Constructed wetlands for water quality improvement:
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Boca Raton [u.a.]
Lewis
1993
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | 632 S. Ill., graph. Darst., Kt. |
ISBN: | 0873715500 |
Internformat
MARC
LEADER | 00000nam a2200000 c 4500 | ||
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245 | 1 | 0 | |a Constructed wetlands for water quality improvement |c ed. by Gerald A. Moshiri |
264 | 1 | |a Boca Raton [u.a.] |b Lewis |c 1993 | |
300 | |a 632 S. |b Ill., graph. Darst., Kt. | ||
336 | |b txt |2 rdacontent | ||
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650 | 7 | |a Esgotos sanitarios |2 larpcal | |
650 | 7 | |a Zones humides artificielles - Congrès |2 ram | |
650 | 4 | |a Constructed wetlands |v Congresses | |
650 | 4 | |a Constructed wetlands |x Case studies |v Congresses | |
650 | 4 | |a Water quality management |v Congresses | |
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Datensatz im Suchindex
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adam_text | Contents
PART
1 — General
Considerations
1.
Constructed Wetlands: Scientific Foundations Are Critical
R. G. Wetzel
..................................................................................................................................3
2.
Wastewater Treatment in Constructed Wetlands: System Design, Removal Processes,
and Treatment Performance
H.Brix
..........................................................................................................................................9
3.
Constructed Wetlands and Aquatic Plant Systems: Research, Design, Operational,
and Monitoring Issues
G. Tchobanoglous
......................................................................................................................23
4.
Wetlands for Wastewater Treatment: Performance Database
R. L. Knight, R. W. Ruble, R. H. Kadlec, and S. Reed
.............................................................35
5.
The Use of Constructed Wetlands for Wastewater Treatment and Recycling
R. K.
Bastian
and
D.
A. Hammer
..............................................................................................59
6.
Constructed Wetlands Experience in the Southeast
R. J. Freeman, Jr
........................................................................................................................69
PART
2 —
Engineering
7.
Hydrological Design of Free Water Surface Treatment Wetlands
R. H. Kadlec, W.
Bastiaens,
and
D.
T.
Urban
..........................................................................77
8.
Hydrogeology
and Ground Water Monitoring: Constructed Wetlands System,
Perdido
Landfill,
Escambia
County, Florida
P.H.Dohms
...............................................................................................................................87
9.
Development of Criteria for the Design and Construction
of Engineered Aquatic Treatment Units in Texas
A. J.
Cueto
..................................................................................................................................99
10.
Engineering and Environmental Assessment of Enhanced
Bolsa Chica
Wetland
R.
Walton,
S.
Bird,
В.
Ebersole,
and
L.
Hales
........................................................................107
11.
Performance Evaluation of a Closed Ecological Life Support System (CELSS)
Employing Constructed Wetlands
B.L.Hilton
...............................................................................................................................117
PART
3 —
Acid Mine
12.
Anoxic Limestone Drains to Enhance Performance of Aerobic Acid Drainage Treatment
Wetlands: Experiences of the Tennessee Valley Authority
G. A. Brodie, C. R.
Britt,
T. M.
Tomaszewski, and
H.
N.
Taylor
...........................................129
13.
Storm Event Effects on Constructed Wetlands Discharges
H.
N.
Taylor, K. D. Choate, and G. A. Brodie
........................................................................139
14.
Wetland Water Treatment Systems
S.R. Witthar
.............................................................................................................................147
15.
Staged, Aerobic Constructed Wetlands to Treat Acid Drainage: Case History
of
Fabius
Impoundment
1
and Overview of the Tennessee Valley Authority s Program
G. A. Brodie
..............................................................................................................................157
16.
Successful Acid Mine Drainage and Heavy Metal Site Bioremediation
J. Davison
.................................................................................................................................167
17.
The Use of Wetland Treatment to Remove Trace Metals from Mine Drainage
P.
Eger,
G.
Melchert,
D.
Antonson,
and
J.
Wagner
...............................................................171
18.
A Comparison of Local Waste Materials for Sulfate-Reducing Wetlands Substrate
M. A. Gross, S. J. Formica,
L. C. Gandy,
andJ. Hestir
........................................................179
19.
Contaminant Removal Capabilities of Wetlands Constructed to Treat Coal Mine Drainage
R.
S.
Hedin
and
R. W.
Nairn
...................................................................................................187
20.
A Peat/Wetland Treatment Approach to Acidic Mine Drainage Abatement
Т. М.
Frostman
.........................................................................................................................197
PART
4 —
Subsurface Treatment
21.
The Use of Reed Bed Systems to Treat Domestic Sewage:
The European Design and Operations Guidelines for Reed Bed Treatment Systems
P.F.Cooper
.............................................................................................................................203
22.
Sustainable Suspended Solids and Nutrient Removal in Large-Scale, Solid Matrix,
Constructed Wetland Systems
H. J. Bavor
and T. J.
Schulz....................................................................................................219
23.
Hydraulics and Solids Accumulation in a Gravel Bed Treatment Wetland
R. H. Kadlec andJ. T. Watson
................................................................................................227
24.
Gravel Bed
Hydroponie
Sewage Treatment: Performance and Potential
/.
E. Butler, M. G. Ford, E. May, R. F. Ashworth, J. B. Williams, A. Dewedar,
M. El-Housseini, andM. M. M.
Bagnai
..................................................................................237
25.
The Purification Efficiency of the Planted Soil Filter in See
R.
Netter....................................................................................................................................249
26.
Constructed Wetlands for Wastewater Treatment in Czechoslovakia
J.
Vymazal
................................................................................................................................255
27.
Subsurface Flow Wetlands at Mesquite, Nevada
С. С
Leben,
R. W. Crues, and
R. A.
Beggs
..........................................................................261
PART
5 —
Chemical Processes
28.
Efficient Phosphorus Retention in Wetlands: Fact or Fiction?
С
J. Richardson and
С. В.
Craft
............................................................................................271
29.
Fate of Non-Point Source Nitrate Loads in Freshwater Wetlands:
Results from Experimental Wetland Mesocosms
W. G. Crumpton, T. M.
Isenhart,
and
S.
W.
Fisher
................................................................283
30.
Mechanisms of Wetland-Water Quality Interaction
C.A.Johnston
..........................................................................................................................293
31.
Pilot-Scale Nitrification Studies Using Vertical Flow and Shallow Horizontal Flow
Constructed Wetland Cells
/.
T. Watson and A. J. Danzig
.................................................................................................301
32.
Phosphorus Removal from Wastewater in a Constructed Wetland
Г.
H. Davies and P. D. Cottingham
........................................................................................315
33.
Nitrogen and Phosphorus Reduction in Secondary Effluent Using a 15-Acre,
Multiple-Celled Reed Canarygrass {Phalaris arundinacea) Wetland
S.
Geiger,
J. Luzier, and J. Jackson
........................................................................................321
34.
Water Supply System Utilizing the Edaphic-Phytodepuration Technique
E. S. Manfrinato, E. S.
Filho,
and
E. Salati............................................................................
331
PART
6 —
Point and Non-Point Sources
35.
Treating Livestock Wastewaters with Constructed Wetlands
D. A. Hammer, B. P.
Puliin,
T.
A. McCaskey, J. Eason, and V.
W.
E.
Payne
......................343
36.
Evaluation of Aquatic Plants for Constructed Wetlands
Đ.
Surrency
.............................................................................................................................349
37. Controlling
Agricultural Run-Off by the Use of Constructed Wetlands
M. J. Higgins,
С
A. Rock, R. Bouchard, andB. Wengrezynek
..............................................359
38.
Constructed Wetlands R&D Facility at TVA s National Fertilizer and Environmental
Research Center
C. Breed
....................................................................................................................................369
39.
Stormwater Run-Off Retention and Renovation: A Back Lot Function
or Integral Part of the Landscape?
D. L. Ferlow
.............................................................................................................................373
PART
7 —
Hydrophyte Considerations
40.
Wetland Systems and Their Response to Management
G. R. Guntenspergen, J. R. Keough, and J. Allen
...................................................................383
41.
Macrophyte-Mediated Oxygen Transfer in Wetlands: Transport Mechanisms and Rates
H. Brix
......................................................................................................................................391
42.
Control of Algae Using Duckweed (Lemna) Systems
S. J. Hancock and L. Buddhavarapu
.......................................................................................399
43.
The Use of Typha latifolia for Heavy Metal Pollution Control in Urban Wetlands
R. B. Shutes, J. B. Ellis, D. M. Revitt, and
Т. Т.
Zhang
.........................................................407
44.
Growth of Soft-Stem Bulrush (Scirpus validus) Plants
in a Gravel-Based Subsurface Flow Constructed Wetland
M. E. Edwards,
К. С
Brinkmann,
and]. T. Watson
..............................................................415
45.
Species-Specific Aeration of Water by Different Vegetation Types
in Constructed Wetlands
E.Stengel
..................................................................................................................................427
PART
8 —
Industrial Applications
Paper Pulp
46.
Performance of a Constructed Marsh in the Tertiary Treatment
of Bleach Kraft Pulp Mill Effluent: Results of a
2-
Year Pilot Project
R. P. Tettleton, F. G. Howell, and R. P. Reaves
.....................................................................437
47.
Feasibility of Treating Pulp Mill Effluent with a Constructed Wetland
R.N. That
.................................................................................................................................441
48.
Testing Color Removal from Pulp Mill Waste waters with Constructed Wetlands
D. A. Hammer, B. P.
Puliin,
D.
К.
McMurry, and J.
W.
Lee
.................................................449
49.
Interfacing Constructed Wetlands with Traditional Wastewater
Biotreatment
Systems
/.
Boyd, O. McDonald, D. Hatcher, R. J.
Portier,
and
R.
B. Conway
...................................453
Landfill Leachate
50.
Effect of Season, Substrate Composition, and Plant Growth
on Landfill Leachate Treatment in a Constructed Wetland
/.
M. Surface, J. H. Peverly, T. S.
Steenhuis,
and W. E. Sanford
..........................................461
51.
Mitigation of Landfill Leachate Incorporating In-Series Constructed Wetlands
of a Closed-Loop Design
C. D.
Martin,
G.
A. Moshiri, and
С. С.
Miller
.......................................................................473
52.
Innovative Marsh Treatment Systems for Control of Leachate
and Fish Hatchery Wastewaters
R. Hunter, A. E.Birkbeck, and G. Coombs
.............................................................................477
Petro
Chemical
53.
Constructed Wetlands for Wastewater Treatment at Amoco Oil Company s
Mandan,
North Dakota Refinery
D.K.Litchfield
.........................................................................................................................485
PART
9 —
Small Systems
54.
Small Constructed Wetlands Systems for Domestic Wastewater Treatment
and Their Performance
G. R.
Steiner
and D. W. Combs
...............................................................................................491
55.
General Design, Construction, and Operation Guidelines for Small Constructed Wetlands
Wastewater Treatment Systems
G. R.
Steiner,
J.
T.
Watson, and
K. D. Choate
.......................................................................499
56.
TVA s Constructed Wetlands Demonstration
K. D. Choate, J. T. Watson, and
G. R.
Steiner.......................................................................509
57.
Reed Bed Treatment for Small Communities
—
U.K. Experience
M.
B. Green andJ. Upton
.......................................................................................................517
58.
The Treatment of Septage Using Natural Systems
M.H. Ogden
.............................................................................................................................525
59.
Constructed Wetlands Wastewater Quality Improvement at Lynnvale Elementary School
T.B.Terry, III
..........................................................................................................................535
60.
Microbial Populations and Decomposition Activity in Three Subsurface Flow
Constructed Wetlands
K.
fiatano,
C. C. Trettin, C. H.
House,
and A. G. Wollum,
II
...............................................541
61.
Biological Sludge Drying in Constructed Wetlands
S.M.Nielsen
............................................................................................................................549
PART
10 —
Case Studies
62.
Constructed Open Surface Wetlands: The Water Quality Benefits
and Wildlife Benefits
—
City of
Arcata,
California
R. A. Gearheart and M. Higley
...............................................................................................561
63.
Constructed Wastewater Wetlands:
The Answer in South Dakota s Challenging Environment
J.
N. Dornbush.........................................................................................................................569
64.
Application of Constructed Wetlands to Treat Wastewaters in Australia
T. H. Davies, P. D. Cottingham, and B. T. Hart
....................................................................577
65.
Creating a Wetlands Wildlife Refuge from a Sewage Lagoon
R.Lofgren
.................................................................................................................................585
66.
Production and Suppression of Mosquitoes in Constructed Wetlands
K. J.
Tennessen
.........................................................................................................................591
67.
The Integration of Seaweed
Biofilters
with Intensive Fish Ponds
to Improve Water Quality and Recapture Nutrients
A. Neori, S. P. Ellner,
C. E.
Boyd, and
M. D. Krom
..............................................................603
68.
Treating Intensive
Aquaculture
Recycled Water
with an Artificial Wetlands Filter System
W. H. Zachritz, II and
R. B.
Jacquet
.......................................................................................609
INDEX
................................................................................................................................................615
|
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genre_facet | Fallstudiensammlung Konferenzschrift |
id | DE-604.BV011763458 |
illustrated | Illustrated |
indexdate | 2024-07-09T18:15:21Z |
institution | BVB |
isbn | 0873715500 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-007937508 |
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physical | 632 S. Ill., graph. Darst., Kt. |
publishDate | 1993 |
publishDateSearch | 1993 |
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spelling | Constructed wetlands for water quality improvement ed. by Gerald A. Moshiri Boca Raton [u.a.] Lewis 1993 632 S. Ill., graph. Darst., Kt. txt rdacontent n rdamedia nc rdacarrier Eau - Qualité - Gestion - Congrès ram Esgotos sanitarios larpcal Zones humides artificielles - Congrès ram Constructed wetlands Congresses Constructed wetlands Case studies Congresses Water quality management Congresses Feuchtgebiet (DE-588)4016960-1 gnd rswk-swf Wassergüte (DE-588)4064728-6 gnd rswk-swf (DE-588)4522595-3 Fallstudiensammlung gnd-content (DE-588)1071861417 Konferenzschrift gnd-content Feuchtgebiet (DE-588)4016960-1 s Wassergüte (DE-588)4064728-6 s DE-604 Moshiri, Gerald A. Sonstige oth Digitalisierung TU Muenchen application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=007937508&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Constructed wetlands for water quality improvement Eau - Qualité - Gestion - Congrès ram Esgotos sanitarios larpcal Zones humides artificielles - Congrès ram Constructed wetlands Congresses Constructed wetlands Case studies Congresses Water quality management Congresses Feuchtgebiet (DE-588)4016960-1 gnd Wassergüte (DE-588)4064728-6 gnd |
subject_GND | (DE-588)4016960-1 (DE-588)4064728-6 (DE-588)4522595-3 (DE-588)1071861417 |
title | Constructed wetlands for water quality improvement |
title_auth | Constructed wetlands for water quality improvement |
title_exact_search | Constructed wetlands for water quality improvement |
title_full | Constructed wetlands for water quality improvement ed. by Gerald A. Moshiri |
title_fullStr | Constructed wetlands for water quality improvement ed. by Gerald A. Moshiri |
title_full_unstemmed | Constructed wetlands for water quality improvement ed. by Gerald A. Moshiri |
title_short | Constructed wetlands for water quality improvement |
title_sort | constructed wetlands for water quality improvement |
topic | Eau - Qualité - Gestion - Congrès ram Esgotos sanitarios larpcal Zones humides artificielles - Congrès ram Constructed wetlands Congresses Constructed wetlands Case studies Congresses Water quality management Congresses Feuchtgebiet (DE-588)4016960-1 gnd Wassergüte (DE-588)4064728-6 gnd |
topic_facet | Eau - Qualité - Gestion - Congrès Esgotos sanitarios Zones humides artificielles - Congrès Constructed wetlands Congresses Constructed wetlands Case studies Congresses Water quality management Congresses Feuchtgebiet Wassergüte Fallstudiensammlung Konferenzschrift |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=007937508&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT moshirigeralda constructedwetlandsforwaterqualityimprovement |