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Address
304 North Cardinal St.
Dorchester Center, MA 02124
Work Hours
Monday to Friday: 7AM - 7PM
Weekend: 10AM - 5PM

Experiments were conducted on oil samples from the Xi61 block of the Hailar oilfield, specifically samples from the Bei16-Ho53-47 and Bei16-Ho55-47 oilfields. 100 mL of the field sample was added to an LD-JN pump for bottle testing. A stable emulsion was prepared using a homogenizer at 1500 rpm for at least 1 minute. The stability of the emulsion was observed in a 35℃ constant temperature water bath. 1. Oil samples with a water content greater than 30% but less than 50% were used for testing. 2. The sample was diluted with anhydrous ethanol to a concentration of 1%. 3. The wax-removing and wax-preventing effects under different dosage conditions were tested using a wax-removing and wax-preventing tester. By comparing the wax-removing and wax-preventing effects under different dosage conditions, the optimal site and minimum dosage were identified, and a solution was developed accordingly.
According to SY/T 5119-2008 Analysis of Soluble Organic Matter and Crude Oil Group Components in Rocks and SY/T 7550-2004 Determination of Wax, Gum, and Asphaltenes Content in Crude Oil, oil samples from two wells in Hailar were analyzed by alumina absorption chromatography. The results are shown in Table 1. Table 1 Oil Composition Analysis Table
| Name | Bet3653-47 | Bet365-47 | Block 61 |
| Waxy, % | 16.35 | 20.62 | 22.44 |
| gelatinous, % | 13.34 | 12.89 | 12.31 |
| Asphalt, % | 2.16 | 1.07 | 1.02 |
| Impurities, % | 0.91 | 0.91 | 0.89 |
| Moisture content, % | 2.13 | 48.22 | 2.46 |
| Gas content, % | 28.14 | — | — |
| Viscosity, MPAs | 185.75 | 645.17 | 789.53 |
Table 1 shows that the main components of the Hailar oil samples, based on data analysis, are saturated hydrocarbons, waxes, gums, and asphaltenes. The Be16Ho53-47 sample has a high asphaltenes content and high gas content, while the Be16Ho55-47 sample has a relatively high wax content, and the oil sample from the Xi61 area has a high viscosity.
Based on the oil quality data of individual oil wells, LD-JN cleaning and prevention system agents were prepared in the laboratory, and the cleaning and prevention effects of the agents were investigated. The data are shown in Table 2. Table 2 Evaluation of the wax prevention performance of LD-JN
| Hashtag | Block 16 | Bet365-47 | Bet365-47 |
| Temperature ℃ | 35 | 35 | 35 |
| Dosage (ppm) | 300 | 300 | 300 |
| The decrease in oil adhesion to the wall, % | 90.13 | 90.77 | 95.57 |
As shown in Table 2, LD-JN can guarantee the on-site wax prevention and removal needs, as demonstrated by:
According to “SY/T6300-2024 Technical Conditions for Oil Production Cleaners and Wax Inhibitors”, the wax inhibition rates of oil samples from the Xi61 block, Bei16Ho55-47, and Bei16Ho53-47 were tested respectively. The data are shown in Table 3. Table 3 Wax Inhibition Rate of LD-JN
Table 3. Wax Resistance Rate of LD-JN
| Serial Number | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 |
| Dosage (ppm) | 50 | 100 | 150 | 200 | 250 | 300 | 350 | 400 | 450 | 500 |
| Wax resistance rate % (61%) | 5.2 | 7.1 | 11.7 | 21.5 | 63.5 | 90.6 | 92.3 | 94.5 | 96.3 | 98.2 |
| Wax resistance rate (55-47%) | 10.3 | 21.3 | 44.2 | 80.1 | 90.3 | 91.7 | 92.3 | 94.3 | 95.7 | 96.4 |
| Wax resistance rate (53-47%) | 30.2 | 50 | 80 | 90 | 92.7 | 93.8 | 94.8 | 95.9 | 96.8 | 97.3 |
The wax resistance curve of LD-JN is shown in Figure 1.
Figure 1: Wax resistance curve of LD-JN
Wax resistance %

Dosing Rate (ppm)
.
shown in Figure 1, the inflection point of the anti-wax rate curve is at a dosage of 300 ppm
. When the dosage is 200 ppm, the anti-wax rate of Bebe 16Ho 53-47 reaches 90%, and Bebe 16Ho 55-47 also meets the standard at 80.1%, but the anti-wax rate of the oil sample from Block X61 is only 21.5%. When the dosage is 250 ppm, the anti-wax rates of Bebe 16Ho 55-47 and Bebe 16Ho 53-47 are both above 90%, but the anti-wax rate of the oil sample from Block X61 is 63.5%. When the dosage reaches 300 ppm, the anti-wax rates of the three oil samples—the oil sample from Block X61, Bebe 16Ho 53-47, and Bebe 16Ho 55-47—all exceed 90%, and further increasing the dosage does not significantly change the anti-wax rate.
According to “SY/T6300-2024 Technical Conditions for Wax Removal and Inhibition Agents in Oil Production”, wax removal rate experiments were conducted using the following formulas in use at Plant 1 (SLJN-YJ), Plant 3 (NMPWR), and Plant 4 (LD-JN). The wax removal rate was calculated by measuring the time required to dissolve 1g of wax balls with 15ml of wax removal agent at 45℃. Due to the low air temperature in the Hailar area, experiments were conducted at a simulated wellhead temperature of 35℃ to investigate the wax dissolution rate at different dosages. The wax removal rates of different agents at different concentrations are shown in Table 4.
Table 4: Wax Removal Rates of Different Agents at Different Dosages
| Serial Number | 1 | 2 | 3 | 4 | 5 | 6 | 7 | |
| Dosage (ml) | 15 | 16 | 17 | 18 | 19 | 20 | twenty one | |
| Wax removal rate (g/min) | SLJN-YJ | 0.0080 | 0.0092 | 0.0103 | 0.0104 | 0.0105 | 0.0107 | 0.0107 |
| NMPWR | 0.0073 | 0.0076 | 0.0080 | 0.0084 | 0.0085 | 0.0086 | 0.0086 | |
| LD-JN | 0.0160 | 0.016 2 | 0.016 3 | 0.0165 | 0.016 6 | 0.016 7 | 0.016 7 | |
Figure 2. Dewaxing rate of different agents and dosages

Wax removal rate
Dosing Rate (ppm)
of 15 ml (standard dosage), the LD-JN wax removal rate is 0.016 g/min, which meets the standard, while the SLJN-YJ wax removal rate is 0.008 g/min, reaching half of the standard value. With a dosage of 17 ml, the NMPWR wax removal rate is 0.008 g/min, reaching half of the standard value. LD-JN has the best wax removal effect. LD-JN is designed for high wax content and special flooding blocks such as those in the Hailar oilfield, combining both wax removal and wax prevention functions. Field tests have achieved the switching between “removal” and “prevention,” meaning that without shutting down the well, increasing the dosage achieves “wax removal,” and once the load current returns to normal, decreasing the dosage achieves “wax prevention.”
The experimental methods were conducted in accordance with the provisions of the Daqing Oilfield Company Limited enterprise standard “Q/SYDQ1235-2015 Product Acceptance and Usage Effect Inspection Indicators and Methods for Paraffin-Based Crude Oil Emulsifying Viscosity Reducers”. When the dosage was 80 ppm, the viscosity reduction rates of the Be-16-Ho 53-47 and Xi-61 block oil samples were 35.5% and 60.3%, respectively, with the Be-16-Ho 55-47 viscosity reduction rate at 92.7%. When the dosage was 400 ppm, the viscosity reduction rate of Be-16-Ho 53-47 was 75.5%, and the viscosity reduction rate of the hope-61 block oil sample was 8%. The viscosity reduction rate of Bebe 16Ho55-47 was 95.9% at 8.3% and 90.3% at 500 ppm. When the dosage reached 500 ppm, the viscosity reduction rate of Bebe 16Ho53-47 was 85.2%, the viscosity reduction rate of the Xi 61 block oil sample was 90.3%, and the viscosity reduction rate of Bebe 16Ho55-47 was 97.3%. When the dosage increased to 500 ppm, the viscosity reduction rates of Bebe 16Ho53-47, the Xi 61 block oil sample, and Bebe 16Ho55-47 were all above 85%. The viscosity reduction rates of different oil samples at different LD-JN concentrations are shown in Table 5.
Table 5: Viscosity Reduction Rates of Different Oil Samples at Different Concentrations
| Serial Number | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | |
| Dosage (ml) | 5 | 10 | 20 | 40 | 80 | 160 | 300 | 400 | 500 | |
| Viscositympas | 53-47 | 176.1 | 172.6 | 164.1 | 145.8 | 119.8 | 91.8 | 70.1 | 45.5 | 27.5 |
| District 61 | 708.2 | 621.4 | 468.9 | 394.1 | 314.0 | 223.4 | 138.9 | 92.4 | 76.6 | |
| 55-47 | 321.3 | 258.1 | 129.0 | 64.5 | 47.1 | 40.0 | 33.6 | 26.5 | 17.2 | |
| viscosity reduction rate % | 53-47 | 5.2 | 7.1 | 11.7 | 21.5 | 35.5 | 50.6 | 62.3 | 75.5 | 85.2 |
| District 61 | 10.3 | 21.3 | 40.6 | 50.1 | 60.3 | 71.7 | 82.4 | 88.3 | 90.3 | |
| 55-47 | 50.2 | 60 | 80 | 90 | 92.7 | 93.8 | 94.8 | 95.9 | 97.3 | |
Figure 3. LD-JN viscosity reduction performance

Curve (viscosityreduction %)
Dosage per ppm
As shown in the graph above, at a dosage of 500 ppm, the viscosity reduction rates of Bebe 16Ho 53-47, hope 61 block oil samples, and Bebe 16Ho 55-47 were all above 85%. With increasing dosage, the three curves showed a tendency to converge. The 55-47 curve exhibited a clear inflection point at 50 ppm, indicating that LD-JN has a rapid onset of action, good efficacy, and significant viscosity-reducing performance advantages.
Based on a production rate of 10 m3 per well:
Before the experiment, the maintenance costs of the oil well measures were as follows: ① Hot cleaning once every two months, with a cost of 3,000 yuan per hot cleaning, totaling 18,000 yuan per year; ② The maximum power consumption of the downhole heating rod was 480 kWh/day, at 0.614 yuan/kWh, with a daily power consumption cost of 294.72 yuan, totaling 106,000 yuan per year; ③ The cost of installing anti-wax clips downhole was 3,000 yuan per time per year, and the cost of pump inspection was 109,700 yuan; ④ The production reduction caused by each well cleaning shutdown was 35,000 yuan per time.
| Before the experiment10,000 yuan/year | Hot wash | 1.8 | Before/After Experiment | ||
| heating rod | 10.6 | ||||
| Repair costs | 10.97 | 4/1 | |||
| well stoppage | 3.5 | ||||
| total | 16.27 | 10.6 | 26.87 | ||
| After the experiment10,000 yuan/year | Wax inhibitor | 1.53 | |||
| Wax remover | 2.78 | ||||
| Viscosity reducer | 2.64 | ||||
| total | 4.31 | 2.64 | 6.95 |
Good heavy oil viscosity reducers should meet the following requirements:
(1) flowability and dispersion; (2) static stratification.

Oscillation once Oscillation Secondary After resting for 5 minutes