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Distributed production

M.p. 207°C. The naturally occurring substance is dextrorotatory. Arginine is one of the essential amino-acids and one of the most widely distributed products of protein hydrolysis. It is obtained in particularly high concentration from proteins belonging to the prolamine and histone classes. It plays an important role in the production of urea as an excretory product. [Pg.41]

Depositional Environment Reservoir Distribution Production Characteristic... [Pg.79]

Ashland distribution company, a division of Ashland inc. http //www.ashlandchemical.com/gp.html. The General Polymers Division of Ashland Distribution Company stocks virtually every grade of prime thermoplastic resins and specialties for plastics processors. General Polymers represents and distributes product for the following plastics manufacturing businesses ... [Pg.628]

Field Alert Reports of manufacturing defects must be made to the local district office vdthin 3 days of discovery of a problem with a distributed product. [Pg.259]

The authors provide selection criteria, by which the suitability of a process for a distributed production can be assessed [139]. These are explicitly given for the categories of feedstock, processes, customer products, and waste products. This is completed by a list of suitable device types for distributed production such as plate heat exchangers, pressure and temperature swing units, electrostatic dispersers, and membrane units. The various operations often rely on the use of electricity and therefore are said to be particularly suited for operation at the mini scale. [Pg.60]

Standardization is seen as advantageous for distributive production by micro reactors, as it is supposed to decrease development times and to provide higher flexibility by modularity [5]. Hessel and Lowe discuss the current lack of compatibility of suitable fluidic interfaces for hybrid, multi-scale micro-reactor construction (see Section 1.1.7) and report on a German project team developing a standard for micro-reactor interconnection (Figure 1.27) [9, 10]. [Pg.62]

PBd-b-PI-b-PCHD tetrablock quarterpolymers. In a few cases chain transfer or termination reactions led to the presence of a small amount of PCHD homopolymer. In general, detailed characterization revealed that narrow molecular weight distribution products with high chemical and compositional homogeneity were obtained. [Pg.31]

Ruthenium-catalyzed ATRP was employed in the synthesis of PMMA-fr-PnBuMA block copolymers. Subsequent reaction with the divinyl compound 1 (Scheme 82) resulted in the synthesis of the star-block structures in almost quantitative yield [157]. The divinyl compound 2 was also employed for the Unking of PnBuMA-fr-PMMA through the PMMA blocks. Narrow molecular weight distribution products were obtained in all cases. [Pg.94]

Ability to distribute product to a number of different areas within a plant and/or pick up material from several different locations. [Pg.713]

Figure 53-34 Family of curves of the Energy-Distribution product, corresponding to various truncation points. The numbers indicate the truncation point of the Normal distribution, as the number of standard deviations from the peak of the Normal distribution. Figure 53-34 Family of curves of the Energy-Distribution product, corresponding to various truncation points. The numbers indicate the truncation point of the Normal distribution, as the number of standard deviations from the peak of the Normal distribution.
Biomass conversion technologies can be divided into direct production technology routes and technologies aimed at the conversion of storable intermediates. Direct routes have the advantage of simplicity. Indirect routes have additional production steps, but have an advantage in that there can be distributed production of the intermediates, minimizing the transportation costs of the biomass. Intermediates can be... [Pg.134]

The distributions of products within a certain carbon number fraction are far from equilibrium. In the Cg-fraction, for example, the dimethylhexanes would be thermodynamically favored over the trimethylpentanes, but the latter are predominant. The distribution within the trimethylpentanes is also not equilibrated. 2,2,4-TMP would prevail at equilibrium over the other TMPs, constituting 60-70% of the product, depending on the temperature. Furthermore, 2,2,3-TMP as the primary product is found in less than equilibrium amounts. Qualitatively, the same statement is valid for the other carbon number distributions. Products with a tertiary carbon atom in the 2-position dominate over other isomers in all fractions. [Pg.256]

The problem to monthly plan a global value chain for commodities in the chemical industry puts specific requirements considering on the aspects of values, sales, distribution, production and procurement planning in a global network. Recent research related to value chain planning can be clustered into global-oriented, chemical industry-oriented or commodity-oriented research. [Pg.18]

Volume and values in the defined business design with the given business rules are optimized jointly in sales, distribution, production and procurement plans as illustrated in fig. 19. [Pg.60]

Distribution Production Transportation Production location location lane resources... [Pg.138]

Locations le L are the nodes in the value chain network like sales, distribution, production or procurement locations. [Pg.143]

Distribution balances need to calculate all volume balances in all value chain network locations between sales, distribution, production and procurement. Material flows have to be balanced for all product-location combinations in the index set p, l e IVC1. [Pg.185]

The developed value chain planning model is very comprehensive with its model basis, value, sales, distribution, production and procurement part. The comprehensiveness of the model is a logical consequence of the comprehensiveness of value chain planning requirements based on industry case and literature analysis. Conclusions ... [Pg.205]

The experiments always compare the overall profit with the volume indices in sales, distribution, production and procurement in order to compare volume and value results and showing interdependencies... [Pg.214]

The experiments cover all areas of the value chain in sales, distribution, production and procurement to demonstrate the influence of a single value chain area on the overall value chain performance... [Pg.214]

Solution times are sufficiently fast to be applied in tactical planning where no real time response times are required. Secondly, value results are presented. All value results are indexed focusing on comparing results and to ensure confidentiality of industry data. Initially, the value plan with total profits and single values in sales, distribution, production and procurement is analyzed. [Pg.216]

In this simplified case, all distribution, production and procurement costs are summarized under period-specific supply costs vfupply. The scenario profit zo is calculated by the scenario spot sales turnover multiplied with the respective scenario factor Sspslot plus the contractually agreed turnover less the supply costs. [Pg.246]


See other pages where Distributed production is mentioned: [Pg.889]    [Pg.889]    [Pg.58]    [Pg.26]    [Pg.27]    [Pg.30]    [Pg.24]    [Pg.240]    [Pg.28]    [Pg.47]    [Pg.69]    [Pg.95]    [Pg.104]    [Pg.108]    [Pg.138]    [Pg.138]    [Pg.141]    [Pg.141]    [Pg.147]    [Pg.209]    [Pg.212]    [Pg.217]    [Pg.471]   


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2- Methylpentane product distribution

A review of measured product energy distributions for some simple chemical reactions

Acetylene pyrolysis product distribution

Acid Strength Requirements for Product Control and Influence of Spatial Distribution on Selectivity

Activation energies product distribution

Activity size distributions of the radon product decay aerosols

Alkyl hydroperoxides product distribution

Allyl alcohol product distribution

Anderson-Schulz-Flory product distribution

Angular distribution of product ions

Angular distribution of products

Angular distributions dissociation products

Angular product distributions

Bimodal product distributions

Bimodal product energy distribution

Boiling point distributions, liquid products

Boltzmann equilibrium distribution production

Branch distribution production

CH3I+ product energy distribution

Calculation of product distribution

Canonical product energy distribution

Carbocations on surfaces product distribution from reaction

Carbon dioxide reduction product distribution

Carbon number distribution pyrolysis products

Catalytic activity product distribution

Catalytic cracking, general product distribution

Cobalt catalysts, product distribution

Cracked products, distribution

Cracking product distributions, role

Crushing product size distribution

Curtin product distribution

Cycloalkanes product distributions

Cyclobutanes, isomerization, product distributions

Cyclohexane oxidation product distribution

Decane, cracking product distribution

Degradation product distribution from

Degradative product distribution

Degradative product distribution assessment

Delivered Product Size Distribution and Morphology

Depolymerization products, hydrogen distribution

Design Specification for Pure Steam Production and Distribution

Design Specifications for Purified Water (DIW) Production and Distribution

Different product distributions in the

Differential cross sections product state distributions

Distribution in Food Products

Distribution of entropy production

Distribution of excitation between the reaction products

Distribution of oxidation products

Distribution of reaction products over internal energy states

Distribution, production and uses

Droplet size distribution, nasal product

Effect of temperature on product distribution

Effect on product distributions and

Energy Distribution in Products of Ion-Molecule Reactions

Energy distribution in products

Energy-distribution product

Enzymes product distribution from

Exothermic reactions product distributions

Fischer product distribution

Fischer-Tropsch reaction product distribution

Fischer-Tropsch synthesis production distribution

Fischer—Tropsch synthesis product distribution

Fission Product Charge Distributions

Fission Product Distributions

Fission Product Mass Distributions

Flash pyrolysis product distribution

Flory equation, product distributions

Flory product distributions

Fluid catalytic cracking product distribution

Fluid cracking product distribution

Gaussian distribution uncertainty product

General tactical production-distribution problems

Good distribution practices for pharmaceutical products

HZSM-5 zeolite catalysts product distribution

Hydrocarbon product distribution

Hydrocracking product distribution

Hydroformylation product distribution

Hydroformylation reactions product distribution

Hydrogen product distributions, role

Hydrogen sustainable distributed production

Hydrogen, distributed production

Hydrogenation product distribution

Hydrogenolysis product distribution

Isomer distribution product

Isomerization product distributions

Kinetic control of product distribution

Kinetic product distribution

Kinetic product distribution activation energy

Kinetic product distribution altering

Kinetic product distribution anticipating

Kinetic product distribution improving

Kinetic product distribution rationalizing

Kinetic product distribution relationship

Laser diagnostics, of reaction product energy distributions

Lead compound production distribution

Liquid products PONA distributions

Metabolic product, label distribution

Methanol distributed production

Milling products, distribution

Model Predicting Energy Requirement and Product Size Distribution

Modification of Product Distribution

Molecular mass distribution in products of radical polymerizations

Molecular mass distribution of the product

Molecular weight distribution product design

Non-Flory product distributions

Nonstatistical product distribution

Normalized hydrocarbon product distribution

Nuclear fission product mass distribution

Observation of water production, temperatures, and current density distributions

Overall Product Distribution

Oxidation isobutane product distribution

Oxidation isoprene product distribution

Oxidation toluene product distribution

PRODUCTION AND DISTRIBUTION OF CHEMICAL REFERENCE MATERIALS

Parallel reactions product distribution

Partial differential cross section product state distributions

Photodissociation correlated product state distributions

Polyethylene oxidation products, distribution

Polymerization product distribution

Polyolefins product distribution

Polyurethanes product distribution

Population density distribution of mixed product

Prediction of the Product Size Distribution

Primary production distribution

Primary production global distribution

Primary productivity global distribution

Primary productivity phytoplankton, global distribution

Probing the product state distribution of a chemical reaction

Product Distribution in Multiple Reactions

Product Distribution in Preparative Electrolysis

Product Distribution in a CSTR

Product Distribution under Steady-State Conditions

Product Distributions in PFRs and BRs

Product coal particle-size distribution

Product distribution

Product distribution

Product distribution Yield

Product distribution analysis

Product distribution calculation

Product distribution for

Product distribution fractional

Product distribution material

Product distribution of pyrolysis

Product distribution operations

Product distribution quantum states

Product distribution reforming

Product distribution rhodium catalysis

Product distribution rotation

Product distribution vs. gel

Product distribution vs. temperature for

Product distribution vs. time

Product distribution, thiophene

Product distributions enthalpy changes

Product distributions reaction channels

Product energy distribution heat bath

Product energy distribution impulsive model

Product energy distribution prior

Product energy distribution trajectory studies

Product fuels distribution

Product kinetic energy distributions

Product kinetic energy release distributions

Product life cycle distribution

Product particle size distribution

Product particle size distribution attrition

Product particle size distribution population balance

Product particle size distribution prediction

Product recoil energy distribution

Product removal, crystal size distribution

Product size distribution

Product stale distribution

Product state distribution

Product state distribution electronic

Product state distribution radiation

Product state distribution rotational

Product state distribution vibrational

Product variety distribution network design

Product velocity distribution

Production and Spatial Distribution of Nitric Oxide from Nuclear Explosions

Production distribution, intermediate

Production distribution, intermediate final

Production, Uses, Waste Products, Recycling, Distribution in the Environment

Products angular distribution spectroscopy

Products distribution intensive

Propane product distributions

Properties Related to Storage and Distribution of Petroleum Products

Propylene product distribution

Pulmonary Distribution of VIP Gene Products

Pyrolysis product distribution

Radon decay products distributions

Radon decay products modeling size distributions

Reaction product energy distributions

Reaction products sulfur distribution

Reactor types product distribution affected

Regional distribution of energy production in

Residence time distribution product yield

Rotational product distribution

Rotational product distribution prior

Ruthenium complex catalysts product distribution

Ruthenium product distribution over

Schulz-Flory product distributions

Single hydroxides, product distribution

Size distribution radon decay products

Structure product distribution

Styrene copolymers product distribution

Substitution, electrophilic predicting product distributions

Temperature and product distribution

The Distribution of Products Depends On Probability and Reactivity

Thermal cracking, product distribution

Thermodynamic control of product distribution

Toluene alkylation product distribution

Unimolecular reaction product distribution

Unimolecular reaction rates and products quantum states distribution

Velocity distribution of products (

Velocity distribution product recoil

Vibrational and rotational product state distributions

Vibrational product distributions

Water rotational product distributions

Weight feed flow rate/product distribution

Wholesale Distribution of Medicinal Products

Workshop 5.4 Case Study to Vary RON and Product Distribution Profile

Yield, fractional Product distribution Selectivity

Yields and product distributions

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