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Case Study I

HydroPower Green (HPG) 1.0 - Replacement H 2 S minimization product. This treatment allows for a safe and efficient process. 

[In The Oil industry]

Safety data sheet Hydro Power Green 1.0

Prepared in accordance with Commission Regulation (EU 830/2015) amending by Regulation 1907/2006,

REACH October 26, 2021 page 1

RELEVANT IDENTIFIED USES OF THE PRODUCT

Identified Uses: H2S Scavenger for Oil and Gas.

HAZARD

High H2S Levels present Production, Safety, and Health problems in the Oil Industry.

RESOLUTION

Application of HydroPower Green: 

This application may be Batch treatment or in-process flow treatment.

Methodology

  • Chemical free crude oil sample provided by Ripcord was tested to establish the H2S content.
  • Sample recorded a reading of about 60,000ppm of hydrogen sulfide for this analysis.
  • Sour crude oil sample was poured into various prescription bottles (measuring 50mL) and then treated with product HPG 0.5 and HPG 1.0 at multiple dosage rates.
  • Treated samples were shaken 100 times after treatment and allowed to sit for 10 minutes.
  • Samples were tested for H2S at various time intervals (H2S readings were taken through gas pull) for proper tracking of product affectivity and reaction speed based on system conditions.
  • Results were logged and computed to ensure that the products selected met their design expectations without showing any form of adverse reaction with field samples.

Products Tested

HydroPower Green  0.5: 1,000ppm and 2,000 ppm

HydroPower Green 1.0: 1,000ppm and 2,000pp

Table 1. HPG 1.0 - Chemistry

Oil treatment in Permian Basin During Production:

HydroPower Green replaced MEA/Triazine in a seamless transition for mitigating H2S levels from 60,000 ppm to <5 ppm in vapor phase on a contractual trial basis.

Batch treatment 1000 barrels per day at 10,000 ppm H2S treated, transported by truck, and fed into pipeline to meat pipeline specification of 5 ppm. No fallout or corrosion reported.


Drivers previously had constant complaints of exposure, reported to have zero exceedances of H2S on their H2S monitoring devices.

Case Studies

Case Study II

Case Study III

Case Study III

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Case Study III

Case Study III

Case Study III

Read It

Case Study IV

Case Study III

Case Study IV

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