tyre rew material di octly pthalate dop rate in Lautoka
tyre rew material di octly pthalate dop rate in Lautoka
tyre rew material di octly pthalate dop rate in Lautoka
tyre rew material di octly pthalate dop rate in Lautoka
tyre rew material di octly pthalate dop rate in Lautoka
thermal decomposition products of phthalates with poly(vinyl

Thermal Decomposition Products of Phthalates with Poly(vinyl

Materials. Commercial di(2-ethyhexyl) phthalate (DEHP) and dioctyl phthalate (DOP) (Tokyo Kasei Co., Tokyo, Japan) were used after distillation. Additive-free PVC (average molecular weight: 3000 g/mol, Wako, Tokyo, Japan), and commercially available agricultural PVC film (0.2 mm thick-ness) and PVC board (4 mm thickness) were used. Extraction

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di-n-octyl phthalate (DNOP)

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reactive extraction strategy for synthesizing dioctyl

Reactive Extraction Strategy for Synthesizing Dioctyl

Dioctyl phthalate (DOP) is a widely used efficient plasticizer with great stability to heat and ultraviolet light, as well as the compatibility to use with PVCs resin. In this work, the process intensification of reactive extraction strategy is proposed to promote DOP synthesis in a biphasic system, with the halogen-free deep eutectic solvent

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plasticizer

Plasticizer

A plasticizer ( UK: plasticiser) is a substance that is added to a material to make it softer and more flexible, to increase its plasticity, to decrease its viscosity, and/or to decrease friction during its handling in manufacture.

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structure effect of activated carbon in ru/ac catalysts for

Structure effect of activated carbon in Ru/AC catalysts for

Activated carbon with different microporous surface area were used to prepare a series of Ru/AC catalysts for the hydrogenation of dioctyl phthalate (DOP) to dioctyl 1,2-cyclohexanedicarboxylate (DOCH). The presence of micropores benefit the dispersion of Ru, but Ru particles encapsulated into the micropores can be hardly accessed by DOP molecule.

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introduction | springerlink

Introduction | SpringerLink

1.1 Background Phthalate plasticizers, such as dioctyl phthalate (DOP), di (iso-octyl) phthalate (DIOP), di (2-ethylhexyl) phthalate (DEHP), dibutyl phthalate (DBP), di (iso-butyl) phthalate (DIBP), and di (iso-nonyl) phthalate (DINP), have the earliest use, the best performance, the broadest application, and the most production globally.

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composites based green poly(l-lactic acid) and dioctyl

Composites Based Green Poly(L-Lactic Acid) and Dioctyl

With increasing of crystallization time, as to the neat PLLA, the diffraction peak appears and the intensity of diffraction peak is very weak (see Figure 4).But the intensity of diffraction peak of PLLA/DOP samples is very strong, what is more, the intensity of diffraction peak of PLLA/DOP hardly change except for PLLA/15%DOP, indicating the PLLA/20%DOP and PLLA/25%DOP exhibit the maximum

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dissipative particle dynamics study and experimental

Dissipative particle dynamics study and experimental

The PMP morphologies and their fluid diffusivities relationship was established using a mesoscale 3-D tetragonal-like structure construction. The effects of PMP concentration and the use of a single diluent (dioctyl phthalate, diphenyl ether, and dibutyl phthalate) or a mixed diluent on the pore morphology were compared.

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biochemical pathways and enhanced degradation of di-

Biochemical pathways and enhanced degradation of di-

Abstract Two bacterial strains designated as Arthrobacter sp. SLG-4 and Rhodococcus sp. SLG-6, capable of utilizing di-n-octyl phthalate (DOP) as sole source of carbon and energy, were isolated from activated sludge. The analysis of DOP degradation intermediates indicated Arthrobacter sp. SLG-4 could completely degrade DOP. Whereas DOP could not be mineralized by Rhodococcus sp. SLG-6 and the

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a strategy for nonmigrating highly plasticized pvc - nature

A Strategy for Nonmigrating Highly Plasticized PVC - Nature

The 1 H NMR spectrum data of the bis(2-ethylhexyl)-4-hydroxy phthalate(DOP-OH), the ester of di(2-ethylhexyl)-4-hydrophthalate and chlorinated paraffin were recorded on an AVANCE III 400 MHz

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