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Peritoneal fluid kinetics: comparison between polyglucose solution and albumin solution.

Polyglucose (PG) solution has been shown to be capable of inducing peritoneal ultrafiltration despite its hypo-osmolality. However, the mechanism of osmosis by PG is not clear. In this study, we compared the fluid kinetics of albumin (ALB) solution (thought to be an ideal solution that should induce ultrafiltration through colloid osmosis) and PG solution. A 4-hour dwell study with frequent sampling was conducted in Sprague-Dawley rats (six rats in each group). The study used 25 mL of dialysate buffer, 10% ALB dialysis solution, 15% ALB dialysis solution, 20% ALB dialysis solution, or 7.5% PG solution, with 131I albumin as an intraperitoneal volume marker. All solutions were prepared by adding ALB or PG to a base dialysis solution (without osmotic agent). The initial osmolality values of the five solutions were 250 mOsm/kg, 284 mOsm/kg, 300 mOsm/kg, 320 mOsm/kg, and 280 mOsm/kg, and the dialysate drainage volumes at 4 hours were 17.0 +/- 0.8 mL, 22.4 +/- 0.8 mL, 25.4 +/- 0.6 mL, 27.3 +/- 0.9 mL, and 26.3 +/- 0.6 mL (buffer, 10% ALB, 15% ALB, 20% ALB, and 7.5% PG groups, respectively). The higher initial osmolality in the ALB groups was partially due to the sodium content in the ALB powder. The intraperitoneal volume was decreasing in the 10% ALB group, rather stable in the 15% ALB group, but slowly increasing in the 20% ALB group. In the PG group, intraperitoneal volume decreased initially and then started to increase after 2 hours. This pattern was closely related to the increase in the dialysate osmolality (to higher than plasma level). At 4 hours, the dialysate osmolality was significantly higher (and higher than plasma level) in the PG group as compared to all the ALB groups. No differences in peritoneal fluid absorption rate were observed among the four treatment groups. In the 15% ALB and 20% ALB groups, the transcapillary ultrafiltration rate (Qu) was lower in the later part of the dwell than in the initial part of the dwell; in the PG group, the opposite pattern was observed. Our results suggest that the osmosis of albumin dialysis solution is different from the osmosis of polyglucose solution. Polyglucose solution induces net ultrafiltration only when the dialysate osmolality increase to higher than plasma level, suggesting that degradation of polyglucose may be important for effective ultrafiltration.

Albumins↗

[Aluminum-related bone disease in chronic hemodialysis patients].

Plasma aluminum (pAl) was measured in 58 patients coming from three centers using different preparation of dialysis water: deionizer (29 patients), softener (16 patients) and reverse osmosis (13 patients). Twenty five healthy subjects were used as controls. A deferoxamine test was performed to 11 of 19 patients with pAl between 40 and 200 micrograms/dl and a bone biopsy with double tetracycline staining was executed to 15 patients with pAl over 40 micrograms/dl. Mean pAl was 9.5 +/- 1.7 micrograms/dl in controls and 34.3 +/- 6.1 169 +/- 27.8 and 50.8 +/- 10.3 micrograms/dl in patients coming form centers using deionizers, softeners and reverse osmosis respectively. Seventy six percent of patients coming from centers using deionizers and 85% of patients coming from centers with reverse osmosis had pAl below 40 micrograms/dl and all had values below 200 micrograms/dl. Plasma aluminum had a increase of over 200 micrograms/dl in 6 of 11 patients in which the deferoxamine test was performed. Six patients had a positive staining for aluminum in bone biopsies (three with basal pAl over 200 micrograms/dl and one with a increase in pAL after deferoxamine < 200 micrograms/dl). Of these, 2 patients had a mixed osteodystrophy and 4 a low turnover bone disease. Centers with deionizers and reverse osmosis had very low aluminum levels in dialysis water and five of six patients with aluminum levels related bone disease came from the center using softener.

Aluminum↗

On the mechanism of fluid transport across corneal endothelium and epithelia in general.

The mechanism by which fluid is transported across epithelial layers is still unclear. The prevalent idea is that fluid traverses these layers transcellularly, driven by local osmotic gradients secondary to electrolyte transport and utilizing the high osmotic permeability of aquaporins. However, recent findings that some aquaporin knockout mice epithelia transport fluid sow doubts on local osmosis. This review discusses recent evidence in corneal endothelium that points instead to electro-osmosis as the mechanism underlying fluid transport. In this concept, a local recirculating electrical current would result in electro-osmotic coupling at the level of the intercellular junctions, dragging fluid via the paracellular route. The text also mentions possible mechanisms for apical bicarbonate exit from endothelial cells, and discusses whether electro-osmosis could be a general mechanism.

Animals↗

The thermodynamic and hydrodynamic properties of macromolecules that influence the hydrodynamics of porous systems.

The water flow across porous, semipermeable membranes associated with osmosis and filtration under a variety of conditions is analysed and compared to macromolecular diffusion across free-liquid boundaries, diffusion and sedimentation in the ultracentrifuge, and tracer diffusion of water. This study establishes that osmosis can be explained in terms of the irreversible thermodynamics of diffusion. For macromolecular osmotically active solutes in the semidilute concentration regime the water flows across semipermeable porous membranes are interpreted in terms of a rate-limiting solute-solvent exchange layer that exists on the solution side of the membrane adjacent to the membrane pore; both osmosis and filtration will be governed by these exchange layers. These exchange layers also yield unique properties of their constituent molecules in systems where there is osmotic equilibration between solutions of different solutes. This study also establishes the need to consider the internal osmotic pressure of membranes in the pressure balance associated with the flow across the membrane. The complex situation of partially permeable membranes is analysed for the simple case where there are no mechanical gradients and there is only one osmotically active solution that creates a rate-limiting exchange layer. This treatment predicts that the flow will be governed primarily by the osmotic pressure difference associated with the partitioning of the solute at the membrane-solution interface.

Animals↗

A mathematical model of electrolyte and fluid transport across corneal endothelium.

To predict the behavior of a transporting epithelium by intuitive means can be complex and frustrating. As the number of parameters to be considered increases beyond a few, the task can be termed impossible. The alternative is to model epithelial behavior by mathematical means. For that to be feasible, it has been presumed that a large amount of experimental information is required, so as to be able to use known values for the majority of kinetic parameters. However, in the present case, we are modeling corneal endothelial behavior beginning with experimental values for only five of eleven parameters. The remaining parameter values are calculated assuming cellular steady state and using algebraic software. With that as base, as in preceding treatments but with a distribution of channels/transporters suited to the endothelium, temporal cell and tissue behavior are computed by a program written in Basic that monitors changes in chemical and electrical driving forces across cell membranes and the paracellular pathway. We find that the program reproduces quite well the behaviors experimentally observed for the translayer electrical potential difference and rate of fluid transport, (a) in the steady state, (b) after perturbations by changes in ambient conditions HCO3-, Na+, and Cl- concentrations), and (c) after challenge by inhibitors (ouabain, DIDS, Na+- and Cl(-)-channel inhibitors). In addition, we have used the program to compare predictions of translayer fluid transport by two competing theories, electro-osmosis and local osmosis. Only predictions using electro-osmosis fit all the experimental data.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Asymmetrical electrically induced injury of rabbit ventricular myocytes.

Strong defibrillation-type electric field stimulation may injure myocytes when transmembrane potentials during the pulse exceed the threshold for membrane permeabilization. The location of injury may depend on intrinsic transmembrane potential or influx of calcium by "electro-osmosis" during the stimulation pulse in addition to the transmembrane potential changes induced by the pulse. We have studied injury by examining contracture and changes in transmembrane potential-sensitive dye fluorescence induced by electric field stimulation (St) with a duration of 20 ms and strength of 16-400 V/cm in isolated rabbit ventricular myocytes. St of 100-150 V/cm produced injury in myocytes oriented parallel to the St field frequently without injuring myocytes oriented perpendicular to the field. Injury required calcium in the solution and was asymmetric, occurring first at the myocyte and facing the St anode in 100% of injured myocytes in normal Tyrode's solution. Injury depended significantly on whether the product of the electric field strength and myocyte length exceeded a threshold of 1.1 V (P < 0.05). Asymmetric injury at the end facing the anode was still present in 96% of injured myocytes for stimulation after depolarization by an action potential or 20 mM or 125 mM potassium, suggesting that intrinsic transmembrane potential is not responsible for asymmetry. In 125 mM potassium, eliminating calcium from the bathing solution during the St pulse and introducing calcium after the pulse decreased the fraction of injured myocytes in which injury occurred at the end facing the anode to 62%, suggesting that calcium influx by "electro-osmosis" at the myocyte end facing the anode contributes to asymmetry. Asymmetric injury at the end facing the anode was still present in 100% of injured myocytes after adding 1 mM tetraethylammonium chloride, indicating that asymmetry is not sensitive to the potassium channel blockade. For stimulation pulses stronger than 50 V/cm given after depolarization by an action potential, transmembrane potentials at both myocyte ends decayed after the initial deflection indicating that permeabilization occurred at both ends. In conclusion, injury depends on myocyte orientation and is asymmetric occurring first at the myocyte end facing the anode. Asymmetric injury is not explained by asymmetric permeabilization, is independent of the intrinsic transmembrane potential and may result from "electro-osmosis" during the stimulation pulse.

Animals↗

AC electro-osmotic mixing induced by non-contact external electrodes.

We demonstrate efficient mixing in a micro-fluidic reservoir smaller than 10 microL using ac electro-osmosis driven by field-induced polarization. Our mixing device, of that electrodes are outside of the mixing unit, consists of three circular reservoirs (3mm in diameter) connected by a 1 mm x 1 mm channel. Unlike dc electro-osmosis, whose polarization is from charged substrate functional groups, this new mechanism uses the external field to capacitively charge the surface and the surface capacitance becomes the key factor in the electrokinetic mobility. The charging and mixing are enhanced at tailor-designed channel corners by exploiting the high normal fields at geometric singularities. The induced surface dielectric polarization and the resulting electric counter-ion double layer produce an effective Zeta potential in excess of 1 V, over one order of magnitude larger than the channel Zeta potential. The resulting ac electro-osmotic slip velocity scales quadratically with respect to the applied field, in contrast to the linear scaling of dc electro-osmosis and at 1cm/s and larger, exceeds the classical dc values by two orders of magnitude. The polarization is non-uniform at the corners due to field leakage to the dielectric substrate and the inhomogeneous slip velocity produces intense mixing vortices that effectively homogenize solutes in 30s in a 3mm reservoir, in contrast to hour-long mixing by pure diffusion.

Complex Mixtures↗

The effect of coupled transport phenomena in the Opalinus Clay and implications for radionuclide transport.

In this study, the potential effects of coupled transport phenomena on radionuclide transport in the vicinity of a repository for vitrified high-level radioactive waste (HLW) and spent nuclear fuel (SF) hosted by the Opalinus Clay in Switzerland, at times equal to or greater than the expected lifetime of the waste canisters (about 1000 years), are addressed. The solute fluxes associated with advection, chemical diffusion, thermal and chemical osmosis, hyperfiltration and thermal diffusion have been incorporated into a simple one-dimensional transport equation. The analytical solution of this equation, with appropriate parameters. shows that thermal osmosis is the only coupled transport mechanism that could, on its own, have a strong effect on repository performance. Based on the results from the analytical model, two-dimensional finite-difference models incorporating advection and thermal osmosis, and taking conservation of fluid mass into account, have been formulated. The results show that, under the conditions in the vicinity of the repository at the time scales of interest, and due to the constraints imposed by conservation of fluid mass, the advective component of flow will oppose and cancel the thermal-osmotic component. The overall conclusion is that coupled phenomena will only have a very minor impact on radionuclide transport in the Opalinus Clay, in terms of fluid and solute fluxes, at least under the conditions prevailing at times equal to or greater than the expected lifetime of the waste canisters (about 1000 years).

Aluminum Silicates↗

Variations of landfill leachate's properties in conjunction with the treatment process.

A study was done on the variations of water quality parameters, in conjunction with the processing steps, installed for the treatment of leachate from a sanitary landfill. The leachate was primarily subjected to biological treatment, composed of anaerobic digestion, aerobic treatment, and rotating biological contact in series. The effluent from the rotating biological contact process was further treated by combination of flocculation-sedimentation and adsorption processes. Finally, it was polished by the reverse osmosis process before discharge. The quality of raw leachate, of influents to and of effluents from the reverse osmosis process was assessed and compared. To determine size--dependent behavior of organic materials, analyses were also made for the fractionated samples through ultrafiltration. The overall treatment efficiency was about 98% for removal of organic materials. Most of the organic materials were in the low molecular weight range. In particular, about 95% of the biological oxygen demand was found to be exerted by the fraction of organic material of which cut -off molecular weight was less than 500. The analysis of molecular weight distribution confirmed that the organic materials resistant to the removal by the treatment process were humic substances, of which cut off molecular weight was greater than 500. The reverse osmosis process showed a high efficiency for removal of high molecular weight constituents. However, the final effluent showed an unexpectedly high oxygen demand.

Adsorption↗

Proposed mechanism of pulmonary gas trapping (PGT) following intravenous perfluorocarbon emulsion administration.

PURPOSE: To investigate various hypotheses and identify the most likely mechanism preventing the complete collapse of test animal lungs at sacrifice subsequent to intravenous injection of certain perfluorocarbon emulsions. PROTOCOL: Literature data were reviewed, experimental data were extracted from completed studies and new data were generated in an attempt to delineate reasons why, in certain animals, lungs fail to collapse normally at necropsy if previously injected with certain perfluorocarbon emulsions. The proposed hypothesis involved gas osmosis through endogenous pulmonary surfactant-liquid bridges (micro-bubbles). RESULTS: The observed effect of incomplete lung collapse upon necropsy was found to correlate with perfluorocarbon vapor pressure. Results indicated that failure to collapse could be attributed to the formation of intra-alveolar micro-bubbles induced by the normal pulmonary elimination of perfluorocarbon vapor. These micro-bubbles result in a phenomenon which could be characterized by the term, pulmonary gas trapping. Reduction of the perfluorocarbon concentration gradient across the bubble films by exposure to a perfluorocarbon vapor-containing atmosphere was found to reduce the effect in-vivo and prevent gas osmosis bubble growth in-vitro. CONCLUSION: Experimental observations are consistent with the proposed theory of perfluorocarbon-related gas osmosis through micro-bubbles that prevent complete lung collapse as observed upon opening the thoracic cavity of test animals.

Animals↗

The effect of low aluminum water and desferrioxamine on the outcome of dialysis encephalopathy.

Five patients with dialysis encephalopathy were transferred to deionized water; all died after a variable period, 4 of progressive dementia. Six other patients with encephalopathy were started either on deionized or reverse osmosis water as well as desferrioxamine on dialysis. Serial EEG's were performed in this group. In 2 patients the EEG's showed rapid and sustained improvement after the institution of desferrioxamine, whereas there had been no EEG change after 15 and 32 months of reverse osmosis water. In 2 patients there was similar clinical and EEG improvement, related to water change and the institution of desferrioxamine. Two patients died of progressive dementia in spite of both water change and desferrioxamine. Thus, while not a panacea, desferrioxamine has a definitive therapeutic effect on the clinical and EEG manifestations of dialysis encephalopathy, when used in conjunction with deionized or reverse osmosis water.

Adult↗

Aspirin, acetaminophen, and ibuprofen: their effects on orthodontic tooth movement.

INTRODUCTION: Orthodontic patients often take analgesics for pain during treatment. But various analgesics have different capacities to inhibit prostaglandins, and these differences might affect tooth movement. The purposes of this study were to determine by direct measurement the effects that acetylsalicylic acid, ibuprofen, and acetaminophen have on orthodontic tooth movement in rats and to evaluate histologically the differences in bone resorption in the pressure area in rats treated with these analgesics. METHODS: Thirty-six adult male Wistar rats were divided in 4 groups of 9 each. Orthodontic appliances were placed on the rats' incisors. In the 3 experimental groups, analgesics were diluted in reverse osmosis water and delivered via a gastric tube: 100 mg/kg acetylsalicylic acid, or 30 mg/kg ibuprofen, or 200 mg/kg acetaminophen. Control animals received only the reverse osmosis water. At the end of the experimental period, the rats were killed and histological examinations were performed. RESULTS: Analysis of variance showed statistically significant differences between the control group, which was given reverse osmosis water, and the groups given aspirin and ibuprofen. There were also statistically significant differences between the acetaminophen group and the ibuprofen and aspirin groups, respectively. There was no significant difference between the acetaminophen group and the control group, or between the aspirin and ibuprofen groups. Tooth movement was similar in the groups. CONCLUSIONS: The results indicate that nonsteroidal anti-inflammatory analgesics such as aspirin and ibuprofen diminish the number of osteoclasts, probably by inhibiting the secretion of prostaglandins, thereby reducing orthodontic tooth movement. Acetaminophen did not affect orthodontic tooth movement in rats, and it might be the analgesic of choice for treating pain associated with orthodontic treatment.

Acetaminophen↗

The invagination of excess surface area by shrinking neurons.

Over most of their surface, neurons are surrounded by a narrow extracellular gap across which they make adhesive cell-cell contacts. Thus constrained, how do they regulate their geometry when osmotically perturbed? Specifically, are there any interesting consequences of local osmosis in such conditions? Using confocal imaging of shrinking neurons in culture, we observe water exiting into the cell-substratum gap. This water efflux generates a hydrostatic pressure that, at discrete (low adhesion) sites, causes the neuron's excess plasma membrane to invaginate, thus compensating for shrinkage with a pseudo-intracellular volume. To identify the minimal requirements of the process, a compartment/flux model was constructed. It comprises, essentially, a large liposome adhering in a labyrinthine fashion to a substratum. The model predicts that invaginations form at the cell-substratum interface under the influence of local osmosis, provided that adhesion across the gap is neither too tight nor too loose. Local osmosis in the central nervous system, in contrast to epithelia, is usually considered a mishap, not a physiological opportunity. We postulate, however, that local osmotic forces acting in conjunction with confined extracellular spaces could be harnessed in service of surface area, shape, and volume regulation when intense neural activity alters a neuron's osmotic balance.

Animals↗

Residue organic mixtures from drinking water show in vitro mutagenic and transforming activity.

Indications of possible health effects of residue organics in drinking water have been sought using short-term tests of mutagenic and transforming activity. Ten percent or less of the total organic material in drinking water has been identified; the remainder is believed to include thousands of unknown nonvolatile compounds. Residual organics were concentrated from drinking water from representative U.S. cities by reverse osmosis followed by liquid-liquid extraction [yielding the reverse osmosis concentrate-organic extract (ROC-OE) fraction] and sorption-desorption on XAD-2 resin. Samples of these residue organics were provided by the Environmental Protection Agency for bioassay. They were examined for mutagenic activity by using Salmonella tester strains (primarily TA98 and TA100) and for transforming activity by using mouse fibroblasts (BALB/3T3 clone 1-13). City-specific patterns of dose-dependent bacterial mutagenesis and of bacterial toxicity were observed for these samples and for subfractions generated by sequential extractions with hexane, ethyl ether, and acetone. Mutagenic effects were essentially independent of a microsome activation system prepared from liver of Aroclor 1254-induced rats. On the basis of strain-specific effects in mutagenesis and differential distributions of mutagenic activity during liquid-liquid extraction, at least some of the active compounds are thought to be acidic, frameshift mutagens. The ROC-OE fraction of a New Orleans sample transformed BALB/3T3 cells in replicate experiments. By comparison with the bacterial mutagenesis data, cell transformation is a relatively sensitive method for detecting possible mutagenic and carcinogenic activity in this sample. The appropriateness of these systems for the assay of complex mixtures and the degree to which reverse osmosis concentrates contain the unaltered organic compounds in the original samples are discussed.

Animals↗

Interactions of temperature and ADH on transport processes in cortical collecting tubules.

We evaluated the temperature dependence of the permeability coefficients for ADH-independent and ADH-dependent zero volume flow diffusion of THO (PDw, micron/s), for ADH-dependent zero volume flow diffusion of the highly lipophilic solute n-[3H]butanol (PDb, micron/s), and for ADH-dependent lumen-to-bath osmosis (Pf, micron/s) in rabbit isolated cortical collecting tubules. The ADH-dependnet Pf and PDw data are consistent with the hypothesis that water crosses the apical plasma membranes of these tubules through narrow aqueous channels by single-file diffusion; and using the raw temperature-dependent data, we calculate that these channels contain congruent to six H2O molecules per channel, both in the presence and in the absence of ADH. Apparent activation energies (EA, kcal/mol), as an upper estimate of the true activation energies, were calculated for these transport processes. The EA for osmosis for 6-23 degrees C, 9.7 +/- 1.1 kcal/mol, was indistinguishable from that reported previously for 23-37 degrees C either in the presence of absence of ADH, and from the ADH-independent EA for THO diffusion, 10.11 +/- 0.68 kcal/mol, measured in the range 15-37 degrees C. We interpret these data to indicate that in the absence of ADH THO diffusion at zero volume flow is hindered primarily by the same sites, narrow channels in apical membranes. The apparent EA for ADH-dependent zero volume flow THO diffusion, 5.11 +/- 0.40 kcal/mol, measured over the temperature range 6-38 degrees C, is approximately half the apparent EA for osmosis in the presence or absence of ADH and ADH-independent THO diffusion. The former value, when corrected for diffusion constraints in series with apical plasma membranes, becomes indistinguishable from the latter values. These date are consistent with the possibility that two factors contribute to the ADH-mediated disparity between Pf and PDw in these tubules: cytosolic diffusion constraints that impede ADH-dependent THO diffusion but not osmotic volume flow, and narrow aqueous channels as the primary route for water flux through apical plasma membranes. Finally, the EA for n-butanol diffusion shows a break in the Arrhenius plot. Above 23 degrees C, the EA is 4.77 +/- 0.77 kcal/mol and n-butanol diffusion is impeded primarily by the cytosol. Below 23 degrees C, the EA rises to approximately 9 kcal/mol because the hydrophobic regions of apical plasma membranes contribute an increasing fraction of the total resistance to n-butanol diffusion.

Animals↗

Scalp hair as an indicator of aluminium exposure: comparison to bone and plasma.

1. Aluminium concentrations were measured in hair, plasma and bone samples from different groups of chronic renal insufficient patients and from a control group (75 healthy volunteers plus 21 deceased subjects). A cross-sectional study with 40 haemodialysis patients and two longitudinal studies were undertaken, the first comprising of 12 home haemodialysis patients and the second 16 patients undergoing continuous ambulatory peritoneal dialysis (CAPD). 2. Before introduction of water treatment by reverse osmosis, the hair aluminium levels of home haemodialysis patients were elevated compared to controls. Aluminium in the hair of all other groups were within the normal range. Hair aluminium levels were not related to the daily aluminium intake, nor to the cumulative aluminium intake, nor to bone and plasma aluminium concentrations. 3. Plasma aluminium concentrations in all patients were higher than in the controls. Dialysis without reverse osmosis water treatment increased aluminium plasma levels. After installation of reverse osmosis units there was a decrease in the aluminium concentrations in plasma. In CAPD patients insignificant increases in the aluminium levels in plasma were observed. When low contaminated dialysis fluid was available the plasma aluminium concentrations returned to the initial level. 4. Aluminium concentrations in bone were increased in renal insufficient patients compared with controls. Aluminium bone content increased with increasing cumulative aluminium intake by phosphate binding therapy. 5. Hair analysis is of very limited value for the diagnosis of aluminium exposure. Bone analysis is suitable for the assessment of the individual body burden.

Adult↗

[Antidiuretic hormone content in the blood plasma of patients with chronic circulatory insufficiency].

The antidiuretic hormone (ADH) content in the blood plasma in comparison with its osmosis, the mass of circulating blood and the Na/K ratio in the urine was studied in 59 patients with rheumatic heart disease, atherosclerotic cardiosclerosis and chronic nonspecific affections of the lungs with and without circulatory insufficiency. The blood plasma ADH level is shown to increase significantly only with circulatory insufficiency of the IIB-III stage, whereas the plasma osmosis first has a tendency to rise and then gradually declines. This may suggest a deranged regulation of the ADH secretion with a higher osmosis of the plasma. No clear-cut parallelism between changes in the ADH level, the mass of circulating blood and plasma, the Na/K ratio in the urine and diurnal urinary output could be noted.

Animals↗

[Effect of different mulching on spring corn yield and on soil environment in Loess Plateau].

Effects of different mulching on spring corn yield and on soil environment in Loess Plateau, Heyang County were studied. The results showed that different mulching could increase the corn yield significantly. Soil water contents were increased remarkably except normal plastic film mulching, and the upper soil layer kept wet for a long time. Mulching could also reduce temperature difference of day and night, keep soil surface from direct precipitation lash, and maintain better soil structure. Compared with straw mulching, normal plastic film and no mulching, water osmosis plastic film could increase the yield by 6.4%, 23.6% and 29.1%, the water use efficiency 21.5, 20.2, 17.4 and 16.7 kg.mm-1.hm-2, respectively. Straw mulching could remarkably increase soil organic matter and soil fertility. Water osmosis plastic film had the same effect of increasing temperature as normal plastic film. While air temperature was more than 35 degrees C, water osmosis plastic film had the function of reducing extreme temperature, but long term mulching would promote excessive mineralization of soil organic nitrogen and leaching of NO3(-)-N.

Crops, Agricultural↗