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Colloid Transport in Saturated Fractured Media

Colloid Transport in Saturated Fractured Media PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 34

Book Description


Colloid Transport in Saturated Fractured Media

Colloid Transport in Saturated Fractured Media PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 34

Book Description


Colloid Transport and Retention in Fractured Media

Colloid Transport and Retention in Fractured Media PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 13

Book Description
The goal of this project was to identify the chemical and physical factors that control the transport of colloids in fractured materials, and develop a generalized capability to predict colloid attachment and detachment based on hydraulic factors (head, flow rate), physical processes and structure (fracture aperture, matrix porosity), and chemical properties (surface properties of colloids, solution chemistry, and mineralogy of fracture surfaces). Both aqueous chemistry and physical structure of geologic formations influenced transport. Results of studies at all spatial scales reached consensus on the importance of several key controlling variables: (1) colloid retention is dominated by chemical conditions favoring colloid-wall interactions; (2) even in the presence of conditions favorable to colloid collection, deposited colloids are remobilized over long times and this process contributes substantially to the overall extent of transport; (3) diffusive exchange between water-conducting fractures and finer fractures and pores acts to ''buffer'' the effects of the major fracture network structure, and reduces predictive uncertainties. Predictive tools were developed that account for fundamental mechanisms of colloid dynamics in fracture geometry, and linked to larger-scale processes in networks of fractures. The results of our study highlight the key role of physical and hydrologic factors, and processes of colloid remobilization that are potentially of even greater importance to colloid transport in the vadose zone than in saturated conditions. We propose that this work be extended to focus on understanding vadose zone transport processes so that they can eventually be linked to the understanding and tools developed in our previous project on transport in saturated groundwater systems.

Transport of Synthetic Colloids Through Single Saturated Fractures

Transport of Synthetic Colloids Through Single Saturated Fractures PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 109

Book Description
Colloids having the same surface charge sign as the bulk of the geologic media in a groundwater system may be able to travel through the system faster than soluble species because they will follow fluid streamlines more closely and they should have less tendency to diffuse into pores or dead spaces in the media than soluble species. Synthetic colloids with uniform, controlled properties may be ideal for serving as {open_quotes}worst-case{close_quotes} tracers that provide lower-bound estimates of contaminant travel times in hydrologic systems. This report discusses a review of the literature pertaining to colloid transport in single saturated natural fractures. After a brief background discussion to put the literature review in perspective, the phenomenon of colloid transport in saturated fractures is divided into three major topics, each of which is reviewed in detail: (1) saturated fluid flow through fractures; (2) colloid transport by convection, diffusion, and force fields; and (3) colloid interactions with surfaces. It is suggested that these phenomena be accounted for in colloid transport models by using (1) lubrication theory to describe water flow through fractures, (2) particle tracking methods to describe colloid transport in fractures, and (3) a kinetic boundary layer approximation to describe colloid interactions with fracture walls. These methods offer better computational efficiency and better experimental accessibility to model parameters than rigorously solving the complete governing equations.

Colloid Transport in Groundwater Flow Through Saturated and Unsaturated Fractures

Colloid Transport in Groundwater Flow Through Saturated and Unsaturated Fractures PDF Author: Yasemin Mehtap Fertelli
Publisher:
ISBN:
Category : Colloids
Languages : en
Pages : 170

Book Description


Colloid and Contaminant Co-transport in Fractured Porous Media

Colloid and Contaminant Co-transport in Fractured Porous Media PDF Author: Tanya Kay Bilezikjian
Publisher:
ISBN:
Category : Colloids
Languages : en
Pages : 130

Book Description


Polydisperse Colloid Transport in Fractured Media

Polydisperse Colloid Transport in Fractured Media PDF Author: Scott C. James
Publisher:
ISBN:
Category : Colloids
Languages : en
Pages : 314

Book Description


Analytic Studies of Colloid Transport in Fractured Porous Media

Analytic Studies of Colloid Transport in Fractured Porous Media PDF Author:
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ISBN:
Category :
Languages : en
Pages : 10

Book Description
We analyze the interactive migration of radioactive colloids and solute in fractured rock. Two possible interactions between radionuclides as colloids and as solute are considered: solute sorption on nonradioactive colloids to form pseudocolloids, and dissolution of radioactive colloids. Previous studies have discussed the formation and transport of colloids in porous media, including removal of colloids by filtration and sedimentation. Colloids can migrate faster than solute because of weaker sorption on stationary solids and because of hydrochromatography of colloid particles in flow channels. However, the migration of colloids and pseudocolloids can be retarded by the interaction of colloids with solute, and the migration of solute in local equilibrium with colloids can be more rapid than if colloids were not present. Here we present a new quantative analysis to predict the interactive migration of colloids and solute in porous and fractured media. 4 figs.

Colloid Transport in Saturated and Unsaturated Porous Media

Colloid Transport in Saturated and Unsaturated Porous Media PDF Author: Jun Qi
Publisher:
ISBN:
Category : Colloids
Languages : en
Pages : 200

Book Description


Saturated Zone Colloid-Facilitated Transport

Saturated Zone Colloid-Facilitated Transport PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 46

Book Description
The purpose of the Saturated Zone Colloid-Facilitated Transport Analysis and Modeling Report (AMR), as outlined in its Work Direction and Planning Document (CRWMS M & O 1999a), is to provide retardation factors for colloids with irreversibly-attached radionuclides, such as plutonium, in the saturated zone (SZ) between their point of entrance from the unsaturated zone (UZ) and downgradient compliance points. Although it is not exclusive to any particular radionuclide release scenario, this AMR especially addresses those scenarios pertaining to evidence from waste degradation experiments, which indicate that plutonium and perhaps other radionuclides may be irreversibly attached to colloids. This report establishes the requirements and elements of the design of a methodology for calculating colloid transport in the saturated zone at Yucca Mountain. In previous Total Systems Performance Assessment (TSPA) analyses, radionuclide-bearing colloids were assumed to be unretarded in their migration. Field experiments in fractured tuff at Yucca Mountain and in porous media at other sites indicate that colloids may, in fact, experience retardation relative to the mean pore-water velocity, suggesting that contaminants associated with colloids should also experience some retardation. Therefore, this analysis incorporates field data where available and a theoretical framework when site-specific data are not available for estimating plausible ranges of retardation factors in both saturated fractured tuff and saturated alluvium. The distribution of retardation factors for tuff and alluvium are developed in a form consistent with the Performance Assessment (PA) analysis framework for simulating radionuclide transport in the saturated zone. To improve on the work performed so far for the saturated-zone flow and transport modeling, concerted effort has been made in quantifying colloid retardation factors in both fractured tuff and alluvium. The fractured tuff analysis used recent data and interpretation from the C-wells reactive tracer testing complex in the saturated zone of Yucca Mountain. As no data regarding colloid transport have been developed by the Yucca Mountain Site Characterization Project (YMP) for the alluvial system, a theoretical analysis based on studies performed in other alluvial systems is developed. The parameters derived in this AMR are developed in a manner consistent with the PA methodology and can be readily integrated into that analysis.

Acoustically Enhanced Colloid Transport in Saturated Porous Media

Acoustically Enhanced Colloid Transport in Saturated Porous Media PDF Author: John Matthew Thomas
Publisher:
ISBN:
Category : Colloids
Languages : en
Pages : 142

Book Description