalities Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 23. Intelligence: Common barrier technologies • Common OTRs (cc/m2dayatm) • PET – 0.22 • HDPE - 2.6 • PP – 11 • LDPE - 20 • Paper/polymer – variable • Combinations paper-metal-polymer - ~0 Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 24. Intelligence: Better barriers w nanotech Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster • Polymer-Clay composites • Oxygen scavenger layers • Odor emitters +
  • 25. Intelligence: Barriers and controlled release • Humidity from respiring produce triggers the release of ClO2 at low, sustained doses to enhance product safety, shelf- life, and quality • Controlled release of ClO2 in polymers Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 26. Intelligence: Edible film tech • Films and coatings • Moisture barriers • Antimicrobials • Glazes, etc. Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 27. Intelligence: Antimicrobial tech Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster within a structure as a coating through headspace
  • 28. Antimicrobial Food Safety Microbes Food Quality Microbes Categories Tested Packaging Materials Tested FDA EU FAO/WHO Manufacturers Economic Social Issues Technology Innovation Recommendation Nisin Listeria (with Lysozyme); E. coli (with EDTA); Salmonella Not assessed Meat, cheese, seafood, perishable processed food Cellulose and SPI, zein, WPI, LDPE, cellophane, paper, chitosan GRAS E234; Restrictions to cheese, eggs, puddings Approved Numerous Costs are not standard and are based on desired result; concern with resistance promotoes use of other bacteriocins in tandem Increased resistance possible; considered natural Abundance of studies due to nisin’s commercial availability Use bacteriociins synergistically; bioengineering for increased efficacy; refine coating distribution Pursue Pediocin Listeria S. aureus and B. cereus Processed meat (ham, bologna, smoked fish) WPI coated PP, Cellulose GRAS Not approved Minimal Concern with resistance promotoes use of other bacteriocins in tandem Increased resistance possible; considered natural Limited studies Use bacteriociins synergistically; bioengineering for increased efficacy; refine coating distribution Lacticin Clostridia and Listeria S. aureus, Bacillus, Lactococcus, Lactobacillus Cottage cheese, cheese, milk, orange juice, egg, water, ham, turkey breast, smoked salmon Zein, WPI, Paper board with AP; PE, Pectin/PLA composite Cellophane GRAS Not approved Approved by 50+ countries Laboratories Concern with resistance promotoes use of other bacteriocins in tandem Increased resistance possible; considered natural Limited understanding beyond use as additive Use bacteriociins synergistically; bioengineering for increased efficacy; refine coating distribution Pursue Chitosan E. coli S. Aureus, P. fragi, B. subtilis Seafood PVA, PE, carrier of other antimicrobials GRAS Not approved Multiple Innovations and use in water quality and fuel cells may lower prices or increase demand to increase prices Non-toxic, biodegradable, and biocompatible Abundance of research; variability of results due to natural origin Combining with other antimicrobials to increase spectrum; identify optimum molecular weight and polymerization Lysozyme Listeria; E.coli (with lactoferrin or EDTA) S. Aureus, P. fragi, B. subtilis, L. plastarum Tuna; sushi, raw and processed meat Cellulose, paper, zein, SPI, PVOH, surface immobilization GRAS E1105; approved for cheese and beer Numerous chemical companies Need to combine with lactorferrin or EDTA to inhibit E.coli Considered natural Abundance of research; variability of results due to natural origin To attain both Listeria and E. coli inactivity, determine optimum EDTA or lactoferrin concentration Pursue Lactoperoxidase Listeria; E. coli Yeasts, Molds Salmon and roasted turkey, milk, cheese, vegetables •WPI, alginate GRAS No approved Recommen ded when adequate cooling unavailable in dairy Numerous chemical companies Whey derivation lowers cost Advocacy by FAO has increased awareness Efficacy a function of LPS, thiocyanate, and H2O2 Activation by H2O2 Pursue Plant Extracts E. coli (Oregano); Listeria (Neem) S. aureus (Grapefruit seed, green teat) SPI, WPI, chitosan, casein GRAS Approved Approved Numerous Costly due to extraction Taste preferences inhibit use; no labeling issues Not applied beyond laboratory stages Natural/organic platform; improving efficacy Pursue as natural/organic platform Metal ions E.coli , Listeria (Titanium), Ziinc, Silver, Copper); Salmonella (Zinc and nisin) S. aureus Meat, sliced fruit, eggs, orange juice Glass, metal, polymers, chitosan, zein, cellulose Defined amounts Defined amounts Defined amounts Numerous Silver most costly Consumer familiarity; Environmental and increased resistance; Limit migration into food is paramount Nanoparticles most effectives due to shigh surface area Medical research applicable to food packaging Surface Treatments E. coli Antifungal Meat, produce Paperboard, polymers by-products would need approval by-products would need approval by- products would need approval Internal Variable resultant additives require acceptance Skill set within converters Adapt processes from medical packaging; plasma activation; GRAS by-products Pursue to expand core competency Acids, Salts, Anhydrides Listeria and E.coli (Sorbic Acid); Listeria (Lauric acid and EDTA) Yeasts, Molds Meat, produce Coatings on various substrates Most are GRAS Defined amounts allowed Defined amounts allowed Numerous Variable Consumer familiarity Processes of inactivation are well known Refined efficacy Pursue Chlorine Dioxide Listeria, Salmonella Not Evaluated Produce Known permeability to ClO2 Considered a treatment E926 under consideration Numerous Systems in place lowers cost Color issues; Connected to household disinfectant Technology well known Explore ability to recharge system Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster Intelligence: Antimicrobial
  • 29. Intelligence: New and emerging technologies in processing • HPP • MATS • Ohmic • PL • ? Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 30. Intelligent Packaging • Branding & communication • Temperature/etc. monitoring • Track and trace-fraud Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 31. • Intelligent packaging expands brand image potential • Canadian brand with pulses Intelligent Packaging: Branding & communication Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
  • 32. Intelligent Packaging: TTIs • L5-8 Smart Seafood • irreversible color change from the hydrolysis of triglycerides • CoolVu • aluminum layer thins causing a reaction • FreshCode, Varcode andTempix, Tempix • fading barcodes • FreshMeter • turns from blue to gray via benzopyridine photoactivation Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
  • 33. Intelligent Packaging: Degradation sensors • High surface to volume ratio of nanofibrous membranes and electrospun sensors • Based on surface enhanced Raman spectroscopy (SERS) • Measures total volatile basic nitrogen (TVBN) • Monitors cysteine loss via hydrogen sulfide • Color change indicator that activates as microbial growth increases • Advances in wireless nanosensor networks (WNSNs) • Graphene printing and conductive polymers • enables wireless communication between nanosystems • Incorporate antibodies (for detection) within polymer films Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
  • 34. Intelligent Packaging: Responsive sensors • Responsive sensors that detect then act to reduce deteriorative reactions • Through the release of CO2, antioxidants or pH change agents • Tremendous amount of IP in this area Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster Current solutions • Measures total volatile basic nitrogen (TVBN) • Monitors cysteine loss via hydrogen sulfide • CO2 sensors indicate freshness loss as produce respires • Color change indicator that activates with microbial growth
  • 35. Food and packaging fraud are intertwined from ingredients to finished goods Intelligent Packaging: Reduce fraud Need to reduce fraud is high: billion industry by 2020 Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
  • 36. Intelligent Packaging: Deter fraud (overt) Overt authenticity is refined and solutions exist Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
  • 37. Intelligent Packaging: Detect fraud (covert) Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
  • 38. Intelligent Packaging: Status • TTIs continue to be the standard • For optimum safety, focus on degradation sensors in 3-5 years • Assess branding and authenticity link to balance costs • For nutritional waste reduction and safety, focus on responsive sensors in 3-5 years Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
  • 39. How to Leverage Intelligence in FaB Leveraging Packaging in a cluster • Identify new partnerships as a group that address shared value in intelligence: • Marketing • Branding and communication • Barriers & Shelf life • Common technology access • Retailers & Distributors • Track and trace • Fraud (FIDES) • Branding • Packaging suppliers and food suppliers • New materials with common packaging structures Claire Sand, PTR - August 2017
  • 40. Outline Create Sustainable links Build Intelligent links Innovate with agility Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 41. Leveraging Packaging Within a Cluster Innovate with agility Claire Sand, PTR - August 2017
  • 42. Innovate with agility • Innovation requires the agility to meet changing value chain needs • Need shared value in relationships • Consumer–fickle • Distributor/Retailer-real or virtual • Manufacturing - copacker or you • Packaging supplier Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 43. Packaging Challenges that Need Innovation/agility MANUFACTURER • Reduce contamination during product fill • Assess initial microbial load • Reduce initial microbial load • Enable HACCP, etc. • Address chilled worker conditions Leveraging Packaging Within a Cluster DISTRIBUTOR/ RETAILER • Enable stock rotation • Time &Temp monitoring system • Oxygen level monitoring system • Control temperature • Control microbial load at POS CONSUMER/SOCIETY • Enable safe package reuse • Reduce consumer contamination from repeat use • Expand time for safe product use • Enable storage • Portions • Sustainability Claire Sand, PTR - August 2017
  • 44. Innovation/agility: Connect beyond immediate • Gain tactical knowledge • Expand value chain focused on needs at each point • Use less internal resources to address problems • Build structure for continual innovation Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 45. Innovation/agility: Economic reshuffling Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster • Packaging can enable affordable choices the 4 billion+ consumers at pyramid’s base • Packaging needs to technically leapfrog to provide product protection and a market • Packaging can facilitate manufacturing value added goods versus raw material exports • Reveals opportunity to use historically indigenous materials (jute) • Research potential in facilitating leapfrogging in technology is high
  • 46. Innovation/agility: Refine/flex distribution • Packaging can facilitate the distribution via alternative channels (versus traditional models) to meet urban needs • A future value chain defined by consumer led value will optimize packaging based on global urban and rural consumers • Example-Medical contract packaging & Anderson’s window walls & UHP • Optimal packaging technology focuses on post consumer disposal in urban areas (DSD) • Consumer specific packaging is growing • Packaging research on predictive restocking (beyond RFID) to make consumer and post consumer packaging seamless Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
  • 47. Innovation/agility: Provides inherent opp. Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster • 6 weeks from idea to nationwide launch to immediate launch • Data tracking
  • 48. Yogurt Example • Changing retail • Product on market 2 years • Disconnect to health for many ages • Experience Solutions • Retail • In home • Product (aging men, teens now) • Packaging • Why? Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 49. Yogurt: everyone gets a golden ticket Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 50. Innovation/agility: Manufacturing Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 51. Innovation/agility: Manufacturing Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
  • 52. How to leverage agility links in FaB Leveraging Packaging in a cluster • Identify new partnerships as a group that address shared value in agility (for example): • Manufacturing • Common resources needed to fast launches • Retailers & Distributors • Leverage location to meet needs better • LED lights • Packaging can help Retailers drive fast launches • Enable co-distribution, shelf in and outs • E-commerce-link launches • Packaging suppliers • Beyond price and into shared agility in response • Build in agility in machinery, materials, plans • Fused Deposition Modeling • Molded pulp mold cost from $30,000 and 2 weeks to $500 and 2 days Claire Sand, PTR - August 2017
  • 53. Outline Create Sustainable links Build Intelligent links Innovate with agility Leveraging Packaging Within a ClusterClaire Sand, PTR - August 2017
  • 54. Key Takeaways: Recap KEY TAKEAWAYS Sample # KEY TAKEAWAYS Sustainable Intelligence Agile Innovation Claire Sand, PTR - August 2017 Leveraging Packaging Within a Cluster
  • 55. Leveraging Packaging in a cluster • Resources • Common resources and sustainability goals • Manufacturing • Common resources needed to fast launches • Common resources and learning curves in lowering energy costs • Packaging suppliers–machinery, barriers, etc. • Beyond price and into shared agility in response • Build in agility in machinery, materials, plans • Materials with common packaging structures • Common technology access • Retailers & Distributors • Leverage location to meet needs better • LED lights • Help Retailers drive fast launches • Enable co-distribution, shelf in and outs • Brick-retailers to help solve joint issues with packaging and product solutions-mutual benefit to address e-commerce • E-commerce-link with to meet packaging and product needs • Track and trace • Fraud • Branding • Marketing • Branding and communication Recap-How to leverage packaging with links in FaB Claire Sand, PTR - August 2017
  • 56. Leveraging Packaging within a cluster Claire Sand, Ph.D. Packaging Technology and Research, LLC

Notas do Editor

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