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Compostable

Bioremediation also offers options for dealing with oked material, such as seaweed, that gets stranded on shorelines composting has been shown to be effective. [Pg.29]

Composting by the addition of readily degradable hulking agents is also a useful option for relatively small volumes of excavated contaminated soil. [Pg.30]

Since efficient composting invafiably involves self-heating as biodegradation proceeds, this also offers an option for extending the bioremediation season into the winter months in cold climates. A potential drawback of composting is that it usually increases the volume of contaminated material, but if fully successful the finished compost can be returned to the site as a positive contribution to soil quaUty. [Pg.31]

Air. Biofilters are an effective way of dealing with air from industrial processes that use halogenated solvents such chloromethane, dichioromethane, chloroethane, 1,2-dichloroethane and vinyl chloride, that support aerobic growth (26). Both compost-based dry systems and trickling filter wet systems are in use. Similar filters could be incorporated into pump-and-treat operations. [Pg.32]

RDX and HMX are rather more recalcitrant, especially under aerobic conditions, but there are promising indications that biodegradation can occur under some conditions, especially composting (67). Several strains of bacteria able to use RDX (and Triazine) as a sole source of nitrogen for growth have recentiy been isolated, and this is an area where rapid progress is being made. [Pg.35]

Soil. Composting of soils contaminated by high explosives is being carried out at the Umatilla Army Depot near Hermiston, Oregon (70). Soil from munitions washout lagoons is being treated iadoors ia compost rows of 2,000 m, and the estimated cost is less than one-third the estimated cost of iaciaeration. If this is successful, there are 30 similar sites on the National Priority List that could be treated ia a similar way. [Pg.36]

The suggestion frequentiy is made that substitution of organic fertilizers, namely manures and composts, for chemical fertilizers would be of ecological benefit. The reaUty is, however, that the supply and logistics of such materials could never be adequate for the present-day level of agriculture. Furthermore, iatensive appHcation of such materials to the soil would itself present ecological problems, such as mn-off pollution and steady buildup of toxic heavy metals. [Pg.246]

For water-soluble polymers, there is a weU-estabUshed disposal infrastmcture, with the widely available wastewater treatment plants, whereas plastics being developed for composting require large-scale implementation of a composting infrastmcture. This fact will certainly influence the rate of their acceptance. [Pg.474]

There have been numerous communications on the subject of biodegradation test methods, including aerobic compost (30), anaerobic bioreactor (31), general methodology and future directions (32—34), and a fine review article (24). ASTM (22) and MITI (35) have also set forth standard testing protocols for plastics, as shown in Table 2, whereas OECD test methods (29) are more suited to water-soluble polymers. [Pg.475]

Fig. 3. Materials recovery, composting, combustion, and discards of municipal solid waste from 1969 to 2000 (1995—2000 estimated) as a fraction of total generation, where A represents landfill and other B, combustion C, recovery for recycling and D, recovery for composting. Fig. 3. Materials recovery, composting, combustion, and discards of municipal solid waste from 1969 to 2000 (1995—2000 estimated) as a fraction of total generation, where A represents landfill and other B, combustion C, recovery for recycling and D, recovery for composting.
Small tire chips have also been utilized as a soil amendment to improve athletic playing fields (see Recreational surfaces). A patented process marketed under the trade name Rebound (fai Tire) combines cmmb mbber from scrap tires with composted organic material to reduce soil compaction, resulting in better athletic playing surfaces (52). Installations have been made in Florida, California, Colorado, Hawaii, Maryland, Michigan, Missouri, Nevada, Virginia, and Wisconsin. [Pg.20]

Fig. 6. An iategrated approach to the management of municipal soHd waste (MSW), advocated by the U.S. EPA, that links source segregation, recycling, waste-to-energy (WTE), and landfilling ia a single system. Source segregation refers to the separation of compostable and recyclable components from the balance of the trash at the poiat where MSW is collected. In source reduction (not shown), another action to reduce waste to landfills, changes are made ia... Fig. 6. An iategrated approach to the management of municipal soHd waste (MSW), advocated by the U.S. EPA, that links source segregation, recycling, waste-to-energy (WTE), and landfilling ia a single system. Source segregation refers to the separation of compostable and recyclable components from the balance of the trash at the poiat where MSW is collected. In source reduction (not shown), another action to reduce waste to landfills, changes are made ia...

See other pages where Compostable is mentioned: [Pg.242]    [Pg.24]    [Pg.26]    [Pg.26]    [Pg.26]    [Pg.29]    [Pg.33]    [Pg.34]    [Pg.36]    [Pg.37]    [Pg.38]    [Pg.38]    [Pg.143]    [Pg.7]    [Pg.7]    [Pg.212]    [Pg.52]    [Pg.91]    [Pg.472]    [Pg.473]    [Pg.473]    [Pg.474]    [Pg.474]    [Pg.475]    [Pg.475]    [Pg.480]    [Pg.484]    [Pg.283]    [Pg.541]    [Pg.544]    [Pg.548]    [Pg.548]    [Pg.553]    [Pg.225]    [Pg.482]    [Pg.172]    [Pg.283]    [Pg.345]    [Pg.345]   
See also in sourсe #XX -- [ Pg.463 ]

See also in sourсe #XX -- [ Pg.147 ]

See also in sourсe #XX -- [ Pg.155 , Pg.156 , Pg.157 , Pg.158 , Pg.169 , Pg.205 , Pg.207 , Pg.210 , Pg.332 , Pg.335 , Pg.337 , Pg.338 ]

See also in sourсe #XX -- [ Pg.146 ]




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Aliphatic-aromatic polyesters composting

Anaerobic Digestion Facilities Treating Biowaste Technologies, Pretreatment Options and Management of Compostable Plastic Bags

Anaerobic digestion composting

Anaerobic digestion, compost

Anaerobic digestion, compost biomass

Anaerobic digestion, compost digestate

Analysis of Soil and Compost

Antibiotics composting

Aspect of the Finished Compost

Bacteria composting

Biodegradability and Compostability

Biodegradability and Compostability of Biopolymers

Biodegradability composting

Biodegradability testing of compostable polymer materials

Biodegradation and Compostability Legislation

Biological composting

Biopolymer Degradation and Composting

Biopolymers composting

Carbon dioxide compost standards

Cardboard: composting

Case Studies of Anaerobic Digestion Facilities Managing Biowaste in Compostable Plastic Bags

Chemical compostable

Chemical compostion

Composite compostable

Composition composting

Compost

Compost

Compost Biodegradation Tests

Compost Composting

Compost Composting

Compost Disintegration Tests

Compost activators

Compost analysis

Compost at Filling

Compost bags

Compost bins

Compost biodegradable polymers

Compost calcium

Compost compostable plastics

Compost composting standards

Compost composting systems

Compost controlled, biodegradability test

Compost definitions

Compost degradation

Compost degradation tests

Compost environment

Compost heaps

Compost heavy metals

Compost hygiene

Compost labeling systems

Compost magnesium

Compost microorganisms

Compost municipal

Compost organic matter

Compost peat-free

Compost phases

Compost phosphorus

Compost plant

Compost polychlorinated dioxins

Compost potassium

Compost quality

Compost recommended tests

Compost recycling

Compost specifications

Compost testing protocols

Compost using

Compost, oxidized films

Compost, surfactants from

Compostability

Compostability Norms

Compostability additive product effects

Compostability certification

Compostability degradation

Compostability label

Compostability of Biodegradable Plastics

Compostable Claims

Compostable Plastics in Anaerobic Digestion Standards and Performance

Compostable adhesive

Compostable bags, Bionolle

Compostable coating

Compostable packages

Compostable packaging

Compostable plastics

Compostable plastics applications

Compostable plastics composting studies

Compostable plastics definitions

Compostable plastics degradation temperatures

Compostable plastics ecotoxicity testing

Compostable plastics market

Compostable plastics price

Compostable plastics thermal degradation

Compostable polymers ecotoxicity testing

Compostable product

Composting

Composting Chemistry

Composting GreenPla

Composting Systems

Composting at laboratory scale

Composting biodegradability tests

Composting biodegradation

Composting commercial

Composting compost degradation tests

Composting compost disintegration tests

Composting compost facility

Composting compostability

Composting compostability

Composting compostability norms

Composting definitions

Composting degradation

Composting environmentally degradable

Composting experimental

Composting facilities

Composting fiber

Composting life cycle assessment

Composting methods comparison

Composting of biodegradable polymers

Composting of plastics

Composting other systems

Composting other tests

Composting packaging

Composting plants

Composting plastics and

Composting polymers

Composting process

Composting process and methods

Composting products

Composting proposed)

Composting respirometric system

Composting scheme

Composting simulated

Composting solid waste

Composting standard

Composting test method

Composting toilets

Composting waste disposal

Composting, degradable polyester

Composting, disposable diapers

Composting, food waste

Composts carbon-nitrogen ratios

Composts preparation

Controlled composting test

Degradability through Composting

Degradation under Composting Conditions

Determination of Ca, K, Mg and P in composts

Disease control with compost

Disintegrability, compostability standards

Ecoflex® compostable polymer

Environmental impact of compostable polymer materials

Farmyard manure and composting

Fungi composting

Green composting

Green waste compost

Greenhouse gases composting

Home Compost

Home Composting

Home) Compostability

Humus composts

Industrial Compost Biodegradation

Industrial Compost Biodegradation Environment

Industrial Compost Biodegradation Testing

Industrial Compost Environment

Industrial composting

Industrial) Compostability

Industrial) Compostability Certification Systems

International standards related to composting

Laboratory tests composting standards

Legislation compostability

Life Cycle Assessment of Compostable and Biodegradable Polymers

Lightweight compostable packaging

Lipids composting

Logo, compostable products

MSW-composts

Main Drivers for Composting in the European Union

Mature compost

Metals compostability standards

Mineral bed composting test

Mineralization compost standards

Mineralization simulated composting

Municipal solid waste compost

Mushroom compost

NON-COMPOSTED SUBSTRATES

OK Compost

OK Compost Home

Organic matter composting

Organic reclamation and composting

Organic reclamation and composting association

Other Compost Biodegradation Tests

Other Systems for Home Compostability

Other compostable polymers from renewable resources

Pathogens composting

Pesticides composting

Petroleum-based compostable polymers

Phase II Composting

Plastics compostability

Plastics composting

Plastics degradable, compostability

Poly , composting

Poly commercial composting

Poly composting conditions

Poly composting degradation

Poly composting studies

Polymers composting systems

Polyolefins compost

Potential Influences of Polymers after Composting

Potting compost

Principles of main standards related to composting and biodegradability testing

Proteins composting

Prunings: composting

Scenario with compostable ecoplastic

Sequential batch anaerobic composting

Short Composting

Sludge Composting

Solid Waste Composting Council

Solid Wastes Treatment by Composting

Specifications for Compostable Plastics

Spent mushroom compost

Standard on Industrial Composting

Starch composting

Sugar Cane Bagasse Compost

Synthetic Compost Procedure

Temperature composting

The Promise of Bioplastics - Bio-Based and Biodegradable-Compostable Plastics

US Composting Council

Waste compost

Wastes for compost

Windrow composting

Worm compost

Worm composter

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