Skip navigation
Home
Browse
Communities
& Collections
Browse Items by:
Issue Date
Author
Title
Advisor
Help
Sign on to:
My DSpace
Receive email
updates
Edit Profile
Adelaide Research & Scholarship
Adelaide Research & Scholarship
Search
Search:
All collections
Schools and Disciplines
School of Agriculture, Food and Wine
Wine Science
Agriculture, Food and Wine publications
for
Current filters:
Title
Author
Subject
Date Issued
Advisor
School
Department
Organisation
Equals
Contains
ID
Not Equals
Not Contains
Not ID
Title
Author
Subject
Date Issued
Advisor
School
Department
Organisation
Equals
Contains
ID
Not Equals
Not Contains
Not ID
Start a new search
Add filters:
Use filters to refine the search results.
Title
Author
Subject
Date Issued
Advisor
School
Department
Organisation
Equals
Contains
ID
Not Equals
Not Contains
Not ID
Results 1-8 of 8 (Search time: 0.003 seconds).
previous
1
next
Item hits:
Preview
Issue Date
Title
Author(s)
2015
Cumulative respiration in two drying and rewetting cycles depends on the number and distribution of moist days
Shi, A.
;
Yan, N.
;
Marschner, P.
2013
Addition Of A Clay Subsoil To A Sandy Top Soil Alters Co2 Release And The Interactions In Residue Mixtures
Shi, A.
;
Marschner, P.
2015
The number of moist days determines respiration in drying and rewetting cycles
Shi, A.
;
Marschner, P.
2013
Decomposition of roots and shoots of perennial grasses and annual barley-separately or in two residue mixes
Shi, A.
;
Penfold, C.
;
Marschner, P.
2014
Addition of a clay subsoil to a sandy topsoil changes the response of microbial activity to drying and rewetting after residue addition - A model experiment
Shi, A.
;
Marschner, P.
2014
Changes in microbial biomass C, extractable C and available N during the early stages of decomposition of residue mixtures
Shi, A.
;
Marschner, P.
2014
Drying and rewetting frequency influences cumulative respiration and its distribution over time in two soils with contrasting management
Shi, A.
;
Marschner, P.
2014
Soil respiration and microbial biomass after residue addition are influenced by the extent by which water-extractable organic C was removed from the residues
Shi, A.
;
Marschner, P.
Discover
Author
1
Penfold, C.
1
Yan, N.
Subject
2
Available N
2
cumulative respiration
2
interaction
1
available N
1
C/N ratio
1
clay soil addition
1
clay subsoil; drying; microbial a...
1
CO₂ flux; Drying; Microbial bioma...
1
Cumulative respiration; dry days;...
1
Cumulative respiration; drying; d...
.
next >
Date issued
2
2015
4
2014
2
2013